achillea millefolium oil hungary | |||
# | % | Leftshift | Components |
---|---|---|---|
5 | 0.30 | borneol | |
10 | 0.80 | bornyl acetate | |
14 | 1.00 | gamma- | cadinene |
11 | 11.90 | beta- | caryophyllene |
15 | 21.20 | caryophyllenol I | |
16 | 12.50 | chamazulene | |
4 | 1.70 | 1,8- | cineole |
7 | 0.20 | citronellol | |
12 | 2.50 | alpha- | humulene |
9 | 4.40 | lavandulyl acetate | |
3 | 1.60 | limonene | |
8 | 1.30 | linalyl acetate | |
13 | 7.40 | gamma- | muurolene |
1 | 4.10 | alpha- | pinene |
2 | 20.80 | beta- | pinene |
6 | 0.30 | alpha- | terpineol |
E. Lemberkovics and G. Verzar-Petri, Gas chromatographic characterization of frequently occurring sesquiterpenes in essential oils. J. Chromatogr., 318, 125-131 (1985). P&F 22, No. 3, 57, (1997) | |||
acorus calamus leaf oil | |||
# | % | Leftshift | Components |
30 | 1.61 | acolamone | |
36 | 3.62 | iso | acolamone |
28 | 4.09 | acoragermacrone | |
39 | 6.57 | (1,10)- | aristolen-2-one |
34 | 0.21 | beta- | bisabolene |
10 | 0.11 | borneol | |
14 | 0.25 | bornyl acetate | |
17 | 0.05 | beta- | bourbonene |
29 | 4.07 | delta- | cadinene |
31 | 0.30 | alpha- | calacorene |
42 | 0.58 | iso | calamendiol |
41 | 0.10 | calamenene | |
40 | 0.72 | calamusenone | |
9 | 0.08 | camphor | |
20 | 4.13 | beta- | caryophyllene |
16 | 0.04 | alpha- | copaene |
23 | 0.32 | beta- | cubebene |
35 | 1.81 | isoepi- | cubenol |
4 | 0.04 | para- | cymene |
43 | 0.40 | dibutyl phthalate | |
18 | 0.79 | beta- | elemene |
15 | 0.21 | delta- | elemene |
32 | 0.73 | elemol | |
27 | 0.80 | beta- | guaiene |
24 | 0.96 | beta- | gurjurene |
21 | 0.07 | alpha- | humulene |
5 | 2.61 | limonene | |
8 | 3.10 | linalool | |
13 | 0.11 | linalyl acetate | |
47 | 0.02 | linoleic acid | |
3 | 0.07 | para- | mentha-2,4(8)-diene |
48 | 0.04 | methyl 9,12,15-octadecatrienoate | |
19 | 0.86 | methyl eugenol | |
26 | 3.37 | (E)- | methyl isoeugenol |
22 | 36.40 | (Z)- | methyl isoeugenol |
37 | 2.60 | alpha- | muurolol |
38 | 3.17 | epi-alpha- | muurolol |
2 | 0.09 | myrcene | |
45 | 0.04 | 1- | octadecene |
44 | 0.06 | palmitic acid | |
46 | 0.11 | phytol | |
1 | 0.21 | sabinene | |
25 | 3.19 | shyobunone | |
33 | 0.64 | iso | shyobunone |
11 | 0.21 | terpinen-4-ol | |
7 | 0.04 | alpha- | terpinene |
6 | 0.05 | gamma- | terpinene |
12 | 0.31 | alpha- | terpineol |
49 | 0.10 | tricosane | |
M. X. Li and Z-B. Jiang, The volatile constituents of the essential oil and their distribution in Acorus calamus L. Zhongcaoyo, 24, 459-461 (1993). P&F 22, No. 2, 59, (1997) | |||
asarum canadense root oil | |||
# | % | Leftshift | Components |
21 | 0.20 | aristolene | |
29 | 0.90 | aristolone | |
15 | 0.40 | (E)-beta- | bergamotene |
41 | 0.10 | borneol | |
9 | 1.50 | bornyl acetate | |
24 | 0.20 | delta- | cadinene |
16 | 0.30 | camphene | |
17 | 0.30 | 1,8- | cineole |
36 | 0.10 | copaene | |
18 | 0.30 | para- | cymene |
8 | 1.70 | elemicin | |
30 | 0.90 | (E)-iso | elemicin |
34 | 0.60 | eugenol | |
23 | 0.20 | (E)-beta- | farnesene |
11 | 1.30 | geraniol | |
5 | 3.90 | geranyl acetate | |
20 | 0.30 | gamma- | guaiene |
37 | 0.10 | beta- | gurjunene |
10 | 1.40 | junenol | |
28 | 0.90 | limonene | |
2 | 14.90 | linalool | |
4 | 4.00 | linalyl acetate | |
39 | 0.10 | methyl chavicol | |
1 | 41.80 | methyl eugenol | |
19 | 0.30 | (E)- | methyl isoeugenol |
42 | trace | methyl thymol | |
40 | 0.10 | alpha- | muurolene |
7 | 1.70 | myrcene | |
12 | 1.20 | nerol | |
6 | 2.40 | neryl acetate | |
14 | 0.40 | (E)- | ocimene |
32 | 0.60 | (Z)- | ocimene |
13 | 0.90 | alpha- | pinene |
27 | 0.90 | beta- | pinene |
25 | 0.10 | sabinene | |
22 | 0.20 | seychellene | |
33 | 0.60 | terpinen-4-ol | |
26 | 0.10 | alpha- | terpinene |
31 | 0.80 | gamma- | terpinene |
3 | 5.90 | alpha- | terpineol |
35 | 0.40 | terpinolene | |
38 | 0.10 | vetiselinene | |
B. M. Lawrence, unpublished information. P&F 11, No. 6, 39, (1986) | |||
bergamot oil | |||
# | % | Leftshift | Components |
60 | 0.162-0.437 | (E)-alpha- | bergamotene |
58 | 0.017-0.048 | (Z)-alpha- | bergamotene |
66 | 0.012-0.076 | bicyclogermacrene | |
67 | 0.000-trace | (Z)-alpha- | bisabolene |
70 | 0.000-0.010 | (Z)-gamma- | bisabolene |
69 | 0.212-0.648 | beta- | bisabolene |
76 | 0.007-0.030 | alpha- | bisabolol |
45 | 0.010-0.037 | bornyl acetate | |
4 | 0.019-0.053 | camphene | |
75 | 0.007-0.023 | campherenol | |
30 | 0.001-0.012 | camphor | |
11 | 0.001-0.009 | delta-3- | carene |
39 | 0.000-trace | carvone | |
59 | 0.154-0.524 | beta- | caryophyllene |
15 | 0.010-0.022 | 1,8- | cineole |
31 | 0.005-0.030 | citronellal | |
53 | 0.007-0.053 | citronellyl acetate | |
13 | 0.010-0.893 | para- | cymene |
35 | 0.037-0.103 | decanal | |
43 | 0.000-0.009 | 2- | decenal |
57 | 0.009-0.053 | decyl acetate | |
74 | 0.006-0.024 | 2,3- | dimethyl-3-(4-methyl-3-pentenyl)-2-norbornanol |
56 | 0.002-0.055 | dodecanal | |
34 | 0.000-0.006 | dodecane | |
64 | 0.000-0.009 | dodecanol | |
51 | 0.000-0.007 | delta- | elemene |
68 | 0.000-trace | (E,E)-alpha- | farnesene |
62 | 0.033-0.089 | (Z)-beta- | farnesene |
44 | 0.199-0.494 | geranial + perillaldehyde | |
42 | 0.000-0.010 | geraniol | |
55 | 0.107-0.799 | geranyl acetate | |
71 | 0.000-0.001 | germacrene B | |
65 | 0.033-0.106 | germacrene D | |
26 | trace-0.019 | heptyl acetate | |
10 | 0.000-0.002 | hexyl acetate | |
61 | 0.009-0.045 | alpha- | humulene |
46 | 0.000-0.009 | indole | |
14 | 25.385-53.187 | limonene + beta-phellandrene | |
28 | 0.001-0.015 | (E)- | limonene oxide |
27 | 0.001-0.019 | (Z)- | limonene oxide |
24 | 1.745-22.681 | linalool | |
23 | 0.000-trace | (E)- | linalool oxide |
21 | 0.000-trace | (Z)- | linalool oxide |
41 | 15.616-41.363 | linalyl acetate | |
50 | 0.013-0.066 | linalyl propionate | |
49 | 0.002-0.015 | methyl geranate | |
6 | 0.001-0.009 | 6- | methyl-5-hepten-2-one |
7 | 0.635-1.575 | myrcene | |
38 | 0.105-0.344 | neral | |
37 | 0.010-0.111 | nerol + citronellol | |
72 | 0.007-0.036 | (E)- | nerolidol |
54 | 0.126-0.670 | neryl acetate | |
25 | 0.012-0.076 | nonanal | |
48 | 0.004-0.053 | nonyl acetate | |
77 | 0.010-0.095 | nootkatone | |
17 | 0.104-0.361 | (E)-beta- | ocimene |
16 | 0.011-0.068 | (Z)-beta- | ocimene |
8 | 0.025-0.084 | octanal | |
20 | 0.001-0.021 | octanol | |
36 | 0.071-0.199 | octyl acetate | |
9 | 0.016-0.056 | alpha- | phellandrene |
3 | 0.720-1.844 | alpha- | pinene |
5 | 4.814-12.802 | beta- | pinene + sabinene |
29 | 0.000-0.004 | iso | pulegol |
19 | 0.015-0.063 | (Z)- | sabinene hydrate |
40 | 0.048-0.127 | (E)- | sabinene hydrate acetate |
63 | 0.001-0.016 | (Z)-beta- | santalene |
32 | 0.008-0.042 | terpinen-4-ol | |
12 | 0.081-0.282 | alpha- | terpinene |
18 | 5.266-11.151 | gamma- | terpinene |
33 | 0.030-0.126 | alpha- | terpineol |
22 | 0.210-0.476 | terpinolene | |
52 | 0.071-0.263 | alpha- | terpinyl acetate |
73 | 0.000-0.010 | tetradecanal | |
2 | 0.187-0.491 | alpha- | thujene |
1 | 0.001-0.005 | tricyclene | |
47 | 0.004-0.024 | undecanal | |
A. Verzera, G. Lamonica, L. Mondello, A. Trozzi and G. Dugo, The composition of bergamot oil. Perfum. Flavor., 21(6), 19-34 (1996). P&F 24, No. 5, 45, (1999) | |||
bergamot oil | |||
# | % | Leftshift | Components |
0.36 | (E)-alpha- | bergamotene | |
trace | (Z)-alpha- | bergamotene | |
0.6 | beta- | bisabolene | |
trace | alpha- | bisabolol | |
trace | beta- | bisabolol | |
trace | camphorenone | ||
0.09 | carvone | ||
0.2 | beta- | caryophyllene | |
0.02 | citronellal | ||
0.02 | citronellyl acetate | ||
trace | coumarin | ||
3.5 | para- | cymene | |
0.03 | decyl acetate | ||
trace | 8,9- | didehydronootkatone | |
trace | dihydrojasmone | ||
0.04 | beta- | farnesene | |
trace | farnesol | ||
0.01 | alpha- | fenchyl alcohol | |
0.6 | geraniol | ||
0.8 | geranyl acetate | ||
0.02 | germacrene D | ||
trace | guaienol | ||
0.04 | alpha- | humulene | |
trace | indole | ||
trace | (Z)- | jasmone | |
trace | lanceal | ||
26.0 | (+)- | limonene | |
16.0 | linalool | ||
34.0 | linalyl acetate | ||
trace | methyl N-methyl anthranilate | ||
1.3 | myrcene | ||
0.6 | neral + geranial | ||
0.08 | nerol | ||
0.02 | nerolidol | ||
1.2 | neryl acetate | ||
0.08 | nonanal | ||
trace | nootkatone | ||
0.07 | octanal | ||
0.02 | octanol | ||
trace | 5- | octen-2-one | |
0.15 | octyl acetate | ||
0.1 | beta- | phellandrene | |
2.2 | alpha- | pinene | |
10.0 | beta- | pinene | |
1.0 | sabinene | ||
trace | 2- | santalene hydrates | |
trace | beta- | sinensal | |
trace | spathulenol | ||
0.06 | terpinen-4-ol | ||
3.2 | alpha- | terpinene | |
11.0 | gamma- | terpinene | |
0.3 | alpha- | terpineol | |
1.0 | terpinolene | ||
cardamomum officinale seed oil CO2 extract | |||
# | % | Leftshift | Components |
5 | 27.00 | 1,8- | cineole |
10 | 0.40 | geraniol | |
12 | 0.60 | geranyl acetate | |
4 | 2.30 | limonene | |
6 | 3.90 | linalool | |
9 | 1.50 | linalyl acetate | |
13 | 1.50 | nerolidol | |
1 | 0.70 | alpha- | pinene |
2 | 4.30 | beta- | pinene |
3 | 2.80 | sabinene | |
7 | 2.00 | terpinen-4-ol | |
8 | 5.90 | alpha- | terpineol |
11 | 40.90 | alpha- | terpinyl acetate |
N. Gopalakishnan, Studies on the storage quality of CO2 extracted cardamom and clove bud oils. J. Agric. Food Chem., 42, 796-798 (1994). P&F 23, No. 2, 47, (1998) | |||
citrus aurantifolia swingle leaf oil | |||
# | % | Leftshift | Components |
3 | trace | camphene | |
7 | 0.40 | delta-3- | carene |
26 | 0.70 | beta- | caryophyllene |
20 | 0.50 | citronellal | |
13 | trace | para- | cymene |
21 | 0.20 | decanal | |
19 | trace | alpha-para- | dimethyl styrene |
29 | 40.00 | geranial | |
33 | 0.60 | geraniol | |
30 | 0.50 | geranyl acetate | |
15 | trace | hexanol | |
10 | trace | (E)-2- | hexenal |
17 | trace | (E)-2- | hexen-1-ol |
16 | trace | (Z)-3- | hexen-1-ol |
8 | 24.70 | limonene | |
22 | 0.80 | linalool | |
23 | trace | linalyl acetate | |
6 | 1.00 | myrcene | |
28 | 23.80 | neral | |
32 | 0.20 | nerol | |
18 | trace | nonanal | |
12 | 1.40 | (E)-beta- | ocimene |
9 | 0.10 | beta- | phellandrene |
1 | 0.30 | alpha- | pinene |
4 | 0.30 | beta- | pinene |
24 | 0.10 | iso | pulegol |
5 | 2.30 | sabinene | |
31 | 0.10 | beta- | selinene |
25 | 0.10 | terpinen-4-ol | |
11 | 0.30 | gamma- | terpinene |
27 | 0.20 | alpha- | terpineol |
14 | 0.10 | terpinolene | |
2 | 0.20 | alpha- | thujene |
S. Kamiyama and M. Amaha, Studies on leaf oils of Citrus species. VI. Composition of leaf oil from ten Citrus taxa and some intrageneric hybrids Bull. Brew. Sci., 18, 17-27 (1972). P&F 18, No. 5, 43, (1993) | |||
citrus aurantium subsp. junos leaf oil | |||
# | % | Leftshift | Components |
3 | trace | camphene | |
26 | 0.39-0.55 | beta- | caryophyllene |
16 | 0.28-0.30 | citronellal | |
9 | 0.71-1.09 | para- | cymene |
19 | 0.07-0.12 | decanal | |
25 | 0.19-0.39 | beta- | elemene |
31 | 0.03-0.04 | elemol | |
32 | 0.15-0.21 | beta- | eudesmol |
29 | 0.05 | alpha- | farnesene |
23 | 0.14-0.17 | geranyl acetate | |
27 | 0.13-0.14 | alpha- | humulene |
10 | 15.14-18.98 | limonene | |
15 | 0.19-0.21 | linalool | |
20 | 0.07-0.08 | linalyl acetate | |
24 | 45.36-58.50 | methyl N-methyl anthranilate | |
28 | 0.11-0.15 | gamma- | muurolene |
6 | 0.55-0.82 | myrcene | |
30 | 0.23-0.28 | nerolidol | |
22 | 0.07-0.14 | neryl acetate | |
11 | 3.42-5.14 | (E)-beta- | ocimene |
13 | trace-0.03 | octanol | |
7 | 0.27-0.36 | alpha- | phellandrene |
2 | 0.68-1.62 | alpha- | pinene |
5 | 0.86-1.56 | beta- | pinene |
4 | 0.24-0.33 | sabinene | |
17 | 0.05-0.06 | terpinen-4-ol | |
8 | 0.08-0.12 | alpha- | terpinene |
12 | 13.62-18.46 | gamma- | terpinene |
18 | 0.05-0.06 | alpha- | terpineol |
14 | 0.42-0.52 | terpinolene | |
1 | 0.25-0.63 | alpha- | thujene |
21 | 0.07-0.08 | undecanal | |
Y-Z. Huang, Y-H. Cao, Q-Y. Chen and Y-L. Wu, Studies on the chemical components of essential oil from the leaves of Citrus junos (Sieb) Tan cv. louhancherg Hort. Chemistry Industry Forest Prod., 13, 165-168 (1993). P&F 24, No. 6, 45, (1999) | |||
citrus aurantium var. amara absolute morocco | |||
# | % | Leftshift | Components |
17 | 3.6-15.4 | farnesol | |
12 | 0.0-2.0 | geraniol | |
10 | 0.0-1.3 | geranyl acetate | |
18 | 2.6-9.9 | indole | |
3 | 0.0-3.6 | limonene | |
5 | 34.0-48.0 | linalool | |
6 | 14.0-21.0 | linalyl acetate | |
16 | 1.0-4.3 | methyl anthranilate | |
2 | 0.0-0.5 | myrcene | |
11 | 0.0-1.1 | nerol | |
15 | 4.9-8.9 | nerolidol | |
9 | 0.0-0.7 | neryl acetate | |
4 | 0.0-2.2 | (E)-beta- | ocimene |
13 | 0.0-2.1 | 2- | phenethyl alcohol |
1 | 0.0-2.7 | beta- | pinene |
7 | 0.0-0.8 | terpinen-4-ol + beta-caryophyllene | |
8 | 1.5-3.7 | alpha- | terpineol |
M. J. Prager and M. A. Miskiewicz, Gas chromatographic/mass Spectrometric analysis identification and detection of adulteration of perfumery products from bitter orange. trees. J. Assoc. Offic. Anal. Chem., 64, 131-136 (1981). P&F 22, No. 6, 45, (1997) | |||
citrus aurantium var. amara flower water absolute | |||
# | % | Leftshift | Components |
17 | 0.0-1.9 | farnesol | |
12 | 3.8-7.6 | geraniol | |
10 | 0.0-1.1 | geranyl acetate | |
18 | 0.0-3.2 | indole | |
2 | 0.0-2.2 | limonene | |
5 | 40.0-53.0 | linalool | |
3 | 1.0-3.7 | (E)- | linalool oxide |
4 | 0.6-2.3 | (Z)- | linalool oxide |
6 | 0-2.4 | linalyl acetate | |
16 | 2.0-11.4 | methyl anthranilate | |
11 | 1.7-2.7 | nerol | |
15 | 0.0-1.5 | nerolidol | |
9 | 0.0-0.6 | neryl acetate | |
13 | 0.9-3.9 | 2- | phenethyl alcohol |
1 | 0.0-1.1 | beta- | pinene |
7 | 0.6-2.0 | terpinen-4-ol + beta-caryophyllene | |
8 | 13.0-22.0 | alpha- | terpineol |
M. J. Prager and M. A. Miskiewicz, Gas chromatographic/mass Spectrometric analysis identification and detection of adulteration of perfumery products from bitter orange. trees. J. Assoc. Offic. Anal. Chem., 64, 131-136 (1981). P&F 22, No. 6, 45, (1997) | |||
citrus aurantium var. bergamia wright et arn. leaf oil | |||
# | % | Leftshift | Components |
18 | 0.02 | borneol | |
7 | 0.64 | 1,8- | cineole |
11 | 0.02 | citronellal | |
23 | 3.27 | citronellol | |
15 | 0.42 | citronellyl acetate | |
21 | 3.15 | geranial | |
25 | 2.77 | geraniol | |
22 | 0.08 | geranyl acetate | |
19 | 0.90 | alpha- | humulene |
5 | 1.21 | limonene | |
12 | 22.39 | linalool | |
13 | 51.64 | linalyl acetate | |
10 | 0.03 | 6- | methyl-5-hepten-2-one |
4 | 1.63 | myrcene | |
16 | 0.07 | neral | |
24 | 1.21 | nerol | |
20 | 0.27 | neryl acetate | |
8 | 1.54 | beta- | ocimene |
6 | 0.04 | beta- | phellandrene |
1 | 0.09 | alpha- | pinene |
2 | 1.00 | beta- | pinene |
3 | 0.15 | sabinene | |
14 | 2.53 | terpinen-4-ol | |
17 | 4.21 | alpha- | terpineol |
9 | 0.31 | terpinolene | |
Y. S. Cheng and C. S. Lee, Composition of leaf essential oils from ten Citrus species. Proc. Natl Sci. Count. B. ROC, 5, 278-283(1981). P&F 18, No. 5, 43, (1993) | |||
citrus bigaradia oil | |||
An oil produced from the flowers of the bitter orange tree was analyzed by a combination of GC/MS and retention indices (Lin et al., 1986). The oil was found to possess the following composition. | |||
# | % | Leftshift | Components |
3 | 0.02 | camphene | |
25 | 0.13 | beta- | caryophyllene |
29 | trace | farnesol | |
17 | 0.04 | geranial | |
15 | trace | geraniol | |
23 | 2.15 | geranyl acetate | |
26 | trace | alpha- | humulene |
6 | 9.13 | limonene | |
9 | 50.46 | linalool | |
8 | 0.15 | (E)- | linalool oxide furanoid |
18 | 0.09 | (E)- | linalool oxide pyranoid |
21 | 0.07 | (Z)- | linalool oxide pyranoid |
16 | 18.39 | linalyl acetate | |
19 | trace | methyl anthranilate | |
27 | trace | gamma- | muurolene |
5 | 6.26 | myrcene | |
14 | 0.50 | neral | |
13 | trace | nerol | |
30 | 1.09 | (E)- | nerolidol |
28 | 0.64 | (Z)- | nerolidol |
22 | 1.09 | neryl acetate | |
24 | trace | nonanal | |
7 | 3.91 | beta- | ocimene |
2 | 0.28 | alpha- | pinene |
4 | 0.53 | beta- | pinene |
12 | trace | trans- | pinocarveol |
10 | 0.11 | terpinen-4-ol | |
11 | 4.75 | alpha- | terpineol |
20 | trace | alpha- | terpinyl acetate |
1 | trace | alpha- | thujene |
Z-K. Lin, Y-F. Hua and Y-H. Gu, The chemical constituents of the essential oil from the flowers, leaves and peels of Citrus aurantium. Zhiwu Xuebao, 28, 635-640 (1966). P&F 22, No. 6, 45, (1997) | |||
citrus bigaradia oil CO2 extract | |||
# | % | Leftshift | Components |
3 | 0.04 | camphene | |
33 | 0.07 | beta- | caryophyllene |
8 | 0.04 | para- | cymene |
35 | 0.44 | (E,Z)- | farnesol |
22 | 0.40 | geraniol | |
27 | 1.17 | geranyl acetate | |
14 | 0.04 | hexyl acetate | |
31 | 0.45 | indole | |
28 | 0.15 | (Z)- | jasmone |
9 | 11.50 | limonene | |
17 | 34.60 | linalool | |
16 | 0.16 | (E)- | linalool oxide |
15 | 0.22 | (Z)- | linalool oxide |
23 | 23.60 | linalyl acetate | |
32 | 0.98 | methyl anthranilate | |
29 | 0.03 | (Z)- | methyl jasmonate |
6 | 1.11 | myrcene | |
21 | 0.23 | nerol | |
34 | 1.21 | (E)- | nerolidol |
26 | 0.79 | neryl acetate | |
11 | 4.54 | (E)-beta- | ocimene |
10 | 0.40 | (Z)-beta- | ocimene |
24 | 0.18 | 2- | phenethyl acetate |
18 | 0.64 | 2- | phenethyl alcohol |
2 | 0.46 | alpha- | pinene |
5 | 8.79 | beta- | pinene |
4 | 1.10 | sabinene | |
19 | 0.14 | terpinen-4-ol | |
7 | 0.04 | alpha- | terpinene |
12 | 0.06 | gamma- | terpinene |
20 | 1.13 | alpha- | terpineol |
13 | 0.16 | terpinolene | |
25 | 0.14 | alpha- | terpinyl acetate |
1 | trace | alpha- | thujene |
M. H. Boelens and H. Boelens, Differences in chemical and sensory properties of orange flower and rose oils obtained from hydrodistillation and from supercritical CO, extraction. Perfum, Flavor., 22(3), 31-35 (1997). P&F 22, No. 6, 45, (1997) | |||
citrus junos sieb var. tanaka peel oil | |||
# | % | Leftshift | Components |
22 | 0.80-1.52 | bicycloelemene | |
25 | trace | trans- | carveol |
26 | trace | cis- | carveol |
21 | 0.01-0.02 | carvone | |
15 | 0.13-0.17 | beta- | caryophyllene |
5 | 6.15-8.25 | 1,8- | cineole |
24 | trace | ar- | curcumene |
7 | 0.21-0.40 | para- | cymene |
12 | trace | decanal | |
19 | trace | dodecanal | |
11 | 0.01-0.02 | delta- | elemene |
17 | 1.21-1.96 | beta- | farnesene |
27 | trace | juniper camphor | |
4 | 60.41-71.29 | limonene | |
13 | 1.64-2.00 | linalool | |
14 | trace | linalyl acetate | |
3 | 1.41-1.43 | myrcene | |
10 | trace | nonanal | |
9 | trace | octanal | |
23 | 0.01-0.02 | perillaldehyde | |
1 | 0.95-1.11 | alpha- | pinene |
2 | 0.32-0.35 | beta- | pinene |
20 | trace | piperitone | |
16 | trace-0.02 | terpinen-4-ol | |
6 | 7.59-7.78 | gamma- | terpinene |
18 | 0.10-0.25 | alpha- | terpineol |
8 | 0.23-0.51 | terpinolene | |
28 | 0.12-0.21 | thymol | |
M. Sawamura, T. Kuriyama, Z-F. Li and H. Kusunose, Composition of peel oil components of yuzu (Citrus junos Tanaka) extracted by supercritical carbon dioxide and those of traditional ones. Nippon Shokuhin Kogyo Gaikkaishi, 36, 34-38 (1989). P&F 24, No. 6, 45, (1999) | |||
citrus junos sieb var. tanaka peel oil CO2 extract | |||
# | % | Leftshift | Components |
22 | 0.90-1.65 | bicycloelemene | |
25 | trace-0.01 | trans- | carveol |
26 | trace-0.01 | cis- | carveol |
21 | 0.01 | carvone | |
15 | 0.02-0.19 | beta- | caryophyllene |
5 | 3.70-5.80 | 1,8- | cineole |
24 | trace | ar- | curcumene |
7 | 0.11-0.48 | para- | cymene |
12 | trace-0.03 | decanal | |
19 | trace-0.02 | dodecanal | |
11 | 0.01-0.02 | delta- | elemene |
17 | 1.41-3.49 | beta- | farnesene |
27 | trace-0.05 | juniper camphor | |
4 | 61.91-75.74 | limonene | |
13 | 1.19-7.94 | linalool | |
14 | trace | linalyl acetate | |
3 | 1.05-1.63 | myrcene | |
10 | trace-0.04 | nonanal | |
9 | trace | octanal | |
23 | trace-0.05 | perillaldehyde | |
1 | 0.64-0.90 | alpha- | pinene |
2 | 0.28-0.37 | beta- | pinene |
20 | trace-0.07 | piperitone | |
16 | 0.01-0.33 | terpinen-4-ol | |
6 | 7.43-10.49 | gamma- | terpinene |
18 | 0.16-0.84 | alpha- | terpineol |
8 | 0.17-0.34 | terpinolene | |
28 | 0.24-1.10 | thymol | |
M. Sawamura, T. Kuriyama, Z-F. Li and H. Kusunose, Composition of peel oil components of yuzu (Citrus junos Tanaka) extracted by supercritical carbon dioxide and those of traditional ones. Nippon Shokuhin Kogyo Gaikkaishi, 36, 34-38 (1989). P&F 24, No. 6, 45, (1999) | |||
citrus sinensis peel oil cold pressed brazil | |||
# | % | Leftshift | Components |
19 | 0.02-0.04 | beta- | caryophyllene |
13 | 0.03-0.04 | citronellal + octyl acetate | |
27 | trace-0.03 | citronellol | |
21 | trace | citronellyl acetate | |
10 | trace-0.04 | para- | cymene |
14 | 0.29-0.33 | decanal | |
24 | trace-0.04 | dodecanal | |
26 | 0.04-0.16 | geranial | |
29 | 0-trace | geranyl acetate | |
7 | 91.98-93.43 | limonene | |
15 | 0.45-0.60 | linalool | |
17 | trace-0.06 | linalyl acetate | |
4 | 3.03-3.31 | myrcene | |
22 | 0.06-0.07 | neral | |
30 | 0.02-0.05 | nerol | |
25 | 0.03-0.06 | neryl acetate | |
12 | 0.05-0.06 | nonanal | |
20 | 0.04-0.07 | nonanol | |
16 | 0.08-0.11 | octanol | |
5 | trace | alpha- | phellandrene |
8 | trace | beta- | phellandrene |
1 | 0.89-0.95 | alpha- | pinene |
2 | trace | beta- | pinene |
3 | 0.45-0.71 | sabinene | |
6 | trace | alpha- | terpinene |
9 | trace-0.02 | gamma- | terpinene |
23 | 0.08-0.09 | alpha- | terpineol |
11 | 0.21-0.23 | terpinolene + octanal | |
18 | 0.02-0.04 | undecanal | |
28 | 0.13-0.27 | valencene | |
M. Koketsu, M. T. Magaihaes, V. C. Wilberg and M. G. R. Donaliso, Oleos Essenciais de frutos citricos cultivadas no Brazil. Bol. Pesqui EMBRAPA Cent. Technol. Agric. Aliment., (7), 21 pp (1983). P&F 17, No. 5, 131, (1992) | |||
citrus sinensis peel oil cold pressed egypt | |||
# | % | Leftshift | Components |
5 | 1.94 | para- | cymene |
9 | 2.87 | geranial | |
10 | 0.68 | geraniol | |
3 | 78.36 | limonene | |
6 | 4.51 | linalool | |
7 | 2.09 | linalyl acetate | |
11 | 0.24 | methyl anthranilate | |
2 | 2.23 | myrcene | |
8 | 1.26 | neral | |
1 | 0.68 | alpha- | pinene |
4 | 0.12 | alpha- | terpinene |
E. A. Omer, A. A. Youseff, E. N. Abo-Zied and A. M. Sharaby, Biochemical studies on the essential oils of Balady orange and mandarin. Egypt. J. Hort., 24, 207-218 (1997). P&F 23, No. 5, 52, (2000) | |||
citrus x bergamia peel oil turkey | |||
# | % | Leftshift | Components |
23 | 0.28 | alpha- | bergamotene |
31 | 0.33 | delta- | cadinene |
2 | 0.02 | camphene | |
24 | 0.05 | citronellyl acetate | |
14 | 0.35 | para- | cymene |
20 | 0.04 | decanal | |
30 | 1.43 | 2,7- | dimethyl-2,6-octadien-1-ol + beta-bisabolene |
26 | 0.07 | (Z)-beta- | farnesene |
34 | 0.04 | geraniol | |
32 | 0.24 | geranyl acetate | |
3 | 0.02 | hexanal | |
10 | 0.01 | (E)-2- | hexenal |
8 | 32.28 | limonene | |
21 | 16.27 | linalool | |
22 | 37.39 | linalyl acetate | |
17 | 0.01 | 6- | methyl-5-hepten-2-one |
28 | 0.05 | gamma- | muurolene |
6 | 0.78 | myrcene | |
25 | 0.36 | neral | |
33 | 0.03 | nerol | |
29 | 0.02 | neryl acetate | |
18 | 0.02 | nonanal | |
13 | 0.14 | (E)-beta- | ocimene |
11 | 0.02 | (Z)-beta- | ocimene |
16 | 0.03 | octanal | |
19 | 0.09 | octyl acetate | |
9 | 0.15 | beta- | phellandrene |
1 | 0.81 | alpha- | pinene |
4 | 3.02 | beta- | pinene |
5 | 0.55 | sabinene | |
7 | 0.07 | alpha- | terpinene |
12 | 4.12 | gamma- | terpinene |
27 | 0.18 | alpha- | terpineol + alpha-terpinyl acetate |
15 | 0.18 | terpinolene | |
K. H. C. Baser, T. Ozek and M. Tutas, Composition of cold-pressed bergamot oil from Turkey. J. Essent. Oil Res., 7, 341-342 (1995). P&F 24, No. 5, 45, (1999) | |||
citrus x latifolia oil expressed | |||
# | % | Leftshift | Components |
33 | 0.8 | alpha- | bergamotene |
52 | trace | (E)-alpha- | bisabolene |
48 | 0.8 | beta- | bisabolene |
68 | trace | alpha- | bisabolol |
25 | trace | borneol | |
32 | trace | bornyl acetate | |
69 | 0.1 | alpha- | cadinol |
3 | 0.1 | camphene | |
6 | trace | delta-3- | carene |
35 | 0.3 | beta- | caryophyllene |
73 | trace | cinnamic alcohol | |
22 | 0.1 | citronellal | |
40 | trace | citronellyl acetate | |
19 | trace | alpha- | cubebene |
27 | trace | beta- | cubebene |
15 | 0.1 | para- | cymene |
24 | 0.1 | decanal | |
72 | trace | decanoic acid | |
61 | trace | (E)-2- | dodecen-1-ol |
34 | 0.1 | beta- | elemene |
21 | 0.1 | delta- | elemene |
37 | trace | gamma- | elemene |
67 | trace | gamma- | eudesmol |
50 | 0.2 | (E,E)-alpha- | farnesene |
41 | 0.1 | (E)-beta- | farnesene |
71 | trace | (E,E)- | farnesyl acetate |
49 | 2.3 | geranial | |
58 | trace | geraniol | |
51 | 1.0 | geranyl acetate | |
45 | trace | geranyl formate | |
56 | 0.1 | germacrene B | |
46 | 0.1 | germacrene D | |
70 | trace | heptadecanal | |
65 | 0.1 | hexadecanal | |
42 | trace | alpha- | humulene |
10 | 52.2 | limonene | |
26 | 0.2 | linalool | |
30 | trace | linalyl acetate | |
59 | trace | para- | mentha-1,8-dien-10-yl acetate |
38 | trace | (E)-para- | mentha-2,8-dien-1-ol |
7 | 1.3 | myrcene | |
43 | 1.2 | neral | |
62 | trace | (E)- | nerolidol |
47 | 1.4 | neryl acetate | |
18 | trace | nonanal | |
31 | 0.1 | nonyl acetate | |
14 | trace | (E)-beta- | ocimene |
12 | trace | (Z)-beta- | ocimene |
74 | trace | octadecanal | |
17 | trace | octanal | |
29 | trace | octanol | |
23 | trace | pentadecane | |
54 | trace | perillaldehyde | |
60 | trace | perillyl acetate | |
8 | trace | alpha- | phellandrene |
11 | trace | beta- | phellandrene |
53 | trace | beta-sesqui | phellandrene |
2 | 3.2 | alpha- | pinene |
4 | 13.0 | beta- | pinene |
57 | trace | iso | piperitenone |
5 | 2.0 | sabinene | |
20 | 0.1 | (E)- | sabinene hydrate |
28 | 0.1 | (Z)- | sabinene hydrate |
39 | trace | beta- | santalene |
64 | trace | spathulenol | |
9 | 0.3 | alpha- | terpinene |
13 | 17.0 | gamma- | terpinene |
44 | 0.4 | alpha- | terpineol |
16 | 0.7 | terpinolene | |
55 | trace | tetradecanal | |
1 | trace | alpha- | thujene |
66 | trace | thymol | |
36 | trace | undecanal | |
75 | trace | undecanoic acid | |
63 | trace | viridiflorol | |
S. M. Njoroge, H. Ueda, H. Kusunose and M. Sawamura, Japanese sour citrus fruits Part IV. Volatile compounds of Naaoshichi and Tahiti lime essential oils. Flav. Fragr. J., 11, 25-29 (1996). P&F 24, No. 2, 35, (1999) | |||
croton cajucara benth. leaf oil brazil | |||
# | % | Leftshift | Components |
33 | 0.30 | aromadendrene | |
35 | 0.40 | allo- | aromadendrene |
38 | 2.20 | bicyclogermacrene | |
48 | 0.40 | alpha- | bisabolol |
14 | trace | borneol | |
22 | trace | bornyl acetate | |
29 | 2.00 | beta- | bourbonene |
40 | 0.20 | alpha- | bulnesene |
41 | 1.20 | gamma- | cadinene |
3 | 0.10 | camphene | |
31 | 6.90 | beta- | caryophyllene |
45 | 1.80 | caryophyllene oxide | |
8 | 1.10 | 1,8- | cineole + limonene |
28 | 0.50 | alpha- | copaene |
25 | trace | alpha- | cubebene |
7 | 0.20 | para- | cymene |
30 | 0.70 | beta- | elemene |
23 | 0.30 | delta- | elemene |
19 | 0.20 | geraniol | |
26 | trace | geranyl acetate | |
42 | 2.10 | germacrene B | |
37 | 4.00 | germacrene D | |
32 | 1.30 | beta- | gurjunene |
16 | trace | (Z)-3- | hexen-1-yl butyrate |
34 | 1.40 | alpha- | humulene |
13 | 41.20 | linalool | |
12 | trace | (E)- | linalool oxide furanoid |
11 | trace | (Z)- | linalool oxide furanoid |
20 | 0.30 | linalyl acetate | |
27 | 0.90 | longicyclene | |
36 | 0.20 | (Z)- | muurola-4(14),5-diene |
39 | 1.20 | alpha- | muurolene |
47 | 1.10 | epi-alpha- | muurolol |
6 | trace | myrcene | |
18 | trace | nerol | |
43 | 12.60 | (E)- | nerolidol |
24 | trace | neryl acetate | |
9 | 0.40 | (Z)-beta- | ocimene |
2 | 0.60 | alpha- | pinene |
5 | 0.10 | beta- | pinene |
4 | 0.20 | sabinene | |
44 | 2.00 | spathulenol | |
15 | 0.20 | terpinen-4-ol | |
10 | trace | gamma- | terpinene |
17 | 0.60 | alpha- | terpineol |
1 | trace | alpha- | thujene |
21 | 0.10 | thymol | |
46 | 0.60 | viridiflorol | |
J. of Ess. Oil Res. 12, No. 6, 705, (2000) | |||
croton eluteria bark oil | |||
# | % | Leftshift | Components |
80 | 0.01 | amyl benzoate | |
33 | 0.28 | allo- | aromadendrene |
129 | trace | alpha- | bisabolol |
126 | trace | beta- | bisabolol |
101 | 0.94 | borneol | |
55 | 0.22 | cadalene | |
46 | 0.42 | delta- | cadinene |
44 | 0.17 | gamma- | cadinene |
123 | 1.00 | T- | cadinol |
47 | 0.96 | alpha- | calacorene |
49 | 0.24 | beta- | calacorene |
45 | 0.11 | calamenene | |
4 | 0.40 | camphene | |
63 | 0.02 | camphor | |
10 | 0.21 | delta-2- | carene |
113 | 0.02 | carvacrol | |
110 | trace | carvenone | |
108 | 0.08 | trans- | carveol |
67 | 0.03 | carvone | |
68 | 0.21 | carvotan acetone | |
32 | 0.25 | beta- | caryophyllene |
87 | 0.67 | caryophyllene oxide + dihydro-ar-bisabolol | |
86 | 0.32 | cascarilla epoxide | |
89 | 0.08 | cascarilla furan | |
133 | 1.34 | cascarilla hydroxyketone | |
92 | 0.01 | cascarilla hydroxyketone | |
93 | 0.02 | cascarilla lactone | |
27 | 4.62 | cascarilladiene | |
90 | 1.28 | cascarilladienone | |
137 | 0.74 | cascarillone | |
121 | 1.78 | beta- | cedren-10-ol |
28 | 1.11 | beta- | cedrene isomer |
118 | 0.07 | cedrol | |
43 | 0.20 | alpha- | chamigrene |
36 | 0.11 | beta- | chamigrene |
60 | 0.28 | 1,8- | cineole |
48 | 0.09 | compound k | |
50 | 0.23 | compound l | |
51 | 0.07 | compound m | |
52 | 0.14 | compound n | |
53 | 0.01 | compound o | |
54 | 0.07 | compound p | |
74 | 0.02 | compound q | |
77 | 0.73 | compound r | |
127 | 0.38 | compound t | |
128 | 0.18 | compound u | |
135 | 0.06 | compound v | |
138 | 4.30 | compound w | |
25 | 0.39 | alpha- | copaene |
23 | 0.04 | alpha- | cubebene |
37 | 0.21 | beta- | cubebene |
66 | 0.05 | cuminaldehyde | |
42 | 2.45 | cuparene + alpha-muurolene | |
134 | 1.88 | cuparophenol | |
35 | 0.39 | ar- | curcumene |
24 | 0.53 | cyclosativene | |
102 | 0.28 | para- | cymen-8-ol |
11 | 9.91 | para- | cymene |
65 | 0.06 | 2- | decanone |
131 | 0.86 | dictyopterol 1A | |
132 | 0.43 | dictyopterol 1B | |
130 | 0.51 | 3,4- | dihydro-6-methyl-4-isopropyl-1(2H)-naphthalenone |
79 | trace | 2,5- | dimethoxy-meta-cymene |
20 | 0.01 | 2,5- | dimethoxytoluene (fennelone) |
16 | 0.16 | alpha-para- | dimethyl styrene |
119 | 1.28 | 6,7- | dimethyl undeca-5,9-dien-2-ol |
34 | 0.73 | 1,11-oxido | calamenene |
26 | 1.63 | beta- | elemene |
41 | 0.31 | gamma- | elemene |
114 | 0.56 | elemicin | |
115 | 0.51 | beta- | elemol |
124 | 3.03 | beta- | eudesmol |
31 | 0.07 | (E)-beta- | farnesene |
97 | 0.01 | alpha- | fenchyl alcohol |
136 | 0.35 | geran-9-yl-alpha-terpineol | |
81 | 2.18 | geranyl acetone | |
29 | 0.07 | germacrene D | |
120 | trace | guaiol | |
57 | trace | 2- | heptanol |
56 | 0.01 | 2- | heptanone |
1 | trace | 2,4- | hexadien-1-al |
88 | 0.28 | humulene epoxide isomer | |
125 | 0.71 | intermedeol | |
12 | 0.94 | limonene + 1,8-cineole | |
96 | 5.12 | linalool | |
94 | 0.09 | linalool oxide | |
69 | 0.02 | linalyl acetate | |
39 | 0.01 | beta- | maaliene |
98 | 0.04 | para- | menth-2-en-1-ol |
111 | trace | para- | mentha-1,3-dien-7-al |
64 | 0.02 | para- | methyl acetophenone |
8 | 0.02 | ortho- | methyl anisole |
82 | 0.05 | 3- | methyl but-2-enyl benzoate |
22 | 0.02 | methyl carvacrol | |
76 | 0.05 | methyl cascarillate | |
19 | 0.01 | methyl chavicol | |
78 | 0.22 | methyl eugenol | |
58 | 0.03 | 6- | methyl heptan-2-one |
21 | 0.02 | methyl thymol | |
59 | 0.02 | 6- | methyl-5-hepten-2-one |
18 | 0.09 | 5- | methyl-5-hexyl furan |
7 | 0.64 | myrcene | |
105 | 0.17 | myrtenol | |
116 | 0.05 | nerolidol | |
95 | 0.02 | 2- | nonanol |
61 | 0.18 | 2- | nonanone |
14 | 0.01 | (E)-beta- | ocimene |
13 | 0.01 | (Z)-beta- | ocimene |
70 | 0.05 | phellandral | |
9 | 0.13 | alpha- | phellandrene |
3 | 2.59 | alpha- | pinene |
6 | 0.35 | beta- | pinene |
99 | 0.17 | pinocarveol | |
107 | 0.10 | piperitol | |
84 | 0.03 | prenyl benzoate | |
91 | 0.09 | 4-iso | propyl-6-methyl tetral-1-one |
5 | 0.09 | sabinene | |
109 | trace | sabinol | |
38 | 0.58 | beta- | selinene |
117 | 0.70 | spathulenol | |
103 | 1.70 | terpinen-4-ol | |
73 | trace | terpinen-4-yl acetate | |
15 | 0.60 | gamma- | terpinene |
104 | 1.10 | alpha- | terpineol |
100 | trace | beta- | terpineol |
17 | 0.07 | terpinolene | |
75 | 0.16 | alpha- | terpinyl acetate |
2 | 2.11 | alpha- | thujene |
62 | 0.14 | alpha- | thujone |
30 | 0.23 | thujopsene | |
112 | trace | thymol | |
122 | 0.77 | torilenol | |
85 | trace | 2- | tridecanone |
83 | 0.15 | (Z)-5- | tridecen-2-one |
71 | 0.29 | 5,8- | undecadien-2-one + (Z)-5-undecen-2-one |
72 | 0.31 | 2- | undecanone |
40 | 0.18 | valencene | |
106 | 0.11 | verbenone | |
M. L. Hagedorn and S. M. Brown, The constituents of Cascarilla oil (Croton eluteria Bennett) Flav. Fragr. J., 6, 193-204 (1991). P&F 18, No. 6, 53, (1993) | |||
cymbopogon citratus leaf oil egypt | |||
# | % | Leftshift | Components |
11 | 0.59 | cadinene | |
8 | 0.79 | citronellal | |
14 | 43.56 | geranial | |
15 | 3.20 | geranyl acetate | |
5 | 7.20 | limonene | |
9 | 0.16 | linalool | |
10 | 0.82 | linalyl acetate | |
3 | 1.46 | myrcene | |
13 | 31.96 | neral | |
4 | 0.05 | alpha- | phellandrene |
7 | 0.70 | beta- | phellandrene |
1 | 0.73 | alpha- | pinene |
2 | 0.10 | beta- | pinene |
6 | 0.30 | terpinene | |
12 | 1.38 | terpineol | |
Z. Y. Daw, G. E. El-Baroty and A. M. Ebtesam, Inhibition od Aspergillus parasiticus growth and aflatoxin production by some essential oils. Chem. Mikrobiol.Technol. Lebensmitti., 16(5/6), 129-135 (1994). P&F 23, No. 4, 37, (1998) | |||
cypress leaf oil algetian | |||
# | % | Leftshift | Components |
32 | trace | borneol | |
24 | trace-0.13 | bornyl acetate | |
25 | trace | iso | bornyl acetate |
36 | 0.20-0.76 | delta- | cadinene + gamma-cadinene |
44 | trace | alpha- | cadinol |
45 | trace | delta- | cadinol |
40 | trace | (Z)-alpha- | calacorene |
4 | 0.20-0.50 | camphene | |
20 | trace | camphor | |
7 | 19.35-21.13 | delta-3- | carene |
38 | trace-0.08 | trans- | carveol + (Z)-calamenene |
26 | 0.14-0.35 | beta- | caryophyllene |
41 | trace | caryophyllene oxide | |
23 | trace-0.19 | alpha- | cedrene |
43 | 2.03-3.92 | cedrol | |
19 | trace-0.06 | alpha- | copaene |
18 | 0.07-0.15 | alpha- | cubebene |
42 | trace | cubenol | |
39 | trace | para- | cymen-8-ol |
15 | 0.21-0.24 | para- | cymene |
48 | 0.10-0.28 | dehydroabietane | |
3 | 0.73-0.81 | alpha- | fenchene |
17 | trace | (Z)-3- | hexen-1-ol |
30 | trace-0.23 | alpha- | humulene |
10 | 2.28-3.31 | limonene | |
21 | 0.07-0.33 | linalool | |
22 | 0.11-0.16 | linalyl acetate | |
47 | 0.12-0.20 | manoyl oxide | |
35 | trace-0.10 | alpha- | muurolene |
34 | trace-0.32 | gamma- | muurolene |
8 | 3.11-3.48 | myrcene + alpha-phellandrene | |
28 | trace | myrtenal | |
37 | trace | myrtenol | |
13 | trace | (E)-beta- | ocimene |
12 | trace | (Z)-beta- | ocimene |
11 | 0.43-0.54 | beta- | phellandrene + 1,8-cineole |
2 | 47.00-52.76 | alpha- | pinene |
5 | 1.10-1.37 | beta- | pinene |
29 | trace | trans- | pinocarveol |
6 | 0.74-0.93 | sabinene | |
46 | 0.26-0.95 | sandracopimaradiene | |
27 | 0.35-1.01 | terpinen-4-ol | |
9 | 0.22-0.26 | alpha- | terpinene |
14 | 0.41-0.51 | gamma- | terpinene |
16 | trace | terpinolene | |
33 | 4.10-6.47 | alpha- | terpinyl acetate |
31 | 0.42-1.03 | alpha- | terpinyl formate |
1 | 0.09-0.11 | tricyclene | |
N. Chanegriha, A. Baaliouamer, B. Y. Melklati, J. Favre-Bonvin and S. Alamercey, Chemical composition of Algetian cypress essential oil, J, Essent, Oil, Res., 5(6), 671-674 (1993). P&F 20, No. 4, 29, (1995) | |||
daucus carota sativa leaf oil | |||
# | % | Leftshift | Components |
26 | 7.38 | bisabolene | |
3 | 0.11 | bornylene | |
15 | 1.99 | camphor | |
28 | 9.85 | carotol | |
23 | 8.77 | carvone | |
8 | 0.30 | 1,8- | cineole |
25 | 3.50 | daucene | |
16 | 5.92 | alpha- | dihydro-alpha-terpineol |
9 | 3.00 | elemol | |
12 | 0.76 | alpha- | fenchol |
13 | 3.08 | beta- | fenchol |
11 | 0.61 | fenchone | |
21 | 2.00 | geraniol | |
24 | 2.00 | alpha- | humulene |
6 | 1.60 | limonene | |
14 | 14.90 | linalool | |
18 | 8.35 | linalyl acetate | |
24 | 0.69 | methyl cinnamate | |
10 | 1.33 | 6- | methyl-5-hepten-2-one |
5 | 7.49 | myrcene | |
17 | 4.02 | 2- | nonenal |
7 | 0.65 | beta- | phellandrene |
2 | 1.42 | alpha- | pinene |
4 | 10.93 | sabinene | |
19 | 1.60 | terpinen-4-ol | |
20 | 1.08 | alpha- | terpineol |
22 | 5.33 | alpha- | terpinyl acetate |
1 | 1.06 | alpha- | thujene |
R. K. Khanna, O. S. Sharma and A. Singh, The essential oil from the leaves of Daucus carota Linn var. sativa. In: Proceedings of 11th International Congress of Essential Oils, Fragrances and Flavors, New Delhi, Nov. 1989. Edits. S. C. Bhattacharyya, N. Sen and K. L. Sethi, Vol. 4, 173-176, Oxford & IBH Publ. Co., New Delhi (1989). P&F 24, No. 6, 45, (1999) | |||
elettaria cardamomum seed oil | |||
# | % | Leftshift | Components |
5 | 38.80 | 1,8- | cineole |
10 | 0.20 | geraniol | |
12 | 0.80 | geranyl acetate | |
4 | 4.00 | limonene | |
6 | 5.70 | linalool | |
9 | 1.00 | linalyl acetate | |
13 | trace | nerolidol | |
1 | 2.30 | alpha- | pinene |
2 | 6.20 | beta- | pinene |
3 | 4.20 | sabinene | |
7 | 2.00 | terpinen-4-ol | |
8 | 3.40 | alpha- | terpineol |
11 | 24.60 | alpha- | terpinyl acetate |
N. Gopalakishnan, Studies on the storage quality of CO2 extracted cardamom and clove bud oils. J. Agric. Food Chem., 42, 796-798 (1994). P&F 23, No. 2, 47, (1998) | |||
eucalyptus globulus oil pakistan | |||
Saeed and Sabir (1997) screened eucalyptus oil for their antimicrobial characteristics. As part of their study, the authors reported that a pakistani e. globulus oil contained the following constituents: | |||
# | % | Leftshift | Components |
8 | 0.20 | borneol | |
3 | 0.40 | camphene | |
16 | 16.70 | beta- | caryophyllene |
7 | 23.60 | 1,8- | cineole |
10 | 13.60 | citronellol | |
11 | 8.60 | cryptone | |
17 | 0.10 | beta- | cubebene |
1 | trace | cumene | |
6 | 0.60 | para- | cymene |
18 | 1.90 | linalool oxide | |
13 | 1.80 | linalyl acetate | |
15 | 0.60 | alpha- | phellandrene |
19 | 3.60 | beta- | phellandrene |
2 | 0.30 | alpha- | pinene |
4 | 0.40 | beta- | pinene |
14 | 0.20 | iso | pulegol |
5 | 1.20 | gamma- | terpinene |
9 | 2.90 | alpha- | terpineol |
12 | 0.50 | terpinolene | |
M. A. Saeed and A. W. Sabir, Antimicrobial studies of the constituents of Pakistani Eucalyptus oils. J. Fac. Pharm. Gazi, 12(2), 129-140 (1997). P&F 26, No. 2, 22, (2001) | |||
jasmine absolute sambac | |||
# | % | Leftshift | Components |
5 | 21.20 | benzyl acetate | |
7 | 1.05 | benzyl alcohol | |
24 | 1.50 | benzyl benzoate | |
28 | 2.43 | (E)- | cinnamyl benzoate |
27 | 0.16 | (Z)- | cinnamyl benzoate |
17 | 0.08 | para- | cresol |
18 | 0.08 | eugenol | |
12 | 12.40 | alpha- | farnesene |
22 | 1.30 | (E,E)- | farnesol |
20 | 0.50 | (E,E)- | farnesyl acetate |
6 | 0.08 | geraniol | |
1 | 0.14 | (Z)-3- | hexen-1-yl acetate |
8 | 2.50 | (Z)-3- | hexen-1-yl benzoate |
16 | 0.45 | (Z)- | jasmone |
3 | 7.40 | linalool | |
2 | trace | linalyl acetate | |
19 | 4.90 | methyl anthranilate | |
4 | 0.30 | methyl benzoate | |
11 | 4.30 | methyl linolenate | |
9 | 0.95 | methyl palmitate | |
10 | 2.00 | methyl stearate + methyl oleate + methyl acetyl anthranilate | |
13 | 2.35 | 2- | phenethyl acetate |
14 | 2.15 | 2- | phenethyl alcohol |
26 | 1.26 | 2- | phenethyl benzoate |
25 | 0.34 | phytol | |
21 | 0.35 | iso | phytol |
23 | 2.55 | phytyl acetate + geranyl linalool | |
A. Chaput, C. Gardou, D. Huddadi, R. Jullien, E. Moustafa Kamel and Y. Saint-Jaim, Etude sur les composants de l’absolue de ‘foll” Egyptian, In Proceedings VIIIth International Essential Oil Congress, Cannes, pp210-214, FEDAROM, Grass (1982). P&F 19, No. 2, 63, (1994) | |||
juniperus communis leaf oil | |||
# | % | Leftshift | Components |
17 | 0.40 | bornyl acetate | |
2 | 0.50 | camphene | |
20 | 0.60 | beta- | caryophyllene |
9 | 4.00 | 1,4- | cineole |
11 | 3.60 | para- | cymene |
13 | <0.10 | limonene oxide | |
14 | <0.10 | linalool | |
16 | <0.10 | linalyl acetate | |
3 | 0.10 | para- | menthane |
6 | 5.50 | myrcene | |
21 | <0.10 | nerol | |
22 | 0.30 | neryl acetate | |
7 | 1.30 | alpha- | phellandrene |
10 | 3.30 | beta- | phellandrene |
1 | 33.70 | alpha- | pinene |
4 | 1.10 | beta- | pinene |
5 | 27.60 | sabinene | |
15 | 4.60 | terpinen-4-ol | |
8 | 1.90 | alpha- | terpinene |
12 | 3.00 | gamma- | terpinene |
18 | 0.20 | alpha- | terpineol |
19 | <0.10 | alpha- | terpinyl acetate |
H. Horster, C. Csedo and G. Racz, Gas chromatographic analysis of the volatile oil from juniper leaves (Juniperus communis L. ) harvsted in Romania, Orvosi Szemle. 20, 78-62 (1974); Revista Medicula, 20, 79-83 (1974). P&F 19, No. 1, 31, (1994) | |||
lavandin absolute | |||
# | % | Leftshift | Components |
4 | 1.50 | borneol | |
2 | 1.70 | camphor | |
8 | 2.40 | beta- | caryophyllene + alpha-humulene |
7 | 7.70 | coumarin | |
9 | 2.60 | herniarin | |
6 | 1.80 | lavandulyl acetate | |
1 | 10.10 | linalool | |
5 | 28.40 | linalyl acetate | |
3 | 1.10 | terpinen-4-ol | |
P. Pellerin, Supercritical extraction of natural raw materials for the flavor and fragrance industry. Perf. & FIav., 16(4), 37-39 (1991). P&F 18, No. 2, 43, (1993) | |||
lavandin grosso oil | |||
# | % | Leftshift | Components |
1 | trace | acetone | |
46 | trace | beta- | bergamotene |
62 | 0.10 | bisabolene | |
78 | 0.40 | beta- | bisabolol |
59 | 2.89 | borneol | |
49 | 0.24 | bornyl acetate | |
18 | 0.04 | butyl butyrate | |
10 | 0.01 | butyl isobutyrate | |
35 | 0.10 | butyl tiglate | |
66 | 0.25 | gamma- | cadinene |
77 | 0.20 | T- | cadinol |
7 | 0.33 | camphene | |
43 | 12.16 | camphor | |
11 | 0.05 | delta-3- | carene |
64 | trace | carvone | |
52 | 2.73 | beta- | caryophyllene |
75 | 0.12 | beta- | caryophyllene epoxide |
17 | 10.22 | 1,8- | cineole |
76 | trace | cubenol | |
68 | 0.02 | cuminaldehyde | |
71 | 0.02 | para- | cymen-8-ol |
25 | 0.16 | para- | cymene |
69 | 0.03 | epoxylinalyl acetate (2 isomers) | |
54 | 1.12 | beta- | farnesene |
6 | trace | fenchene | |
33 | 0.01 | fenchone | |
39 | 0.08 | iso | fenchone |
32 | trace | galbanolene (1,3(E),5(Z)-undecatriene) | |
70 | 0.23 | geraniol | |
63 | 1.19 | geranyl acetate | |
60 | 1.06 | germacrene D | |
30 | 0.02 | hexanol | |
19 | trace | 2- | hexenal |
38 | 0.05 | hexyl 2-methyl butyrate | |
24 | 0.17 | hexyl acetate | |
34 | 0.28 | hexyl butyrate | |
29 | 0.04 | hexyl isobutyrate | |
28 | 0.02 | hexyl propionate | |
53 | 0.13 | hexyl tiglate | |
56 | 0.17 | alpha- | humulene |
55 | 0.84 | lavandulol | |
50 | 2.27 | lavandulyl acetate | |
73 | 0.02 | lavandulyl butyrate | |
74 | trace | lavandulyl epoxide | |
16 | 0.93 | limonene | |
44 | 22.53 | linalool | |
41 | 0.16 | (E)- | linalool oxide furanoid |
37 | 0.16 | (Z)- | linalool oxide furanoid |
65 | trace | (Z)- | linalool oxide pyranoid |
45 | 26.18 | linalyl acetate | |
72 | trace | linalyl hexanoate | |
2 | 0.05 | methoxyhexane | |
15 | 0.14 | 5- | methyl-3-heptanone |
12 | 1.50 | myrcene | |
67 | 0.05 | nerol | |
61 | 0.13 | neryl acetate | |
22 | 0.52 | (E)-beta- | ocimene |
20 | 1.05 | (Z)-beta- | ocimene |
27 | trace | octanal | |
23 | 0.04 | 3- | octanone |
36 | 0.12 | 1- | octen-3-ol |
31 | 0.26 | 1- | octen-3-yl acetate |
42 | trace | octyl acetate | |
13 | 0.07 | alpha- | phellandrene |
4 | 0.61 | alpha- | pinene |
8 | 0.44 | beta- | pinene |
48 | 0.19 | plinol isomer (2-dimethyl-3-methyl ethenyl cyclopentanol) | |
9 | 0.14 | sabinene | |
40 | 0.24 | sabinene hydrate | |
47 | 0.21 | alpha- | santalene |
51 | 3.34 | terpinen-4-ol | |
14 | 0.05 | alpha- | terpinene |
21 | 0.40 | gamma- | terpinene |
57 | 1.18 | alpha- | terpineol |
58 | 0.43 | gamma- | terpineol |
26 | 0.26 | terpinolene | |
5 | 0.12 | alpha- | thujene |
3 | 0.01 | tricyclene | |
R. Naef and A. F. Morris, Lavande-Lavandin. Une analyse comparative.. Rivista Ital. EPPOS, (Numnero Speciale), 365-377 (1992). P&F 18, No. 2, 43, (1993) | |||
lavandin oil abrialis | |||
# | % | Leftshift | Components |
1 | 0.02 | acetone | |
46 | 0.39 | beta- | bergamotene |
62 | 0.05 | bisabolene | |
74 | 0.24 | beta- | bisabolol |
59 | 3.65 | borneol | |
17 | 0.03 | butyl butyrate | |
10 | trace | butyl isobutyrate | |
35 | 0.15 | butyl tiglate | |
65 | 0.30 | gamma- | cadinene |
73 | 0.21 | T- | cadinol |
7 | 0.55 | camphene | |
42 | trace | camphenilone | |
43 | 12.20 | camphor | |
11 | 0.13 | delta-3- | carene |
50 | 6.03 | beta- | caryophyllene |
71 | 0.11 | beta- | caryophyllene epoxide |
16 | 10.28 | 1,8- | cineole |
57 | 0.05 | cryptone | |
72 | trace | cubebol | |
69 | 0.05 | para- | cymen-8-ol |
23 | 0.22 | para- | cymene |
67 | 0.09 | epoxylinalyl acetate (2 isomers) | |
54 | 1.09 | beta- | farnesene |
6 | trace | fenchene | |
33 | 0.01 | fenchone | |
39 | 0.09 | iso | fenchone |
32 | trace | galbanolene (1,3(E),5(Z)-undecatriene) | |
68 | 0.10 | geraniol | |
63 | 1.22 | geranyl acetate | |
60 | 1.20 | germacrene D | |
29 | 0.05 | hexanol | |
38 | 0.12 | hexyl 2-methyl butyrate | |
22 | 0.24 | hexyl acetate | |
34 | 0.30 | hexyl butyrate | |
28 | 0.14 | hexyl isobutyrate | |
27 | 0.06 | hexyl propionate | |
51 | 0.19 | hexyl tiglate | |
70 | trace | hotrienol | |
56 | 0.43 | alpha- | humulene |
55 | 0.55 | lavandulol | |
48 | 2.64 | lavandulyl acetate | |
15 | 1.50 | limonene | |
44 | 19.59 | linalool | |
41 | 0.11 | (E)- | linalool oxide furanoid |
37 | 0.11 | (Z)- | linalool oxide furanoid |
64 | 0.25 | (Z)- | linalool oxide pyranoid |
45 | 18.58 | linalyl acetate | |
2 | 0.06 | methoxyhexane | |
12 | 1.24 | myrcene | |
66 | trace | nerol | |
61 | 0.20 | neryl acetate | |
20 | 4.22 | (E)-beta- | ocimene |
18 | 2.63 | (Z)-beta- | ocimene |
25 | trace | octanal | |
31 | trace | 3- | octanol |
21 | 0.14 | 3- | octanone |
36 | 0.33 | 1- | octen-3-ol |
30 | 0.49 | 1- | octen-3-yl acetate |
26 | trace | 3- | octyl acetate |
13 | 0.07 | alpha- | phellandrene |
4 | 0.89 | alpha- | pinene |
8 | 0.87 | beta- | pinene |
9 | 0.38 | sabinene | |
40 | 0.24 | sabinene hydrate | |
47 | 0.67 | alpha- | santalene |
52 | trace | beta- | santalene |
49 | 1.23 | terpinen-4-ol | |
14 | 0.09 | alpha- | terpinene |
19 | 0.26 | gamma- | terpinene |
58 | 0.98 | alpha- | terpineol |
24 | 0.48 | terpinolene | |
5 | 0.07 | alpha- | thujene |
3 | 0.01 | tricyclene | |
53 | 0.13 | 5,5,6- | trimethyl bicyclo(2.2.1)heptan-2-one |
R. Naef and A. F. Morris, Lavande-Lavandin. Une analyse comparative.. Rivista Ital. EPPOS, (Numnero Speciale), 365-377 (1992). P&F 18, No. 2, 43, (1993) | |||
lavandin oil china | |||
# | % | Leftshift | Components |
3 | 0.13 | benzaldehyde | |
19 | 1.94 | benzyl benzoate | |
12 | 0.89 | borneol | |
2 | 1.04 | camphene | |
10 | 2.39 | camphor | |
16 | 0.12 | carvone | |
18 | 0.25 | geranyl acetate | |
7 | 0.10 | hexyl acetate | |
8 | 5.55 | linalool | |
17 | 9.15 | linalyl acetate | |
9 | 0.29 | para- | menth-3-en-1-ol |
11 | 33.79 | iso | nonyl acetate |
6 | 1.18 | 2- | octanone |
1 | 7.91 | alpha- | pinene |
5 | 0.67 | beta- | pinene |
4 | 0.28 | sabinene | |
14 | 0.10 | terpinen-4-ol | |
15 | 9.09 | alpha- | terpineol |
13 | 0.45 | beta- | terpineol |
L-F. Zhu, Y-H. Li, B-L. Li, B-Y. Lu and W-L. Zhang. Aromatic plants and essential constituents (Supplement 1). South China Institute of Botany, Chinese Academy of Science, Hai Feng Publ. Co. distributed by Peace Book Co., Ltd., Hong Kong (1995). P&F 26, No. 1, 36, (2001) | |||
lavandula angustifolia flower oil | |||
# | % | Leftshift | Components |
11 | 1.08 | beta- | caryophyllene |
12 | 3.74 | caryophyllene oxide | |
2 | 3.32 | 1,8- | cineole |
10 | 1.95 | geranyl acetate | |
9 | 5.49 | lavandulyl acetate | |
5 | 20.98 | linalool | |
4 | 1.98 | (E)- | linalool oxide furanoid |
3 | 2.44 | (Z)- | linalool oxide furanoid |
6 | 2.76 | linalool oxide pyranoid + borneol | |
8 | 26.54 | linalyl acetate | |
1 | 1.08 | myrcene | |
7 | 4.34 | alpha- | terpineol + methyl chavicol |
P. R. Venskutonis, Essential oil composition of some herbs cultivated in Lithuania. In: Flavours, fragrances and essential oils. Proceedings of the 13th International Congress of Flavours, Fragrances and Essential Oils, Istanbul, Turkey, October 1995, Edit., K. H. C. Baser, Vol. 2, pp. 108-123, Anadolu Univ. Press, Eskisehir, Turkey (1995). P&F 25, No. 4, 55, (2000) | |||
lavandula angustifolia flower water | |||
# | % | Leftshift | Components |
2.20 | borneol | ||
0.20 | bornyl acetate | ||
0.09 | camphene | ||
1.15 | camphor | ||
0.07 | caryophyllene | ||
0.14 | caryophyllene oxide | ||
3.95 | 1,8- | cineole | |
0.19 | coumarin | ||
0.13 | para- | cymene | |
0.68 | ethyl amyl ketone | ||
1.92 | (E)-beta- | farnesene | |
4.55 | geraniol | ||
0.08 | geranyl acetate | ||
0.07 | hexanol | ||
2.87 | lavandulol | ||
1.28 | limonene | ||
58.86 | linalool | ||
0.61 | (E)- | linalool oxide | |
0.76 | (Z)- | linalool oxide | |
0.11 | linalyl acetate | ||
0.07 | myrcene | ||
1.44 | nerol | ||
0.20 | neryl acetate | ||
0.31 | 3- | octanol | |
0.25 | beta- | pinene | |
0.06 | alpha- | santalene | |
6.68 | terpinen-4-ol | ||
6.06 | alpha- | terpineol | |
0.05 | terpinolene | ||
lavandula angustifolia herb oil | |||
# | % | Leftshift | Components |
19 | 0.15 | (E)- | anethole |
18 | 1.85 | borneol | |
2 | 0.76 | camphene | |
12 | 3.67 | camphor | |
5 | 0.11 | delta-3- | carene |
16 | 2.67 | beta- | caryophyllene |
8 | 4.31 | 1,8- | cineole |
10 | 1.06 | para- | cymene |
20 | 0.44 | geraniol | |
7 | 2.06 | limonene | |
13 | 44.44 | linalool | |
14 | 22.04 | linalyl acetate | |
6 | 0.29 | myrcene | |
11 | 0.48 | (E)-beta- | ocimene |
9 | 1.16 | (Z)-beta- | ocimene |
3 | 0.68 | beta- | pinene |
4 | 0.13 | sabinene | |
15 | 5.39 | terpinen-4-ol | |
17 | 1.22 | alpha- | terpineol |
1 | 1.53 | alpha- | thujene |
T. Bernard, F. Perineau, M. Delmas and A. Gaset, Extraction of essential oils. Part III. Two-stoge production of the oil of Lavandula angustifolia Mill. J. Essent. Oil Res., 1, 261.267 (1989). P&F 19, No. 4, 33, (1994) | |||
lavandula angustifolia herb oil france | |||
# | % | Leftshift | Components |
50 | trace | (E)-alpha- | bergamotene |
29 | 2.76 | borneol + linalool oxide pyranoid | |
38 | 0.06 | bornyl acetate | |
7 | 0.18 | butyl isobutyrate | |
59 | trace | cadalene | |
53 | 0.56 | gamma- | cadinene |
58 | 0.99 | T- | cadinol |
4 | 0.13 | camphene | |
26 | 0.59 | camphor | |
10 | trace | delta-3- | carene |
49 | 1.08 | beta- | caryophyllene |
56 | 3.74 | caryophyllene oxide | |
48 | 0.05 | alpha- | cedrene |
12 | 3.32 | 1,8- | cineole |
43 | 0.22 | citronellyl acetate | |
46 | trace | alpha- | copaene |
11 | 0.33 | para- | cymene |
19 | trace | para- | cymenene |
42 | trace | delta- | elemene |
51 | 0.97 | (Z)-beta- | farnesene |
60 | trace | (Z,E)- | farnesol |
36 | trace | geraniol | |
45 | 1.95 | geranyl acetate | |
52 | 0.14 | germacrene D | |
57 | 0.10 | hexadecane | |
9 | 1.96 | hexyl acetate | |
32 | 0.25 | hexyl butyrate | |
28 | 0.12 | hexyl isobutyrate + pinocarvone | |
40 | 5.46 | lavandulyl acetate | |
13 | 0.59 | limonene | |
22 | 20.98 | linalool | |
20 | 1.98 | (E)- | linalool oxide furanoid |
18 | 2.44 | (Z)- | linalool oxide furanoid |
37 | 26.54 | linalyl acetate | |
41 | 0.12 | linalyl propionate | |
35 | trace | methyl thymol | |
8 | 1.08 | myrcene | |
34 | 1.02 | nerol + citronellol + carvone | |
55 | 0.08 | (E)- | nerolidol |
54 | trace | (Z)- | nerolidol |
44 | 1.02 | neryl acetate | |
15 | 1.15 | (E)-beta- | ocimene |
14 | 0.86 | (Z)-beta- | ocimene |
61 | trace | octadecane | |
25 | 0.09 | 3- | octen-1-yl acetate |
23 | 1.34 | 1- | octen-3-yl acetate |
33 | 0.12 | octyl acetate | |
3 | 0.14 | alpha- | pinene |
6 | 0.51 | beta- | pinene + 6-methyl-5-hepten-2-one |
24 | 0.07 | cis- | pinene hydrate |
27 | 0.16 | trans- | pinocarveol |
5 | 0.05 | sabinene | |
17 | 0.11 | (E)- | sabinene hydrate |
30 | 1.52 | terpinen-4-ol | |
16 | 0.07 | gamma- | terpinene |
31 | 4.34 | alpha- | terpineol |
21 | 0.29 | terpinolene | |
47 | trace | tetradecane | |
2 | trace | alpha- | thujene |
39 | trace | thymol | |
1 | trace | tricyclene | |
P. R. Venskutonis, A. Dapkevicies and M. Baranauskiene, Composition of the essential oil of lavender (Lavandula angustifolia Mill.) from Lithuania. J. Essent. Oil Res., 9, 107-110 (1997). P&F 26, No. 4, 55, (2000) | |||
lavandula angustifolia herb oil greece | |||
# | % | Leftshift | Components |
3 | 0.04 | camphene | |
19 | 5.50 | camphor | |
6 | 0.04 | delta-3- | carene |
24 | 2.15 | beta- | caryophyllene |
31 | 0.15 | caryophyllene oxide | |
9 | 13.10 | 1,8- | cineole |
13 | 0.09 | para- | cymene |
30 | 0.45 | geranyl acetate | |
28 | 0.80 | germacrene D | |
26 | 0.25 | alpha- | humulene |
25 | 3.09 | lavandulol | |
23 | 16.01 | lavandulyl acetate | |
8 | 0.25 | limonene | |
20 | 20.18 | linalool | |
18 | 0.06 | (E)- | linalool oxide furanoid |
16 | 0.04 | (Z)- | linalool oxide furanoid |
21 | 18.60 | linalyl acetate | |
7 | 0.45 | myrcene | |
29 | 0.87 | neryl acetate | |
12 | 2.84 | (E)-beta- | ocimene |
10 | 3.11 | (Z)-beta- | ocimene |
15 | 0.08 | 3- | octanol |
17 | 0.53 | 1- | octen-3-ol |
2 | 0.58 | alpha- | pinene |
4 | 0.25 | beta- | pinene |
5 | 0.08 | sabinene | |
22 | 1.05 | terpinen-4-ol | |
11 | 0.07 | gamma- | terpinene |
27 | 1.29 | alpha- | terpineol + borneol |
14 | 0.09 | terpinolene | |
1 | 0.03 | alpha- | thujene |
K. Adam, A. Sivropoulou, S. Kokkini, T. Lanaras and M. Arsenakis, Antifungal activities of Origanum vulgare subsp. hiritum, Mentha spicata, Lavandula angustifolia and Salvia fruticosa essential oils against human pathogenic fungi. J. Agric. Food Chem., 46, 1739-1745 (1998). P&F 25, No. 4, 55, (2000) | |||
lavandula angustifolia oil CO2 extract | |||
# | % | Leftshift | Components |
33 | 1.02 | aromadendrene | |
31 | 0.19 | bergamotene | |
36 | 2.09 | alpha- | bisabolol |
19 | 2.30 | borneol | |
4 | 0.22 | camphene | |
18 | 7.90 | camphor | |
30 | 1.86 | beta- | caryophyllene |
11 | 5.83 | 1,8- | cineole |
10 | 0.14 | ortho- | cymene |
27 | 3.08 | 3,7- | dimethyl-2,6-octadienyl acetate |
32 | 2.23 | (Z)-beta- | farnesene |
25 | trace | geraniol | |
29 | 0.71 | geranyl acetate | |
9 | 0.15 | hexyl acetate | |
23 | 0.35 | hexyl butyrate | |
20 | 0.31 | lavandulol | |
17 | 25.29 | linalool | |
16 | 0.91 | (E)- | linalool oxide |
15 | 0.83 | (Z)- | linalool oxide |
26 | 34.69 | linalyl acetate | |
14 | 0.30 | para- | menth-2-en-1-ol |
1 | 0.72 | 2- | methyl cyclopentanol |
34 | 0.84 | gamma- | muurolene |
35 | 0.54 | alpha- | muurolol |
8 | 1.19 | myrcene | |
24 | trace | nerol | |
28 | 0.33 | neryl acetate | |
13 | 0.72 | (E)-beta- | ocimene |
12 | 0.58 | (Z)-beta- | ocimene |
6 | trace | 1- | octen-3-ol |
3 | 0.27 | alpha- | pinene |
7 | 0.21 | beta- | pinene |
5 | trace | sabinene | |
21 | 3.79 | terpinen-4-ol | |
22 | 0.46 | alpha- | terpineol |
2 | trace | alpha- | thujene |
E. Reverchon, G. Della Ports and F. Senatore, Supercritical CO2 extraction and fractionation of lavender essential oil and waxes. J, Agric. Food Chem., 43, 1654-1658 (1995). P&F 21, No. 3, 55, (1996) | |||
lavandula angustifolia stem oil lithuania | |||
# | % | Leftshift | Components |
1.15 | beta- | caryophyllene | |
3.73 | caryophyllene oxide | ||
9.31 | 1,8- | cineole | |
1.45 | geranyl acetate | ||
4.10 | lavandulyl acetate | ||
26.45 | linalool | ||
1.49 | (E)- | linalool oxide furanoid | |
1.93 | (Z)- | linalool oxide furanoid | |
3.37 | linalool oxide pyranoid + borneol | ||
7.07 | linalyl acetate | ||
0.97 | myrcene | ||
5.76 | alpha- | terpineol + methyl chavicol | |
P. R. Venskutonis, Essential oil composition of some herbs cultivated in Lithuania. In: Flavours, fragrances and essential oils. Proceedings of the 13th International Congress of Flavours, Fragrances and Essential Oils, Istanbul, Turkey, October 1995, Edit., K. H. C. Baser, Vol. 2, pp. 108-123, Anadolu Univ. Press, Eskisehir, Turkey (1995). P&F 25, No. 4, 55, (2000) | |||
lavandula hydrida flower water | |||
# | % | Leftshift | Components |
1.35 | borneol | ||
0.09 | bornyl acetate | ||
0.09 | camphene | ||
0.81 | camphor | ||
0.10 | caryophyllene | ||
1.57 | 1,8- | cineole | |
0.08 | coumarin | ||
0.10 | cryptone | ||
0.10 | (Z)-ortho- | cymene | |
0.08 | ethyl amyl ketone | ||
0.17 | (E)-beta- | farnesene | |
5.25 | geraniol | ||
0.10 | geranyl acetate | ||
0.10 | hexanol | ||
1.36 | lavandulol | ||
0.57 | limonene | ||
68.49 | linalool | ||
0.64 | (E)- | linalool oxide | |
0.80 | (Z)- | linalool oxide | |
0.12 | linalyl acetate | ||
0.09 | myrcene | ||
1.69 | nerol | ||
0.06 | neryl acetate | ||
0.06 | 3- | octanol | |
0.10 | beta- | pinene | |
0.07 | alpha- | santalene | |
4.39 | terpinen-4-ol | ||
0.05 | gamma- | terpinene | |
8.98 | alpha- | terpineol | |
lavandula latifolia herb oil spain | |||
In 1996, Guillen et a!. analyzed an oil of spike lavender produced from plants cultivated in northeastern Spain. The components identified in this oil on using GC and GC/ MS as the analytical procedures were as follows: | |||
# | % | Leftshift | Components |
40 | 0.11 | bergamotene | |
39 | 0.13 | bergamotene | |
43 | 0.22 | bergamotene | |
50 | 0.24 | beta- | bisabolene |
56 | 0.23 | alpha- | bisabolol |
55 | 0.02 | alpha- | bisabolol oxide |
17 | 1.13 | borneol | |
30 | 0.10 | bornyl acetate | |
26 | 0.11 | bornyl formate | |
35 | 0.17 | iso | bornyl isovalerate |
37 | 0.19 | beta- | bourbonene |
42 | 0.01 | beta- | cadinene |
51 | 0.12 | gamma- | cadinene |
54 | 0.08 | T- | cadinol |
5 | 0.56 | camphene | |
15 | 13.60 | camphor | |
41 | 0.47 | beta- | caryophyllene |
52 | 1.59 | caryophyllene oxide | |
10 | 31.31 | 1,8- | cineole |
38 | 0.02 | beta- | cubebene |
49 | 0.01 | ar- | curcumene |
19 | 0.07 | epoxylinalool | |
45 | 0.03 | farnesene | |
47 | 0.06 | farnesene | |
46 | 0.11 | farnesene | |
53 | 0.03 | farnesol | |
48 | 0.08 | germacrene A | |
25 | 0.05 | hexen-1-yl butyrate | |
27 | 0.42 | hexyl 2-methyl butyrate | |
24 | 0.37 | hexyl butyrate | |
33 | 0.03 | hexyl hexanoate | |
23 | 0.15 | hexyl isobutyrate | |
32 | 0.10 | hexyl tiglate | |
28 | 0.19 | hexyl valerate | |
44 | 0.30 | alpha- | humulene |
14 | 36.94 | linalool | |
13 | 0.05 | (E)- | linalool oxide |
12 | 0.77 | (Z)- | linalool oxide |
29 | 0.10 | linalyl acetate | |
34 | 0.03 | linalyl butyrate | |
7 | 0.15 | myrcene | |
31 | 0.02 | neryl acetate | |
3 | 1.11 | alpha- | pinene |
4 | 1.48 | beta- | pinene |
16 | 0.04 | pinocamphone | |
6 | 0.47 | sabinene | |
11 | 0.61 | (Z)- | sabinene hydrate |
18 | 0.19 | terpinen-4-ol | |
8 | 0.33 | alpha- | terpinene |
21 | 0.79 | alpha- | terpineol |
9 | 0.69 | terpinolene | |
2 | 0.02 | alpha- | thujene |
1 | 0.05 | tricyclene | |
20 | 0.24 | 1,1,3- | trimethyl-2-oxobicyclo(2.2.2)octan-5-one |
22 | 0.12 | verbenone | |
36 | 0.02 | alpha- | ylangene |
M. D. Guillen, N. Cabo and J. Burillo, Characterization of the essential oils of some cultivated aromatic plants of industrial interest. J. Sci. Food Agric., 70, 359-363 (1996). P&F 26, No. 3, 66, (2001) | |||
lavandula latifolia herb water | |||
# | % | Leftshift | Components |
2.26 | borneol | ||
0.06 | bornyl acetate | ||
32.29 | camphor | ||
0.07 | caryophyllene | ||
0.03 | caryophyllene oxide | ||
29.13 | 1,4- | cineole | |
0.06 | coumarin | ||
0.05 | ethyl amyl ketone | ||
0.79 | (E)-beta- | farnesene | |
1.80 | geraniol | ||
0.05 | geranyl acetate | ||
0.03 | hexanol | ||
0.05 | lavandulol | ||
22.65 | linalool | ||
0.08 | (E)- | linalool oxide | |
0.13 | (Z)- | linalool oxide | |
0.08 | linalyl acetate | ||
0.06 | myrcene | ||
0.56 | nerol | ||
0.02 | neryl acetate | ||
0.32 | beta- | pinene | |
0.71 | terpinen-4-ol | ||
0.02 | gamma- | terpinene | |
4.95 | alpha- | terpineol | |
0.03 | terpinolene | ||
lavandula officinalis flower oil | |||
# | % | Leftshift | Components |
1 | 0.80 | alpha- | pinene |
2 | 0.30 | camphene | |
3 | 0.30 | 1- | octen-3-ol |
4 | 0.40 | beta- | pinene |
5 | 0.70 | myrcene | |
6 | 0.20 | alpha- | phellandrene |
7 | 5.20 | 1,8- | cineole |
8 | 2.80 | (Z)-beta- | ocimene |
9 | 1.40 | (E)-beta- | ocimene |
10 | 29.50 | linalool | |
11 | 0.90 | 1- | octen-3-yl acetate |
12 | 3.50 | camphor | |
13 | 1.60 | borneol | |
14 | 2.90 | terpinen-4-ol | |
15 | 2.50 | alpha- | terpineol |
16 | 41.50 | linalyl acetate | |
17 | 2.00 | lavandulyl acetate | |
18 | 0.20 | neryl acetate | |
19 | 0.30 | geranyl acetate | |
20 | 2.40 | beta- | caryophyllene |
21 | 1.20 | beta- | farnesene |
22 | 0.40 | germacrene D | |
G. Milhau, A. Valentin, F. Benoit, M. Mallié, J-M. Baslide, V. Pellissier and J-M. Bessière, In vitro antimalarial activity of eight essential oils. J. Essent. Oil Res., 9, 329-333 (1997). | |||
lavender oil spike | |||
An oil of L. latifolia produced in France was found by Canaud and Martineau (1996) to possess the following composition: | |||
# | % | Leftshift | Components |
1.80 | alpha- | pinene | |
2.00 | beta- | pinene | |
0.80 | camphene | ||
0.60 | sabinene | ||
0.60 | myrcene | ||
0.30 | limonene | ||
25.50 | 1,8- | cineole | |
18.50 | camphor | ||
27.30 | linalool | ||
2.90 | linalyl acetate | ||
0.30 | lavandulyl acetate | ||
0.70 | terpinen-4-ol | ||
1.60 | beta- | caryophyllene | |
0.30 | lavandulol | ||
1.00 | alpha- | terpineol | |
2.50 | borneol | ||
marjoram oil spain | |||
# | % | Leftshift | Components |
26 | trace | borneol | |
37 | trace | alpha- | cadinol |
3 | 0.40 | camphene | |
18 | trace | camphor | |
36 | trace | carvacrol | |
21 | 0.40 | beta- | caryophyllene |
31 | 0.30 | caryophyllene oxide | |
9 | 42.60 | 1,8- | cineole |
29 | 0.10 | citronellol | |
13 | 0.30 | para- | cymene |
33 | 0.30 | elemol | |
27 | 0.40 | geranial | |
30 | 0.10 | geraniol | |
28 | 0.20 | geranyl acetate | |
8 | 2.10 | limonene | |
19 | 32.80 | linalool | |
17 | 0.80 | (E)- | linalool oxide |
15 | 0.80 | (Z)- | linalool oxide |
20 | 0.50 | linalyl acetate | |
6 | 1.40 | myrcene | |
12 | 0.20 | (E)-beta- | ocimene |
10 | trace | (Z)-beta- | ocimene |
2 | 2.00 | alpha- | pinene |
4 | 2.60 | beta- | pinene |
5 | 2.20 | sabinene | |
16 | 0.40 | (E)- | sabinene hydrate |
34 | 0.20 | spathulenol | |
22 | 0.30 | terpinen-4-ol | |
7 | 0.10 | alpha- | terpinene |
11 | 0.10 | gamma- | terpinene |
25 | 3.00 | alpha- | terpineol |
24 | 1.10 | gamma- | terpineol |
14 | 0.10 | terpinolene | |
1 | trace | alpha- | thujene |
35 | trace | thymol | |
23 | 0.10 | (Z)- | verbenol |
32 | 0.35 | viridiflorol | |
M. C. Soriano, J. A. Sotomayor, E. Correal, P. Sanchez Gomez and C. Garcia-Vallejo, Chemical composition of the essential oil of Thymus x arundanas Willk. and its parents T. mastichina L. and T. baeticus Boiss ex Lacaita. J. Essent. Oil Res., 9, 593-594 (1997). P&F 26, No. 1, 36, (2001) | |||
mentha citrata herb oil | |||
Lawrence (1978) used a combination of column chromatography, preparative and analytical GC and infrared spectroscopy to analyze the oils from three different strains of Menta citrata. The compounds identified in the oils were: | |||
# | % | Leftshift | Components |
27 | 0.1-0.3 | bicyclogermacrene + carvone | |
29 | <0.1-0.1 | delta- | cadinene |
22 | <0.1-2.1 | beta- | caryophyllene |
6 | 0.9-4.1 | 1,8- | cineole |
30 | <0.1-0.8 | citronellol | |
9 | 0.0-0.1 | para- | cymene |
20 | 0.0-0.3 | beta- | elemene |
32 | 0.0-1.3 | elemol | |
23 | 0.0-0.5 | (E)-beta- | farnesene |
31 | <0.1-1.0 | geraniol | |
28 | 0.2-0.5 | geranyl acetate | |
26 | 0.2-0.7 | germacrene D | |
19 | 0.0-<0.1 | alpha- | gurjunene |
21 | 0.0-1.4 | lavandulyl acetate | |
5 | <0.1-0.4 | limonene | |
17 | 10.3-38.1 | linalool | |
18 | 42.0-78.4 | linalyl acetate | |
14 | 0.0-<0.1 | menthofuran | |
13 | 0.0-0.4 | menthone | |
15 | 0.0-0.2 | iso | menthone |
4 | 0.5-1.3 | myrcene | |
25 | 0.7-1.1 | neryl acetate | |
7 | 0.2-0.5 | (Z)-beta- | ocimene |
8 | <0.1-0.6 | (E)-beta- | ocimene + gamma-terpinene |
12 | 0.2-1.5 | 3- | octanol |
11 | <0.1-1.8 | 3- | octyl acetate |
1 | 0.0-0.1 | alpha- | pinene |
2 | 0.0-0.3 | beta- | pinene |
16 | 0.0-0.2 | iso | pinocamphone |
3 | 0.0-0.2 | sabinene | |
24 | 0.6-7.3 | alpha- | terpineol |
10 | 0.0-0.1 | terpinolene | |
33 | <0.1-3.0 | viridiflorol | |
B. M. Lawrence, A study of the monoterpene interrelationships in the genus Mentha with special reference to the origin of pulegone and menthofuran. PhD thesis, Rijksuniversiteit, Groningen, Netherlands (1978). P&F 22, No. 6, 45, (1997) | |||
mentha x piperita oil CO2 extract | |||
Reverchon et al. (1994) compared the composition of a supercritical CO2 extract (SFE) of peppermint under two separate sets of conditions with a sample of peppermint oil produced by hydrodistillation. The results of the GC/MS analyses of the volatile concentrates of peppermint oil and peppermint produced by SFE can be seen in Table VIII. Note: Only the SFE-2 (T:40C, P:120 bar) will be shown as follows: | |||
# | % | Leftshift | Components |
18 | 0.20 | bornyl acetate | |
22 | 0.70 | beta- | bourbonene |
29 | 5.00 | gamma- | cadinene |
33 | 0.60 | T- | cadinol |
31 | 0.40 | (E)- | calamenene |
24 | 4.30 | beta- | caryophyllene |
32 | 0.20 | caryophyllene oxide | |
6 | 3.60 | 1,8- | cineole |
21 | trace | alpha- | cubebene |
5 | 0.10 | decane | |
13 | 0.20 | dihydrocarveol | |
23 | 0.90 | beta- | elemene |
30 | 0.40 | gamma- | elemene |
27 | 0.60 | beta- | farnesene |
25 | 0.20 | beta- | gurjunene |
26 | trace | alpha- | humulene |
16 | 0.60 | linalyl acetate | |
8 | 0.40 | para- | menth-2-en-1-ol |
11 | 23.80 | menthol | |
12 | 0.20 | iso | menthol |
9 | 36.10 | menthone | |
10 | 7.50 | iso | menthone |
19 | 11.70 | menthyl acetate | |
20 | 0.20 | iso | menthyl acetate |
17 | 0.20 | neo | menthyl acetate |
28 | trace | gamma- | muurolene |
3 | 0.20 | myrcene | |
7 | 0.20 | (Z)-beta- | ocimene |
4 | 0.10 | 3- | octanol |
1 | 0.20 | alpha- | pinene |
2 | 0.50 | beta- | pinene |
15 | 0.60 | piperitone | |
14 | 0.30 | pulegone | |
E. Reverchon, A. Ambruosi and F. Senatore, Isolation of peppermint oil using ssupercritical CO2 extraction. Flav. Fragr. J., 9, 19-23 (1994). P&F 22, No. 4, 57, (1997) | |||
myristica fragrans oil CO2 extract | |||
# | % | Leftshift | Components |
30 | trace | alpha- | bergamotene |
20 | trace | borneol | |
32 | 0.10 | delta- | cadinene |
3 | 0.10 | camphene | |
8 | 0.40 | delta-3- | carene |
29 | 0.20 | beta- | caryophyllene |
27 | 0.60 | alpha- | copaene |
10 | 0.80 | para- | cymene |
33 | 3.10 | elemicin | |
28 | trace | (E)-iso | eugenol |
25 | 0.20 | geranyl acetate | |
12 | 2.80 | limonene | |
16 | 0.60 | linalool | |
23 | 0.20 | linalyl acetate | |
35 | 40.00 | lipids | |
19 | 0.10 | (E)-para- | menth-2-en-1-ol |
18 | 0.10 | (Z)-para- | menth-2-en-1-ol |
26 | 0.10 | methyl eugenol | |
6 | 1.40 | myrcene | |
34 | 4.00 | myristic acid | |
31 | 1.30 | myristicin | |
7 | 0.30 | alpha- | phellandrene |
11 | 1.10 | beta- | phellandrene |
2 | 6.40 | alpha- | pinene |
5 | 5.50 | beta- | pinene |
4 | 20.70 | sabinene | |
14 | 1.00 | (E)- | sabinene hydrate |
17 | 0.60 | (Z)- | sabinene hydrate |
24 | 0.10 | safrole | |
21 | 1.40 | terpinen-4-ol | |
9 | 0.40 | alpha- | terpinene |
13 | 0.80 | gamma- | terpinene |
22 | 0.20 | alpha- | terpineol |
15 | 0.20 | terpinolene | |
1 | 1.10 | alpha- | thujene |
D. A. Moyler, R. M. Bowing and M. A. Stevens, CO2 extraction of essential oils: Part V. Nutmeg and mace oils. In: Spices, Herbs and Edible Fungi. Edit. G. Charalambous, 145-170, Elsevier Sci., B. V. Amsterdam (1994). P&F 25, No. 5, 52, (2000) | |||
myristica fragrans oil CO2 extract (mace) | |||
# | % | Leftshift | Components |
31 | 0.10 | alpha- | bergamotene |
33 | 0.10 | delta- | cadinene |
3 | 0.10 | camphene | |
8 | 0.60 | delta-3- | carene |
30 | 0.20 | beta- | caryophyllene |
28 | 0.40 | alpha- | copaene |
10 | 0.80 | para- | cymene |
34 | 4.20 | elemicin | |
24 | trace | eugenol | |
29 | 0.10 | (E)-iso | eugenol |
26 | 0.20 | geranyl acetate | |
12 | 3.20 | limonene | |
16 | 1.10 | linalool | |
22 | 0.20 | linalyl acetate | |
36 | 50.00 | lipids | |
19 | trace | (E)-para- | menth-2-en-1-ol |
18 | trace | (Z)-para- | menth-2-en-1-ol |
27 | 0.10 | methyl eugenol | |
6 | 1.40 | myrcene | |
35 | 0.20 | myristic acid | |
32 | 1.90 | myristicin | |
7 | 0.40 | alpha- | phellandrene |
11 | 1.20 | beta- | phellandrene |
2 | 6.60 | alpha- | pinene |
5 | 7.50 | beta- | pinene |
4 | 13.20 | sabinene | |
14 | 0.90 | (E)- | sabinene hydrate |
17 | 0.40 | (Z)- | sabinene hydrate |
23 | 0.20 | safrole | |
20 | 0.70 | terpinen-4-ol | |
9 | 0.70 | alpha- | terpinene |
13 | 1.20 | gamma- | terpinene |
21 | 0.10 | alpha- | terpineol |
15 | 0.40 | terpinolene | |
25 | 0.10 | alpha- | terpinyl acetate |
1 | 2.40 | alpha- | thujene |
D. A. Moyler, R. M. Bowing and M. A. Stevens, CO2 extraction of essential oils: Part V. Nutmeg and Mace oils. In: Spices, Herbs and Edible fungi., Edit., G. Charalambous, 145-170, Elsevier Sci. B.V., Amsterdam (1994). P&F 25, No. 3, 54, (2000) | |||
myrtus communis leaf oil | |||
# | % | Leftshift | Components |
40 | 0.10 | acetoxycyclohexane dione | |
42 | 0.02 | acetoxycyclohexane dione | |
43 | 0.01 | acetoxycyclohexane dione | |
1 | 0.53 | iso | butyl isobutyrate |
4 | 0.07 | camphene | |
17 | 0.08 | alpha- | campholenal |
7 | 0.19 | delta-3- | carene |
23 | 0.10 | trans- | carveol |
24 | 0.06 | cis- | carveol |
26 | 0.08 | carvone | |
34 | 0.15 | beta- | caryophyllene |
38 | 0.16 | caryophyllene oxide | |
9 | 28.50 | 1,8- | cineole |
41 | 0.05 | cyclohexane peroxide | |
36 | 0.19 | cyclohexendione furan | |
8 | 0.65 | para- | cymene |
27 | 0.86 | geraniol | |
32 | 0.46 | geranyl acetate | |
35 | 0.11 | alpha- | humulene |
39 | 0.09 | humulene oxide II | |
10 | 11.00 | limonene | |
16 | 8.74 | linalool | |
13 | 0.16 | linalool oxide | |
14 | 0.11 | linalool oxide | |
28 | 2.05 | linalyl acetate | |
33 | 0.95 | methyl eugenol | |
29 | 0.27 | methyl geranate | |
6 | 0.36 | myrcene | |
25 | 0.13 | nerol | |
31 | 0.30 | neryl acetate | |
11 | 0.15 | (E)-beta- | ocimene |
3 | 35.20 | alpha- | pinene |
5 | 0.30 | beta- | pinene |
18 | 0.30 | trans- | pinocarveol |
19 | 0.09 | pinocarvone | |
37 | 0.02 | spathulenol | |
21 | 0.36 | terpinen-4-ol | |
12 | 0.15 | gamma- | terpinene |
22 | 5.25 | alpha- | terpineol |
20 | 0.16 | delta- | terpineol |
15 | 0.10 | terpinolene | |
30 | 1.37 | alpha- | terpinyl acetate |
2 | 0.17 | alpha- | thujene |
P. Weyerstahl, H. Marschall and A. Rustaiyan, Constituents of the essential oil of Myrtus commnuis L. from Iran. Flav. Fragr. J., 9, 333-337 (1994). P&F 21, No. 4, 57, (1996) | |||
narcissus tazetta var. chinensis absolute | |||
# | % | Leftshift | Components |
16 | 0.04 | acetic acid | |
18 | trace | benzaldehyde | |
29 | 24.14 | benzyl acetate | |
35 | 21.00 | benzyl alcohol | |
60 | 2.18 | benzyl benzoate | |
62 | 0.17 | benzyl salicylate | |
46 | 0.12 | benzyl tiglate | |
5 | 0.51 | 1,8- | cineole |
37 | 0.05 | cinnamic aldehyde | |
48 | 0.26 | cinnamyl acetate | |
55 | 0.12 | cinnamyl alcohol | |
32 | 0.11 | (E,E)-2,4- | decadienal |
31 | 0.03 | (E,Z)-2,4- | decadienal |
24 | 0.05 | (E)-2- | decenal |
51 | 0.04 | docosane | |
57 | 0.53 | gamma- | dodecalactone |
41 | 0.12 | eicosane | |
34 | 0.04 | geraniol | |
30 | 0.04 | geranyl acetate | |
44 | 2.35 | heneicosane | |
61 | 0.65 | heptacosane | |
27 | 0.01 | heptadecane | |
3 | 0.77 | heptanal | |
22 | 0.03 | hexadecane | |
1 | 0.08 | hexanal | |
13 | 0.19 | hexanol | |
11 | 0.02 | (Z)-3- | hexen-1-ol |
58 | 6.30 | indole | |
4 | 0.12 | limonene | |
19 | 6.24 | linalool | |
17 | 0.06 | (E)- | linalool oxide furanoid |
15 | 0.05 | (Z)- | linalool oxide furanoid |
20 | trace | linalyl acetate | |
47 | 3.73 | ortho- | methoxy-2-phenethyl acetate |
52 | 0.41 | ortho- | methoxy-2-phenethyl alcohol |
53 | 0.76 | ortho- | methoxy-3-phenyl propyl acetate |
56 | 0.18 | ortho- | methoxy-3-phenyl propyl alcohol |
45 | 1.42 | ortho- | methoxybenzyl acetate |
49 | 0.25 | ortho- | methoxybenzyl alcohol |
43 | trace | methyl cinnamate | |
50 | 0.02 | methyl isoeugenol | |
10 | 0.09 | 2- | methyl-2-butenol |
2 | 0.03 | myrcene | |
12 | 0.44 | nonanal | |
7 | 4.62 | (E)-beta- | ocimene |
6 | 0.18 | (Z)-beta- | ocimene |
9 | 0.09 | octanal | |
21 | 0.14 | octanol | |
14 | 0.02 | (E)-2- | octen-1-ol |
59 | 2.14 | pentacosane | |
33 | 0.92 | 2- | phenethyl acetate |
36 | 0.57 | 2- | phenethyl alcohol |
40 | trace | 2- | phenethyl butyrate |
25 | 0.15 | phenyl acetaldehyde | |
39 | 1.83 | 3- | phenyl propyl acetate |
42 | 1.52 | 3- | phenyl propyl alcohol |
28 | 2.23 | alpha- | terpineol |
26 | 0.06 | gamma- | terpineol |
8 | trace | terpinolene | |
54 | 0.84 | tricosane | |
23 | 0.20 | undecanal | |
T. Arai, Volatile compounds of Narcissus tazetta var. chinensis flowers. Koryo, (184), 105-111 (1994). P&F 22, No. 2, 59, (1997) | |||
ocimum basilicum herb oil poland | |||
# | % | Leftshift | Components |
21 | 2.18 | alpha- | bergamolene |
31 | 0.13 | bicyclogermacrene | |
20 | 0.67 | bornyl acetate | |
18 | 0.70 | beta- | bourbonene |
39 | 0.52 | delta- | cadinol |
2 | trace | camphene | |
5 | 0.11 | delta-3- | carene |
25 | 1.42 | beta- | caryophyllene |
9 | 0.72 | 1,8- | cineole |
35 | 0.11 | citronellol | |
17 | 0.37 | alpha- | copaene |
34 | 0.04 | ar- | curcumene |
12 | 0.02 | para- | cymene |
22 | 0.86 | beta- | elemene |
38 | 0.62 | eugenol | |
36 | 0.02 | geraniol | |
33 | 0.05 | geranyl acetate | |
30 | 5.07 | germacrene D | |
27 | 0.78 | alpha- | humulene |
8 | 0.11 | limonene | |
19 | 54.06 | linalool | |
23 | 0.06 | linalyl acetate | |
15 | 0.30 | para- | menthene |
26 | 1.44 | menthol | |
16 | 0.32 | iso | menthone |
28 | 8.68 | methyl chavicol | |
37 | 1.02 | methyl eugenol | |
6 | 0.08 | myrcene | |
10 | 0.02 | (Z)-beta- | ocimene |
14 | 0.11 | allo- | ocimene |
1 | 0.83 | alpha- | pinene |
3 | 0.08 | beta- | pinene |
4 | 0.09 | sabinene | |
24 | 0.40 | terpinen-4-ol | |
7 | 0.06 | alpha- | terpinene |
11 | 0.15 | gamma- | terpinene |
29 | 0.91 | alpha- | terpineol |
13 | 0.03 | terpinolene | |
32 | 0.85 | alpha- | terpinyl acetate |
E. Kostrzewa and K. Karwowska, Chemical composition of the essential oil from sweet basil grown in Poland. Prace Inst. Lab. Bad. Przem Spoz., 44, 97-107(1991). P&F 20, No. 4, 29, (1995) | |||
orange bigarade oil | |||
# | % | Leftshift | Components |
0.10 | camphene | ||
4.14 | camphor | ||
2.48 | 1,8- | cineole | |
0.47 | citronellol | ||
0.28 | para- | cymen-8-ol | |
1.01 | para- | cymene | |
0.32 | decyl acetate | ||
0.36 | dodecane | ||
0.31 | beta- | elemene | |
1.71 | geranyl acetate | ||
0.42 | geranyl formate | ||
0.42 | alpha- | guaiene | |
20.69 | linalool | ||
1.02 | (E)- | linalool oxide furanoid | |
0.81 | (Z)- | linalool oxide furanoid | |
30.72 | linalyl acetate | ||
0.10 | 6- | methyl-5-hepten-2-one | |
0.20 | myrcene | ||
4.12 | neryl acetate | ||
11.73 | iso | nonyl acetate | |
0.62 | nonyl acetate | ||
0.36 | nopol | ||
0.11 | alpha- | pinene | |
0.50 | beta- | pinene | |
0.10 | terpinen-4-ol | ||
3.75 | alpha- | terpineol | |
3.10 | alpha- | terpinyl acetate | |
1.36 | 3,5,5- | trimethyl hexanol | |
orange peel oil bitter brazil | |||
# | % | Leftshift | Components |
2 | trace | camphene | |
22 | 0.10 | beta- | caryophyllene |
17 | 0.06 | citronellal + octyl acetate | |
28 | trace | citronellol | |
24 | trace | citronellyl acetate | |
10 | trace | para- | cymene |
18 | 0.12 | decanal | |
12 | 0.03 | dodecanal | |
13 | 0.06 | geranial | |
16 | trace | geranyl acetate | |
7 | 92.29 | limonene | |
19 | 0.21 | linalool | |
20 | 0.37 | linalyl acetate | |
5 | 3.10 | myrcene | |
25 | 0.05 | neral | |
27 | 0.05 | neryl acetate | |
15 | 0.02 | nonanal | |
23 | 0.03 | nonanol | |
6 | trace | alpha- | phellandrene |
8 | trace | beta- | phellandrene |
1 | 0.89 | alpha- | pinene |
3 | 1.17 | beta- | pinene |
4 | 0.23 | sabinene | |
21 | 0.03 | terpinen-4-ol | |
9 | 0.07 | gamma- | terpinene |
26 | 0.07 | alpha- | terpineol |
11 | 0.07 | terpinolene + octanal | |
14 | 0.29 | valencene | |
M. Koketsu, M. T. Magaihaes, V. C. Wilberg and M. G. R. Domaliso, Oleos Essenciais de Frutos Citricos Cultivados no Brazil. Bol. Pesqui EMBRAPA Cent. Technol. Agric. Aliment., (7), 21 (1983). P&F 16, No. 4, 49, (1991) | |||
origanum majorana herb oil iran | |||
# | % | Leftshift | Components |
23 | 2.80 | beta- | bisabolene |
3 | trace | camphene | |
14 | 0.60 | camphor | |
20 | 3.90 | beta- | caryophyllene |
8 | 5.70 | para- | cymene |
22 | 0.20 | germacrene D | |
21 | 0.20 | alpha- | humulene |
18 | 26.10 | linalyl acetate | |
6 | 2.90 | myrcene | |
9 | 4.10 | (Z)-beta- | ocimene |
7 | 0.20 | alpha- | phellandrene |
2 | 0.80 | alpha- | pinene |
5 | 0.50 | beta- | pinene |
16 | 7.50 | (Z)- | piperitol |
17 | 0.30 | (E)- | piperitol |
4 | 12.00 | sabinene | |
11 | 3.10 | (E)- | sabinene hydrate |
13 | 8.70 | (Z)- | sabinene hydrate |
19 | 0.50 | (Z)- | sabinene hydrate acetate |
24 | 0.20 | spathulenol | |
10 | 8.80 | gamma- | terpinene |
15 | 6.50 | alpha- | terpineol |
12 | 2.00 | terpinolene | |
1 | 0.60 | alpha- | thujene |
J. of Ess. Oil Res. 13, No. 2, 76, (2001) | |||
origanum majorana oil | |||
# | % | Leftshift | Components |
10 | 2.70 | citronellol | |
12 | 0.20 | elemol | |
3 | 9.32 | limonene | |
7 | 22.38 | linalyl acetate | |
9 | 2.56 | methyl chavicol | |
1 | 1.45 | myrcene | |
13 | 0.15 | nerolidol | |
11 | 2.07 | patchoulene | |
2 | 4.84 | alpha- | phellandrene |
5 | 6.83 | beta- | phellandrene |
4 | 7.81 | terpinene | |
8 | 26.85 | alpha- | terpineol |
6 | 4.59 | terpinolene | |
Z. Y. Daw, G. E. El-Baroty and A. M. Ebtesam, Inhibition of Aspergillus parasiticus grown and aflatoxin production by some essential oils. Chem. Mikrobiol. Technol. Lebensmitt., 16(516), 129-135 (1994). P&F 23, No. 5, 52, (2000) | |||
origanum majorana oil cuba | |||
# | % | Leftshift | Components |
35 | 3.27 | bicyclogermacrene | |
36 | trace | beta- | bisabolene |
27 | 0.49 | bornyl acetate | |
31 | 0.10 | beta- | bourbonene |
37 | trace | delta- | cadinene |
41 | trace | alpha- | cadinol |
3 | 0.81 | camphene | |
21 | 3.43 | camphor | |
29 | 0.46 | carvacrol | |
32 | 3.11 | beta- | caryophyllene |
39 | 0.70 | caryophyllene oxide | |
9 | 4.98 | para- | cymene |
30 | trace | delta- | elemene |
34 | 1.24 | germacrene D | |
40 | 0.09 | globulol | |
33 | 0.27 | alpha- | humulene |
10 | 2.12 | limonene | |
17 | 16.41 | linalool | |
15 | 0.17 | (Z)- | linalool oxide furanoid |
26 | 0.25 | linalyl acetate | |
20 | 0.40 | (E)-para- | menth-2-en-1-ol |
19 | 1.22 | (Z)-para- | menth-2-en-1-ol |
6 | 1.21 | myrcene | |
12 | 0.22 | (E)-beta- | ocimene |
11 | 1.84 | (Z)-beta- | ocimene |
4 | trace | 1- | octen-3-ol |
18 | 2.08 | 1- | octen-3-yl acetate |
7 | 0.11 | alpha- | phellandrene |
2 | 0.64 | alpha- | pinene |
5 | 4.60 | beta- | pinene |
25 | 0.11 | (E)- | piperitol |
24 | 0.22 | (Z)- | piperitol |
14 | 2.26 | (Z)- | sabinene hydrate |
38 | 1.07 | spathulenol | |
22 | 17.67 | terpinen-4-ol | |
8 | 3.32 | alpha- | terpinene |
13 | 8.34 | gamma- | terpinene |
23 | 3.19 | alpha- | terpineol |
16 | 1.52 | terpinolene | |
1 | 0.33 | alpha- | thujene |
28 | 11.55 | thymol | |
J. A. Pino, A. Rosado, M. Estarrón and V. Fuentes, Essential oil of majoram (Origanum majorana L.) grown in Cuba. J. Essent. Oil Res. 9, 479-480 (1997). P&F 25, No. 5, 52, (2000) | |||
origanum majorana oil morocco | |||
# | % | Leftshift | Components |
23 | 0.33 | aromadendrene | |
19 | 2.17 | bornyl acetate | |
14 | 1.54 | alpha- | campholenal |
21 | 0.40 | carvacrol | |
22 | 1.73 | beta- | caryophyllene |
7 | 8.07 | para- | cymene |
10 | 4.89 | fenchone | |
13 | 1.68 | alpha- | fenchyl alcohol |
17 | 2.52 | geraniol | |
24 | 0.64 | alpha- | humulene |
25 | 0.53 | ledol | |
8 | 1.74 | limonene | |
12 | 32.68 | linalool | |
18 | 0.99 | linalyl acetate | |
5 | 1.87 | myrcene | |
6 | 0.53 | alpha- | phellandrene |
2 | 0.39 | alpha- | pinene |
4 | 0.33 | beta- | pinene |
3 | 4.57 | sabinene | |
15 | 22.30 | terpinen-4-ol | |
9 | 1.21 | gamma- | terpinene |
16 | 3.26 | alpha- | terpineol |
11 | 0.46 | terpinolene | |
1 | 0.32 | alpha- | thujene |
20 | 0.56 | thymol | |
M. Charai, M. Mosaddak and M. Faid, Chemical composition and antimicrobial activities of two aromatic plants: Origanum majorana L. and O. compactum Benth. J. Essent. Oil Res., 8, 657-664 (1996). P&F 25, No. 5, 52, (2000) | |||
origanum majorana var. tenuifolium weston oil cyprus | |||
# | % | Leftshift | Components |
32 | 0.10-0.50 | (E)- | anethole |
30 | 0.30-1.00 | beta- | bisabolene |
26 | 0.10-0.20 | iso | borneol |
21 | 0.10-0.90 | bornyl acetate | |
31 | 0.10-0.30 | delta- | cadinene |
33 | 0.10-0.30 | calamenene | |
2 | 0.50-0.80 | camphene | |
17 | trace-1.80 | camphor | |
36 | 0.50-6.00 | carvacrol | |
29 | 0.00-0.70 | carvone | |
22 | 1.10-2.00 | beta- | caryophyllene |
34 | 0.10-0.80 | caryophyllene oxide | |
8 | 1.30-2.10 | 1,8- | cineole |
16 | trace-0.20 | alpha- | copaene |
11 | 1.00-4.20 | para- | cymene |
37 | trace-0.20 | delta- | elemene |
24 | 0.60-1.20 | geraniol | |
25 | 0.20-0.60 | alpha- | humulene |
7 | 1.20-2.10 | limonene | |
19 | 2.00-4.30 | linalool | |
20 | 0.00-0.10 | linalyl acetate | |
5 | 1.20-2.30 | myrcene | |
13 | 0.00-0.10 | 3- | octanol |
14 | 0.00-trace | 1- | octen-3-ol |
9 | 0.00-0.10 | beta- | phellandrene |
1 | 1.00-1.90 | alpha- | pinene |
3 | 0.20-0.50 | beta- | pinene |
28 | 0.70-1.30 | piperitone | |
4 | 1.10-5.50 | sabinene | |
15 | 1.50-4.70 | (E)- | sabinene hydrate |
18 | 7.40-33.00 | (Z)- | sabinene hydrate |
23 | 16.60-21.60 | terpinen-4-ol | |
6 | 4.70-6.50 | alpha- | terpinene |
10 | 8.30-11.10 | gamma- | terpinene |
27 | 7.30-14.20 | alpha- | terpineol |
12 | 1.70-2.40 | terpinolene | |
35 | 0.00-0.10 | thymol | |
F. I. Jean, G. J. Collin and D. Lord, Essential oils and microwave extracts of cultivated plants. Perfum. Flavor., 17(3), 35-41 (1992). P&F 23, No. 5, 52, (2000) | |||
origanum vulgare ssp. hirtum oil turkey | |||
# | % | Leftshift | Components |
25 | 0.00-0.03 | alpha- | bergamolene |
33 | 0.17-1.03 | beta- | bisabolene |
34 | 0.00-0.19 | gamma- | cadinene |
41 | 0.00-0.12 | T- | cadinol |
36 | 0.00-0.03 | calamenene | |
3 | 0.05--0.56 | camphene | |
6 | 0.07-0.10 | delta-3- | carene |
43 | 23.43-78.73 | carvacrol | |
38 | 0.00-0.09 | carvacryl acetate | |
35 | 0.00-0.04 | trans- | carveol |
26 | 0.62-2.32 | beta- | caryophyllene + terpinen-4-ol |
39 | 0.12-1.06 | caryophyllene oxide | |
11 | 0.15-1.38 | 1,8- | cineole + beta-phellandrene |
37 | 0.00-0.44 | para- | cymen-8-ol |
16 | 4.93-24.90 | para- | cymene |
28 | 0.04-3.53 | (Z)- | dihydrocarvone |
32 | 0.01-0.38 | gamma- | elemene |
30 | 0.00-0.19 | (Z)-beta- | farnesene |
31 | 0.00-0.18 | heptadecane | |
12 | 0.00-0.08 | (Z)-2- | hexenal |
29 | 0.04-0.36 | alpha- | humulene |
10 | 0.02-0.41 | limonene | |
23 | 0.03-0.46 | linalool | |
24 | 0.02-0.06 | linalyl acetate | |
1 | 0.03-0.11 | methyl 2-methyl butyrate | |
27 | 0.35-1.71 | methyl carvacrol + (E)-dihydrocarvone | |
18 | 0.00-0.06 | 6- | methyl-3-heptanol |
7 | 0.45-2.94 | myrcene | |
19 | 0.00-0.01 | nonanal | |
15 | 0.06-0.35 | (E)-beta- | ocimene |
13 | 0.00-0.07 | (Z)-beta- | ocimene |
20 | 0.16-0.93 | 1- | octen-3-ol |
8 | 0.00-0.01 | alpha- | phellandrene |
2 | 0.78-2.69 | alpha- | pinene |
4 | 0.09-0.28 | beta- | pinene |
5 | trace-0.31 | sabinene | |
21 | 0.05-1.41 | (E)- | sabinene hydrate |
22 | 0.14-9.52 | (Z)- | sabinene hydrate |
40 | 0.00-0.16 | spathulenol | |
9 | 0.39-2.31 | alpha- | terpinene |
14 | 1.83-16.32 | gamma- | terpinene |
30 | 0.35-1.45 | alpha- | terpineol + isoborneol |
17 | 0.05-0.24 | terpinolene | |
42 | 0.17-39.81 | thymol | |
K. H. C. Baser, T. Ozek, G. Tumen and E. Sezik, Composition of the Essential Oils of Turkish Origanum Species with Commercial Importance, J, Essent. Oil Res., 5, 619-623 (1993). P&F 20, No. 5, 95, (1995) | |||
osmanthus fragrans flower absolute | |||
# | % | Leftshift | Components |
96 | 0.04 | amyl benzoate | |
32 | 0.03 | amyl butyrate | |
36 | 0.008 | amyl isovalerate | |
104 | trace | amyl salicylate | |
80 | 0.06 | anethole | |
107 | 0.003 | anisyl acetate | |
51 | 0.19 | benzaldehyde | |
70 | 0.08 | benzyl acetate | |
87 | 0.19 | benzyl alcohol | |
86 | trace | benzyl butyrate | |
50 | 0.02 | benzyl formate | |
59 | 0.16 | bornyl acetate | |
15 | trace | butanal | |
31 | trace | butyl benzene | |
21 | 0.02 | butyl butyrate | |
95 | 0.12 | butyl phenyl acetate | |
62 | trace | butyric acid | |
8 | trace | camphene | |
52 | trace | camphor | |
16 | trace | delta-3- | carene |
119 | trace | carvacrol | |
71 | trace | carvone | |
20 | 0.30 | 1,8- | cineole |
75 | trace | citronellol | |
103 | trace | meta- | cresol |
102 | trace | para- | cresol |
26 | trace | para- | cymene |
113 | trace | delta- | decalactone |
106 | 11.70 | gamma- | decalactone |
29 | trace | decanal | |
117 | 0.05 | decanoic acid | |
74 | 9.20 | decanol | |
66 | 0.08 | decyl acetate | |
130 | 0.39 | dibutyl phthalate | |
84 | trace | dihydrojasmone | |
89 | 0.28 | 2,6- | dimethyl phenol |
111 | 0.03 | docosane | |
124 | 0.21 | gamma- | dodecalactone |
49 | 0.05 | dodecanal | |
97 | 0.04 | eicosane | |
2 | 0.06 | ethyl acetate | |
13 | 0.02 | ethyl benzene | |
43 | 0.03 | ethyl decanoate | |
22 | 0.004 | ethyl hexanoate | |
101 | trace | ethyl myristate | |
77 | trace | ethyl salicylate | |
108 | 1.90 | eugenol | |
121 | 0.02 | (E)-iso | eugenol |
114 | 0.02 | (Z)-iso | eugenol |
120 | 0.18 | farnesol | |
45 | trace | furfural | |
72 | trace | geranial | |
83 | 0.07 | geraniol | |
73 | trace | geranyl acetate | |
68 | 0.08 | geranyl formate + dodecanal | |
105 | trace | heneicosane | |
17 | trace | heptanal | |
94 | trace | heptanoic acid | |
9 | 0.02 | 2- | heptanol + hexanal |
38 | trace | heptyl acetate | |
33 | 0.01 | heptyl formate | |
88 | trace | heptyl isovalerate | |
37 | 0.01 | hexanal | |
81 | 0.05 | hexanoic acid | |
39 | 0.12 | (Z)-3- | hexen-1-ol |
42 | trace | hexyl butyrate | |
35 | trace | hexyl propionate | |
110 | 0.007 | hexyl salicylate | |
53 | trace | hexyl valerate | |
82 | 0.86 | alpha- | ionone |
92 | 5.85 | beta- | ionone |
116 | trace | jasmolactone | |
93 | 0.02 | (Z)- | jasmone |
128 | 0.02 | lauric acid | |
18 | trace | limonene | |
55 | 2.36 | linalool | |
44 | 14.60 | (E)- | linalool oxide furanoid |
46 | 21.10 | (Z)- | linalool oxide furanoid |
56 | trace | linalyl acetate | |
91 | 0.07 | methyl alpha-ionone + quinoline | |
19 | 0.05 | 3- | methyl butanol |
60 | trace | methyl decanoate | |
118 | trace | methyl dihydrojasmonate | |
78 | 0.03 | methyl dodecanoate | |
58 | trace | 5- | methyl furfural |
48 | 0.09 | methyl nonanoate | |
127 | 0.16 | methyl oleate | |
112 | 0.07 | methyl palmitate | |
34 | 0.02 | 2- | methyl-2-hepten-6-one |
4 | trace | 4- | methyl-2-pentenol |
14 | trace | 4- | methyl-3-penten-2-one |
131 | 0.03 | myristic acid | |
99 | 0.21 | nerolidol | |
98 | 0.04 | gamma- | nonalactone |
40 | 0.11 | nonanal | |
63 | 0.70 | nonanol | |
100 | 0.11 | octanoic acid | |
57 | 0.02 | octanol | |
28 | trace | 2- | octanone |
47 | trace | octyl acetate | |
69 | 0.02 | octyl valerate | |
132 | 0.71 | palmitic acid | |
3 | 0.003 | pentanal | |
24 | trace | pentenal | |
79 | trace | 2- | phenethyl acetate |
90 | 0.19 | 2- | phenethyl alcohol + nonadecane |
76 | 0.01 | 2- | phenethyl formate |
65 | trace | phenyl acetaldehyde | |
5 | trace | alpha- | pinene |
11 | trace | beta- | pinene |
1 | trace | propanal | |
7 | 0.01 | propanol | |
54 | 0.02 | propionic acid | |
12 | trace | sabinene | |
85 | 0.02 | safrole | |
122 | 0.03 | alpha- | santalol |
126 | 0.02 | beta- | santalol |
25 | trace | styrene | |
61 | 0.06 | terpinen-4-ol | |
23 | 0.20 | gamma- | terpinene |
67 | 0.07 | alpha- | terpineol |
27 | 0.06 | terpinolene | |
125 | 0.02 | tetracosane | |
41 | trace | tetradecane | |
109 | 0.23 | thymol | |
6 | trace | toluene | |
30 | trace | tridecane | |
115 | trace | gamma- | undecalactone |
10 | 0.008 | undecane | |
123 | 3.10 | undecanoic acid | |
64 | trace | iso | valeric acid |
129 | 0.08 | vanillin | |
V. T. Cogiya, L. G. Kharebava, R. V. Gogiya and E. B. Gvatua, Composition of the volatile compounds in flowers of Osrnanthus fragrans (Thumb) Lour. Rastit. Resur., 22, 243-248 (1986). P&F 17, No. 3, 61, (1992) | |||
petitgrain bigarade oil | |||
# | % | Leftshift | Components |
15 | 0.10 | citronellyl acetate | |
4 | 0.10 | cyclofenchene | |
7 | 0.50 | meta- | cymene |
9 | trace | para- | cymene |
16 | trace | (E)-beta- | farnesene |
22 | 2.30 | geraniol | |
20 | 3.20 | geranyl acetate | |
19 | trace | germacrene B | |
17 | 0.10 | alpha- | humulene |
6 | 4.40 | limonene | |
13 | 17.00 | linalool | |
12 | trace | (E)- | linalool oxide |
11 | trace | (Z)- | linalool oxide |
14 | 56.80 | linalyl acetate | |
23 | trace | para- | menth-6-en-2-one |
5 | 1.50 | myrcene | |
21 | 0.80 | nerol | |
24 | 0.10 | nerolidol | |
1 | 0.20 | alpha- | pinene |
2 | 2.40 | beta- | pinene |
3 | 0.40 | sabinene | |
8 | 1.60 | gamma- | terpinene |
18 | 3.70 | alpha- | terpineol |
10 | 0.20 | terpinolene | |
E. Haubrage, G. Lognay, M. Marlier, P. Danhier, J. C. Gilson and Ch. Gaspar, Etude de la toxicite de cinq huiles essentielles extraites de Citrus sp. A L’egavd de Sitophilus zeamais Motsch. (Col., Curculiondae.), Prostephanus truncatus (Horn) (Col., Bostrychidae) et Tribolium castaneum Herbst (Col., Tenebrionidae). Med. Fac, Landbouw, Riksaniv, Gent, 54, 1083-1093 (1989). P&F 18, No. 5, 43, (1993) | |||
petitgrain oil paraguay | |||
# | % | Leftshift | Components |
26 | 0.10 | (E+Z)- | anhydrolinalool oxide furanoid |
5 | trace | delta-3- | carene |
14 | trace | para- | cymene |
15 | trace | alpha-para- | dimethyl styrene |
29 | trace | geranial | |
20 | 1.80 | geraniol | |
24 | 4.20 | geranyl acetate | |
8 | 4.00 | limonene | |
16 | 24.10 | linalool | |
25 | 0.20 | (E+Z)- | linalool oxide furanoid |
21 | 45.50 | linalyl acetate | |
6 | 2.50 | myrcene | |
28 | trace | neral | |
19 | 0.80 | nerol | |
23 | 2.20 | neryl acetate | |
11 | 2.50 | (E)-beta- | ocimene |
10 | 0.10 | (Z)-beta- | ocimene |
27 | trace | perillene | |
9 | trace | beta- | phellandrene |
2 | 0.20 | alpha- | pinene |
4 | 2.50 | beta- | pinene |
3 | 0.40 | sabinene | |
17 | 0.10 | terpinen-4-ol | |
7 | 0.30 | alpha- | terpinene |
12 | 0.10 | gamma- | terpinene |
18 | 5.20 | alpha- | terpineol |
13 | 0.40 | terpinolene | |
22 | 0.10 | alpha- | terpinyl acetate |
1 | trace | alpha- | thujene |
M. H. Boelens and A. Oporto, Natural isolates from Seville bitter orange tree. Perf. & Flav., 16(6), 1-7 (1991). P&F 18, No. 5, 43, (1993) | |||
petitgrain sweet oil | |||
# | % | Leftshift | Components |
6 | 1.66 | delta-3- | carene |
47 | 0.20 | trans- | carveol |
49 | 0.21 | cis- | carveol |
50 | 0.10 | caryophyllene oxide | |
22 | 1.52 | citronellal | |
42 | 1.30 | citronellol | |
30 | 0.70 | citronellyl acetate | |
44 | 0.60 | cuminaldehyde | |
48 | 0.50 | para- | cymen-8-ol |
8 | 0.09 | ortho- | cymene |
14 | 3.17 | para- | cymene |
17 | 0.08 | 2,6- | dimethyl-5-heptenal |
39 | 0.31 | 2- | dodecanone |
26 | 0.03 | beta- | elemene |
31 | 0.17 | (E)-beta- | farnesene |
38 | 1.72 | geranial | |
41 | 0.32 | geranyl acetate | |
36 | 0.31 | geranyl formate | |
10 | 9.76 | limonene | |
24 | 12.09 | linalool | |
21 | 0.89 | (E)- | linalool oxide furanoid |
20 | 1.07 | (Z)- | linalool oxide furanoid |
25 | 0.30 | linalyl acetate | |
51 | 0.29 | para- | mentha-1,4-dien-7-ol |
12 | 0.12 | ortho- | mentha-1(7),5,8-triene |
43 | 0.09 | para- | methyl acetophenone |
34 | 0.20 | methyl geranate | |
16 | 0.47 | 6- | methyl-5-hepten-2-one |
7 | 0.40 | myrcene | |
29 | 0.50 | myrtenal | |
45 | 0.07 | myrtenol | |
32 | 1.01 | neral | |
46 | 0.66 | nerol | |
37 | 0.08 | neryl acetate | |
18 | 0.75 | 3- | octanol |
19 | 0.16 | perillene | |
11 | 0.01 | beta- | phellandrene |
1 | 0.95 | alpha- | pinene |
4 | 1.76 | beta- | pinene |
52 | 0.46 | para-iso | propyl anisole |
28 | 0.51 | iso | pulegol |
5 | 22.32 | sabinene | |
23 | 0.61 | sabinene hydrate | |
27 | 3.33 | terpinen-4-ol | |
13 | 0.11 | gamma- | terpinene |
9 | 0.08 | alpha- | terpinene + heptanal + 2-methyl-2-butenal |
33 | 1.09 | alpha- | terpineol |
15 | 0.02 | terpinolene | |
35 | 0.12 | alpha- | terpinyl acetate |
2 | 0.58 | alpha- | thujene |
3 | 0.08 | toluene | |
40 | 0.39 | 2,6,6- | trimethyl-2-vinyl-5-hydroxytetrahydropyran |
A. Baaliouamer, B. Y. Meklati, D. Fraisse and C. Scharff, Analysis of leaf oils from four varieties of sweet orange by combined gas chromatography mass spectrometry. Flav. Fragr. J., 3, 47-52 ( 1988). P&F 18, No. 5, 43, (1993) | |||
pinus mugo turra var. pumilio (haenke) zenari oil | |||
# | % | Leftshift | Components |
36 | trace | bisabolol | |
23 | 0.43 | bornyl acetate | |
20 | 0.13 | beta- | bourbonene |
31 | 11.89 | delta- | cadinene + geranyl acetate |
37 | 5.82 | alpha- | cadinol |
34 | 2.17 | T- | cadinol |
32 | 0.13 | calamenene | |
4 | 5.24 | camphene | |
7 | 11.77 | delta-3- | carene |
26 | 0.40 | beta- | caryophyllene |
19 | 0.62 | alpha- | copaene |
18 | 0.33 | alpha- | cubebene |
14 | 0.09 | para- | cymene |
25 | 4.81 | beta- | elemene |
29 | 7.62 | germacrene D | |
17 | trace | (Z)-3- | hexen-1-yl acetate |
27 | 0.86 | alpha- | humulene |
10 | 9.13 | limonene | |
21 | 0.07 | linalool | |
22 | 0.10 | linalyl acetate | |
15 | 0.07 | para- | mentha-2,4(8)-diene |
30 | 1.87 | alpha- | muurolene |
35 | 1.51 | alpha- | muurolol |
8 | 1.52 | myrcene | |
13 | 0.33 | beta- | ocimene |
11 | 0.42 | beta- | phellandrene |
3 | 9.95 | alpha- | pinene |
5 | 1.20 | beta- | pinene |
6 | 0.30 | sabinene | |
1 | 0.17 | santene | |
33 | 0.24 | spathulenol | |
24 | 0.39 | terpinen-4-ol | |
9 | 0.13 | alpha- | terpinene |
12 | 0.23 | gamma- | terpinene |
28 | 0.10 | alpha- | terpineol |
16 | 2.15 | terpinolene | |
2 | 0.38 | tricyclene | |
M. Yatagai and T. Sato, Terpenes of leaf oils from conifers. Biochem. System. Ecol., 14, 469-478 (1986). P&F 24, No. 3, 47, (1999) | |||
ribes nigrum bud oil | |||
# | % | Leftshift | Components |
38 | trace-0.33 | allo- | aromadendrene |
40 | 0.00-1.51 | bicyclogermacrene | |
30 | 0.00-2.00 | bornyl acetate | |
41 | trace-0.15 | delta- | cadinene |
3 | trace-2.41 | camphene | |
9 | 0.17-45.50 | delta-3- | carene |
7 | trace-0.55 | delta-4- | carene |
35 | 1.20-4.98 | beta- | caryophyllene |
44 | trace-1.48 | caryophyllene oxide | |
28 | 0.00-0.18 | citronellol | |
32 | trace-0.42 | citronellyl acetate | |
26 | trace-0.66 | para- | cymen-8-ol |
11 | trace-0.17 | meta- | cymene |
12 | trace-0.48 | para- | cymene |
34 | trace-0.14 | beta- | elemene |
31 | trace-0.24 | delta- | elemene |
36 | 0.00-1.62 | gamma- | elemene |
22 | 0.00-0.20 | (Z)-1,2- | epoxylimonene |
42 | 0.00-1.12 | germacrene B | |
39 | 0.00-1.51 | germacrene D | |
37 | trace-2.00 | alpha- | humulene |
45 | 0.00-0.52 | humulene oxide | |
13 | 0.17-14.12 | limonene | |
29 | trace-0.12 | linalyl acetate | |
21 | 0.00-0.18 | (E)-para- | menth-2-en-1-ol |
23 | 0.00-0.18 | (Z)-para- | menth-2-en-1-ol |
24 | trace-0.66 | para- | mentha-1,5-dien-8-ol |
6 | 2.89-3.61 | myrcene | |
16 | 1.21-3.12 | (E)-beta- | ocimene |
15 | 0.00-5.63 | (Z)-beta- | ocimene |
8 | trace-1.58 | alpha- | phellandrene |
14 | 1.72-24.63 | beta- | phellandrene |
2 | 1.30-9.23 | alpha- | pinene |
5 | 0.17-10.22 | beta- | pinene |
4 | trace-69.00 | sabinene | |
18 | trace-0.54 | (E)- | sabinene hydrate |
20 | 0.00-0.46 | (Z)- | sabinene hydrate |
43 | trace-2.70 | spathulenol | |
46 | 0.00-0.18 | iso | spathulenol |
25 | 0.40-4.52 | terpinen-4-ol | |
10 | trace-1.32 | alpha- | terpinene |
17 | trace-1.80 | gamma- | terpinene |
27 | trace-0.22 | alpha- | terpineol |
19 | 0.40-20.00 | terpinolene | |
33 | trace-0.40 | alpha- | terpinyl acetate |
1 | trace-1.90 | alpha- | thujene |
J. L. Le Quere and A. Latrasse, Composition of the essential oils of Blackcurrant bud (Ribes nigram L.). J. Agric. Food Chem., 38, 3-10 (1990). P&F 16, No. 6, 49, (1991) | |||
rosmarinus officinalis leaf oil CO2 extract | |||
# | % | Leftshift | Components |
42 | trace | abietatriene | |
34 | 0.41 | beta- | bisabolene |
15 | 15.56 | borneol | |
23 | 4.94 | iso | bornyl acetate |
36 | 0.35 | delta- | cadinene |
35 | 0.26 | gamma- | cadinene |
25 | 0.19 | alpha- | cadinol |
37 | 0.15 | calamenene | |
2 | 3.11 | camphene | |
12 | 15.33 | camphor | |
4 | 0.39 | delta-3- | carene |
22 | 0.26 | carvone | |
28 | 2.22 | beta- | caryophyllene |
39 | 0.37 | caryophyllene oxide | |
40 | 0.20 | cedrane diol | |
10 | 20.02 | 1,8- | cineole |
26 | 0.43 | alpha- | cubebene |
31 | 1.28 | ar- | curcumene |
8 | 1.81 | para- | cymene |
20 | 0.39 | dihydrocarveol | |
38 | 0.37 | farnesene | |
30 | 0.38 | beta- | gurjunene |
9 | 0.51 | limonene | |
11 | 3.53 | linalool | |
21 | 0.48 | linalyl acetate | |
27 | 0.12 | methyl eugenol | |
33 | 0.20 | alpha- | muurolene |
6 | 0.35 | myrcene | |
16 | 1.17 | nonanol | |
41 | trace | octadecane | |
5 | 0.18 | 1- | octen-3-ol |
13 | 0.80 | pinanone | |
1 | 8.30 | alpha- | pinene |
7 | 0.74 | beta- | pinene |
14 | 0.39 | pinocarvone | |
3 | 0.32 | sabinene | |
29 | 0.41 | alpha- | santalene |
32 | 0.16 | alpha- | selinene |
17 | 1.00 | terpinen-4-ol | |
18 | 1.95 | alpha- | terpineol |
24 | 0.69 | thymol | |
43 | trace | totarol | |
19 | 8.36 | verbenone | |
E. Reverchon and F. Senatore, Isolation of rosemary oil: Comparison between hydrodistillation and supercritical CO2 extraction. Flav. Fragr. J., 7, 227-230 (1992). P&F 17, No. 6, 51, (1992) | |||
rosmarinus officinalis leaf oil france | |||
# | % | Leftshift | Components |
38 | 0.00-trace | beta- | bisabolene |
48 | 0.00-0.27 | alpha- | bisabolol |
35 | 3.24-6.53 | borneol | |
25 | 1.19-14.32 | bornyl acetate | |
39 | 0.00-0.08 | alpha- | cadinene |
40 | 0.00-0.07 | delta- | cadinene |
45 | 0.00-0.12 | T- | cadinol |
4 | 5.86-8.35 | camphene | |
20 | 3.01-7.50 | camphor | |
8 | 0.19-1.19 | delta-3- | carene |
47 | 0.00-0.14 | carvacrol | |
26 | 0.00-2.19 | beta- | caryophyllene |
44 | 0.00-0.10 | caryophyllene oxide | |
12 | 5.30-24.79 | 1,8- | cineole |
16 | 1.39-1.54 | para- | cymene |
7 | 0.07-0.78 | 6,6- | dimethyl(3.1.1)bicyclohept-3-ene-2-butylene |
31 | 0.00-0.19 | beta- | farnesene |
43 | 0.00-trace | geraniol | |
28 | 0.33-0.68 | geranyl acetate | |
36 | 0.00-trace | germacrene D | |
29 | 0.00-0.94 | alpha- | humulene |
32 | 0.00-0.06 | lavandulol | |
30 | trace-0.54 | lavandulyl acetate | |
11 | 3.02-3.96 | limonene | |
22 | 1.46-9.41 | linalool | |
23 | 0.00-5.52 | linalyl acetate | |
37 | 0.00-trace | gamma- | muurolene |
9 | 1.55-2.12 | myrcene | |
41 | 0.00-0.05 | nerol | |
15 | 0.02-0.53 | (E)-beta- | ocimene |
13 | 0.00-0.05 | (Z)-beta- | ocimene |
2 | 19.91-35.08 | alpha- | pinene |
5 | 2.08-4.35 | beta- | pinene |
21 | 0.06-0.58 | iso | pinocamphone |
6 | 0.21-1.36 | sabinene | |
18 | 0.09-0.12 | (E)- | sabinene hydrate |
24 | 0.00-trace | alpha- | santalene |
27 | 0.00-1.21 | terpinen-4-ol | |
10 | 0.39-0.46 | alpha- | terpinene |
14 | 0.28-1.28 | gamma- | terpinene |
34 | 0.00-0.09 | alpha- | terpineol |
17 | 0.51-0.78 | terpinolene | |
3 | 0.00-0.08 | alpha- | thujene |
46 | 0.00-0.18 | thymol | |
1 | 0.24-0.41 | tricyclene | |
42 | 0.00-0.04 | 3,3,6- | trimethyl(2.2.1)bicyclohept-1-en-7-ol |
33 | 1.03-5.08 | verbenone | |
19 | 0.06-0.15 | viridiflorene | |
J. C. Chalchat, R. P. Garry, A. Michet, B. Benjilali and J. L. Chabart, Essential oils of rosemary (Rosmarinus officinalis L.). The chemical composition of the oils of various origins (Morocco, Spain, France). J. Essent. Oil Res., 5, 613-618 (1993). P&F 20, No. 1, 47, (1995) | |||
rosmarinus officinalis leaf oil morocco | |||
# | % | Leftshift | Components |
38 | 0.06-0.13 | beta- | bisabolene |
35 | 3.00-4.51 | borneol | |
25 | 0.12-0.86 | bornyl acetate | |
39 | 0.08-0.98 | alpha- | cadinene |
40 | 0.18-0.77 | delta- | cadinene |
44 | 0.00-0.11 | T- | cadinol |
4 | 3.21-3.98 | camphene | |
20 | 7.42-10.80 | camphor | |
8 | 0.15-0.20 | delta-3- | carene |
26 | 2.41-4.32 | beta- | caryophyllene |
43 | 0.00-0.10 | caryophyllene oxide | |
12 | 43.53-53.48 | 1,8- | cineole |
16 | 0.99-1.40 | para- | cymene |
7 | 0.00-trace | 6,6- | dimethyl(3.1.1)bicyclohept-3-ene-2-butylene |
31 | 0.37-0.51 | beta- | farnesene |
42 | 0.00-0.05 | geraniol | |
28 | 0.00-0.07 | geranyl acetate | |
36 | 0.00-0.13 | germacrene D | |
29 | 0.27-5.43 | alpha- | humulene |
32 | 0.00-0.23 | lavandulol | |
30 | 0.00-0.30 | lavandulyl acetate | |
11 | 1.86-2.06 | limonene | |
22 | 0.73-1.76 | linalool | |
23 | 0.00-0.02 | linalyl acetate | |
37 | 0.00-0.13 | gamma- | muurolene |
9 | 1.27-1.60 | myrcene | |
41 | 0.00-0.10 | nerol | |
15 | 0.00-0.06 | (E)-beta- | ocimene |
13 | 0.00-0.27 | (Z)-beta- | ocimene |
2 | 9.56-12.72 | alpha- | pinene |
5 | 5.53-7.83 | beta- | pinene |
21 | 0.04-0.13 | iso | pinocamphone |
6 | 0.14-0.21 | sabinene | |
18 | 0.04-0.19 | (E)- | sabinene hydrate |
24 | 0.00-0.80 | alpha- | santalene |
27 | 0.69-0.91 | terpinen-4-ol | |
10 | 0.52-0.66 | alpha- | terpinene |
14 | 0.93-1.19 | gamma- | terpinene |
34 | 0.00-2.46 | alpha- | terpineol |
17 | 0.29-0.36 | terpinolene | |
3 | 0.00-trace | alpha- | thujene |
1 | 0.10-0.23 | tricyclene | |
33 | 0.00-0.46 | verbenone | |
19 | 0.00-0.12 | viridiflorene | |
J. C. Chalchat, R. P. Garry, A. Michet, B. Benjilali and J. L. Chabart, Essential oils of rosemary (Rosmarinus officinalis L.). The chemical composition of the oils of various origins (Morocco, Spain, France). J. Essent. Oil Res., 5, 613-618 (1993). P&F 20, No. 1, 47, (1995) | |||
salvia lavandulifolia spp. vellerea oil spain | |||
In 1993, Fournier et al. used GC and GC/MS to analyze eight commercial samples of Spanish sage oil. The components identified in seven of these oils were shown. The other oil, which probably originated from S. lavandulaefolia ssp. vellerea, was found to possess the following composition: | |||
# | % | Leftshift | Components |
20 | 0.8 | borneol | |
15 | 1.1 | bornyl acetate | |
3 | 5.7 | camphene | |
12 | 33.1 | camphor | |
16 | 0.8 | beta- | caryophyllene |
23 | 0.2 | caryophyllene oxide | |
8 | 15.2 | 1,8- | cineole |
10 | 1.1 | para- | cymene |
22 | 0.2 | geraniol | |
7 | 4.1 | limonene | |
13 | 1.6 | linalool | |
14 | 1.1 | linalyl acetate | |
6 | 1.6 | myrcene | |
2 | 4.5 | alpha- | pinene |
4 | 3.1 | beta- | pinene |
5 | 1.1 | sabinene | |
18 | 12.8 | (Z)- | sabinyl acetate |
17 | 0.5 | terpinen-4-ol | |
9 | 0.1 | gamma- | terpinene |
19 | 0.4 | alpha- | terpineol |
11 | 0.1 | terpinolene | |
21 | 5.8 | alpha- | terpinyl acetate |
1 | 0.1 | alpha- | thujene |
G. Fournier, N. Pages and I. Cosperic, Contribution to the study of Salvia Lavandulifolia essential oil: potential toxicity attributable to sabinyl acetate. Planta Med., 59, 96-97 (1993). N. Pages, G. Fournier, V. Velut and C. Imberk, Potential teratogenicity in mice of the essential oil of Salvia lavandulifolia Vahl., Study of a fraction rich in sabinyl acetate. Phytother. Res., 6(2), 80-83 (1992). P&F 23, No. 1, 39, (1998) | |||
salvia lavandulifolia vahl. leaf oil | |||
In 1983 Cordoba Rodriguez examined the chemical composition of Spanish sage oil produced from more than 30 collections of plants from different areas in Spain. She determined that the oils possessed the following compositional range: | |||
# | % | Leftshift | Components |
42 | 0.0-0.2 | aromadendrene | |
43 | 0.0-0.4 | allo- | aromadendrene |
38 | 0.0-0.8 | (Z)-alpha- | bergamotene |
45 | 0.0-0.2 | beta- | bisabolene |
23 | 1.5-6.4 | borneol | |
24 | 0.2-1.9 | iso | borneol |
33 | 0.8-4.9 | bornyl acetate | |
4 | 4.6-10.6 | camphene | |
19 | 12.9-36.1 | camphor | |
20 | 0.0-0.3 | carvone | |
40 | 0.2-3.7 | beta- | caryophyllene |
39 | 0.0-0.8 | iso | caryophyllene |
46 | 0.0-0.1 | caryophyllene oxide | |
18 | 12.0-40.3 | 1,8- | cineole |
36 | 0.0-0.1 | alpha- | copaene |
35 | 0.0-0.2 | alpha- | cubebene |
44 | 0.1-0.9 | ar- | curcumene |
10 | 0.4-2.1 | para- | cymene |
17 | 0.0-0.4 | alpha-para- | dimethyl styrene |
29 | 0.1-0.7 | geraniol | |
32 | 0.1-0.2 | geranyl acetate | |
37 | 0.0-0.2 | alpha- | gurjunene |
41 | 0.0-1.0 | alpha- | humulene |
11 | 2.4-5.0 | limonene | |
22 | 0.2-11.2 | linalool | |
30 | 0.1-5.8 | linalyl acetate | |
7 | 1.0-4.9 | myrcene | |
28 | 0.0-0.6 | nerol | |
31 | 0.1 | neryl acetate | |
13 | 0.0-0.4 | (E)-beta- | ocimene |
16 | 0.0-0.3 | (Z)-allo- | ocimene |
12 | 0.0-2.2 | (Z)-beta- | ocimene |
8 | 0.0-0.2 | alpha- | phellandrene |
3 | 4.7-10.9 | alpha- | pinene |
6 | 3.3-7.3 | beta- | pinene |
5 | 0.6-2.2 | sabinene | |
21 | 0.1-0.6 | (E)- | sabinene hydrate |
34 | 0.1-6.6 | (Z)- | sabinyl acetate |
25 | 0.2-0.8 | terpinen-4-ol | |
9 | 0.0-0.1 | alpha- | terpinene |
14 | 0.0-0.7 | gamma- | terpinene |
27 | 0.1-1.9 | alpha- | terpineol |
26 | 0.0-0.7 | delta- | terpineol |
15 | 0.0-0.3 | terpinolene | |
2 | 0.2-0.5 | alpha- | thujene |
1 | 0.0-0.5 | tricyclene | |
M. de los Angelos Cordoba Rodriguez, Contribucion al estudio del Aceite Esencial de Salvia Espanola (salvia lavandulaefolia Vahl.). PhD thesis, Univ. Complutense, Madrid, Spain (1983). P&F 23, No. 1, 39, (1998) | |||
salvia officinalis oil reunion | |||
This same year, Vera et al. (1999) analyzed an oil of S. officinalis produced from plants grown in Reunion. In this oil they characterized the following components: | |||
# | % | Leftshift | Components |
37 | 0.10 | aromadendrene | |
31 | 0.40 | bornyl acetate | |
43 | trace | gamma- | cadinene |
49 | trace | alpha- | cadinol |
5 | 2.80 | camphene | |
20 | 15.90 | camphor | |
8 | trace | delta-3- | carene |
32 | trace | carvacrol | |
26 | 0.20 | trans- | carveol |
27 | trace | cis- | carveol |
36 | 0.60 | beta- | caryophyllene |
45 | 0.20 | caryophyllene oxide | |
11 | 5.80 | 1,8- | cineole |
10 | 0.40 | para- | cymene |
50 | trace | alpha- | eudesmol |
48 | trace | beta- | eudesmol |
34 | trace | eugenol | |
29 | trace | geraniol | |
35 | 0.40 | geranyl acetate | |
39 | trace | germacrene D | |
38 | 1.60 | alpha- | humulene |
47 | 0.30 | humulene oxide | |
12 | 1.30 | limonene | |
18 | trace | linalool | |
30 | trace | linalyl acetate | |
51 | 0.50 | manool | |
40 | 0.10 | gamma- | muurolene |
24 | trace | myrtenol | |
28 | trace | neral | |
13 | trace | (E)-beta- | ocimene |
7 | 0.80 | alpha- | phellandrene |
3 | 5.40 | alpha- | pinene |
4 | 1.90 | beta- | pinene |
22 | trace | (E)- | piperitol |
25 | 0.20 | (Z)- | piperitol |
6 | 0.20 | sabinene | |
41 | trace | beta- | selinene |
44 | trace | spathulenol | |
21 | 0.90 | terpinen-4-ol | |
9 | trace | alpha- | terpinene |
14 | 0.30 | gamma- | terpinene |
23 | 0.60 | alpha- | terpineol |
15 | 0.20 | terpinolene | |
33 | trace | alpha- | terpinyl acetate |
2 | 0.20 | alpha- | thujene |
19 | trace | iso | thujol |
16 | 45.50 | alpha- | thujone |
17 | 8.40 | beta- | thujone |
1 | 0.10 | tricyclene | |
42 | trace | viridiflorene | |
46 | 1.70 | viridiflorol | |
R. R. Vera, J. Chane-Ming and D. Fraisse, Chemical composition of the essential oil of sage (Salvia officinalis L.) from Reunion Island. J. Essent. Oil Res., 11, 399-402 (1999). P&F 26, No. 3, 66, (2001) | |||
salvia officinalis oil spain | |||
# | % | Leftshift | Components |
24 | 2.10 | borneol | |
25 | 1.40 | bornyl acetate | |
6 | 6.20 | camphene | |
21 | 16.80 | camphor | |
31 | 3.30 | beta- | caryophyllene |
14 | 11.10 | 1,8- | cineole |
11 | 2.00 | para- | cymene |
30 | 5.00 | alpha- | humulene |
12 | 3.10 | limonene | |
22 | 0.50 | linalool | |
23 | 0.50 | linalyl acetate | |
9 | 1.10 | myrcene | |
15 | 0.20 | (Z)-beta- | ocimene |
10 | 0.10 | alpha- | phellandrene |
13 | 0.90 | beta- | phellandrene |
5 | 4.80 | alpha- | pinene |
8 | 2.30 | beta- | pinene |
7 | 0.20 | sabinene | |
18 | 0.10 | (E)- | sabinene hydrate |
29 | 0.30 | sabinyl acetate | |
2 | 0.10 | (E)- | salvene |
1 | 0.40 | (Z)- | salvene |
26 | 0.30 | terpinen-4-ol | |
16 | 0.30 | gamma- | terpinene |
27 | 0.50 | alpha- | terpineol |
17 | 0.20 | terpinolene | |
28 | 0.20 | alpha- | terpinyl acetate |
4 | 0.30 | alpha- | thujene |
19 | 26.50 | alpha- | thujone |
20 | 4.30 | beta- | thujone |
3 | 0.20 | tricyclene | |
M, de los Angelos Cordoba Rodriguez, Contribucion al estudio del aceite esencial de Salvia Espanola (Salvia lavandulaefolia Vahl.). Ph.D. thesis, Univ. Complutense, Madrid (1983). P&F 23, No. 2, 47, (1998) | |||
salvia officinalis seed oil tunisia | |||
GC Analyses of Salvia Seeds as Valuable Essential Oil Source Mouna Ben Taârit, Kamel Msaada, Karim Hosni, and Brahim Marzouk1 1Laboratoire des Substances Bioactives, Centre de Biotechnologie, Technopôle de Borj-Cédria, BP 901, 2050 Hammam-Lif, Tunisia 2Laboratoire des Substances Naturelles, Institut National de Recherche et d’Analyse Physico-Chimique (INRAP), Sidi Thabet, 2020 Ariana, Tunisia | |||
# | % | Leftshift | Components |
147 | 0.47 | alpha- | amorphene |
146 | 1.43 | allo- | aromadendrene |
162 | 0.18 | aromadendrene | |
175 | 1.29 | bicyclogermacrene | |
174 | 0.72 | beta- | bisabolene |
116 | 3.54 | borneol | |
159 | 0.16 | bornyl acetate | |
151 | 0.08 | gamma- | cadinene |
151 | 0.53 | delta- | cadinene |
218 | 0.15 | T- | cadinol |
0.41 | alpha- | cadinol | |
153 | 13.08 | camphor | |
115 | 0.03 | delta-3- | carene |
129 | 0.83 | carvacrol | |
161 | 0.19 | beta- | caryophyllene |
157 | 0.16 | caryophyllene oxide | |
103 | 6.66 | 1,8- | cineole |
149 | 0.01 | alpha- | copaene |
149 | 0.34 | epi- | cubebol |
118 | 0.17 | para- | cymen-8-ol |
102 | 1.52 | para- | cymene |
138 | 0.06 | beta- | damascenone |
138 | 0.16 | beta- | elemene |
133 | 0.07 | delta- | elemene |
0.47 | beta- | eudesmol | |
135 | 0.83 | eugenol | |
150 | 0.24 | (E,E)-alpha- | farnesene |
114 | 1.01 | geigerene | |
185 | 0.33 | geraniol | |
185 | 0.08 | germacrene B | |
172 | 1.18 | germacrene D | |
878 | 1.29 | hexanol | |
145 | 3.71 | alpha- | humulene |
160 | 0.25 | humulene oxide II | |
155 | 0.68 | linalool | |
107 | 0.13 | (Z)- | linalool oxide |
123 | 0.08 | linalyl acetate | |
2.22 | 13-epi- | manool | |
140 | 0.18 | methyl eugenol | |
119 | 0.28 | myrtanol | |
119 | 0.55 | myrtenal | |
156 | 1.41 | (E)- | nerolidol |
138 | 0.14 | (Z)-allo- | ocimene |
939 | 1.26 | alpha- | pinene |
106 | 0.19 | (Z)- | sabinene hydrate |
121 | 0.18 | (Z)- | sabinol |
157 | 0.08 | spathulenol | |
117 | 0.09 | terpinen-4-ol | |
170 | 0.91 | alpha- | terpineol |
118 | 2.42 | delta- | terpineol |
170 | 1.81 | alpha- | terpinyl acetate |
103 | 3.08 | alpha- | thujene |
110 | 14.77 | alpha- | thujone |
111 | 4.30 | beta- | thujone |
129 | 0.37 | thymol | |
101 | 0.23 | tricyclene | |
110 | 0.48 | undecane | |
159 | 2.66 | viridiflorol | |
149 | 0.04 | alpha- | ylangene |
Overall, it emerges that tricyclene and camphor were biochemical markers of the essential oil of S. verbenaca seeds. Being rich in camphor, seeds could be used as antimicrobial agent. Another point that should be highlighted is that S. officinalis seeds had the same a-thujone chemotype as leaves, whereas these two organs showed some quantitative differences leading to the safe use of seeds essential oil in food industry. From a qualitative standpoint, seeds of S. sclarea seemed to have the same enzymatic trend as flowers characterized by the prevalence of linalool. It is noteworthy to mention that linalool-producing seeds as S. sclarea were suitable for flavouring purposes and constitute potential anti-inflammatory agents. | |||
salvia sclarea oil | |||
CHEMICAL COMPOSITION AND ANTIFUNGAL ACTIVITY OF SALVIA SCLAREA (LAMIACEAE) ESSENTIAL OIL ANA DŽAMIÆ, MARINA SOKOVIÆ, M. RISTIÆ, SLAVICA GRUJIÆ-JOVANOVIÆ, JELENA VUKOJEVIÆ, and P. D. MARIN | |||
# | % | Leftshift | Components |
150 | 0.17 | bicyclogermacrene | |
116 | 0.64 | borneol | |
128 | 0.83 | bornyl acetate | |
138 | 0.94 | beta- | bourbonene |
152 | 0.13 | delta- | cadinene |
114 | 0.30 | camphor | |
141 | 1.83 | beta- | caryophyllene |
158 | 0.27 | caryophyllene oxide | |
103 | 2.29 | 1,8- | cineole |
137 | 0.55 | alpha- | copaene |
139 | 0.67 | beta- | cubebene |
102 | 0.18 | para- | cymene |
139 | 0.35 | beta- | elemene |
148 | 0.84 | germacrene D | |
145 | 0.08 | alpha- | humulene |
102 | 1.55 | limonene | |
109 | 18.18 | linalool | |
125 | 52.83 | linalyl acetate | |
121 | 0.14 | linalyl formate | |
991 | 1.01 | myrcene | |
123 | 0.26 | nerol | |
136 | 0.52 | neryl acetate | |
103 | 0.32 | (Z)-beta- | ocimene |
105 | 0.66 | (E)-beta- | ocimene |
939 | 4.57 | alpha- | pinene |
979 | 0.90 | beta- | pinene |
222 | 0.06 | sclareol | |
222 | 0.08 | sclareol oxide | |
157 | 0.13 | spathulenol | |
118 | 5.00 | alpha- | terpineol |
116 | 1.19 | beta- | terpineol |
119 | 0.90 | gamma- | terpineol |
108 | 0.41 | iso | terpinolene |
135 | 0.18 | alpha- | terpinyl acetate |
salvia sclarea oil france | |||
# | % | Leftshift | Components |
11 | trace | (E)- | anhydrolinalool oxide furanoid |
9 | trace | (Z)- | anhydrolinalool oxide furanoid |
27 | trace | bornyl acetate | |
24 | trace | beta- | bourbonene |
2 | trace | camphene | |
29 | 1.40-1.60 | beta- | caryophyllene |
37 | 0.30-0.60 | caryophyllene oxide | |
23 | 0.10-0.20 | alpha- | copaene |
22 | trace | alpha- | cubebene |
13 | trace | para- | cymene |
36 | 0.10-0.30 | geraniol | |
34 | 0.30-0.50 | geranyl acetate | |
32 | 1.60-2.00 | germacrene D | |
16 | trace | hexanal | |
8 | trace | (E)-2- | hexenal |
18 | trace | (E)-2- | hexen-1-ol |
17 | trace-0.10 | (Z)-3- | hexen-1-ol |
7 | 0.10-0.20 | limonene | |
25 | 9.00-16.00 | linalool | |
21 | trace | (E)- | linalool oxide furanoid |
19 | trace | (Z)- | linalool oxide furanoid |
26 | 49.00-73.60 | linalyl acetate | |
39 | trace | mint sulfide | |
5 | 0.10-0.20 | myrcene | |
35 | trace-0.10 | nerol | |
33 | 0.20-0.30 | neryl acetate | |
12 | 0.10-0.20 | (E)- | ocimene |
15 | trace | (Z,Z)-allo- | ocimene |
10 | trace | (Z)- | ocimene |
20 | trace | 1- | octen-3-ol |
1 | 0.10-0.20 | alpha- | pinene |
3 | 0.10-0.30 | beta- | pinene |
4 | trace | sabinene | |
40 | 0.10-0.20 | sclareol | |
38 | trace | spathulenol | |
28 | trace-0.10 | terpinen-4-ol | |
6 | trace | alpha- | terpinene |
30 | 0.20-0.60 | alpha- | terpineol |
14 | trace | terpinolene | |
31 | trace | alpha- | terpinyl acetate |
B. M. Lawrence, unpublished information. P&F 15, No. 4, 63, (1990) | |||
salvia sclarea oil greece | |||
# | % | Leftshift | Components |
32 | 0.10 | aromadendrene | |
57 | trace | benzyl tiglate | |
29 | trace | bornyl acetate | |
25 | 0.15 | beta- | bourbonene |
43 | trace | delta- | cadinene |
2 | trace | camphene | |
62 | trace | carvacrol | |
30 | 1.20 | beta- | caryophyllene |
50 | 1.50 | caryophyllene oxide | |
6 | trace | 1,8- | cineole |
23 | 0.50 | alpha- | copaene |
26 | 0.10 | beta- | cubebene |
48 | 0.15 | para- | cymen-8-ol |
46 | 0.10 | beta- | damascenone |
69 | 1.25 | deutenyl curcumene furanoid | |
45 | trace | dihydro-para-cymen-8-ol | |
58 | 0.10 | dodecahydro-3a-,6,6,9a-tetramethyl(2,1beta)furan | |
55 | 0.15 | elemol | |
61 | 0.15 | 8,13- | epoxy-15,16-dinorlabd-12-ene |
56 | trace | eudesmol | |
54 | trace | 10-epi-gamma- | eudesmol |
63 | 0.20 | alpha- | eudesmol |
64 | 1.50 | beta- | eudesmol |
24 | trace | formic acid + benzaldehyde | |
41 | 2.15 | geranial | |
49 | 6.50 | geraniol | |
44 | 7.50 | geranyl acetate | |
40 | 1.25 | geranyl formate | |
14 | 0.10 | hexanol | |
17 | 0.10 | 2- | hexanol |
15 | 0.15 | 3- | hexanol |
7 | 0.15 | 2- | hexenal |
12 | trace | hexen-1-yl acetate furanoid | |
35 | 0.10 | alpha- | humulene |
51 | trace | hydroxycitronellal | |
67 | 0.10 | endo-8- | hydroxycycloisolongifolene furanoid |
52 | 1.20 | hydroxylinalool furanoid | |
37 | 0.10 | lavandulol + beta-farnesene | |
5 | 0.15 | limonene | |
27 | 17.20 | linalool | |
22 | 1.10 | (E)- | linalool oxide furanoid |
19 | 0.15 | (Z)- | linalool oxide furanoid |
28 | 14.30 | linalyl acetate | |
31 | trace | linalyl formate | |
71 | 2.50 | manool | |
68 | 0.10 | manoyl oxide | |
70 | 0.15 | 13-epi- | manoyl oxide |
34 | trace | methyl chavicol | |
9 | trace | 2- | methyl-2-vinyl-4-isopropenyl tetrahydrofuran |
13 | trace | 6- | methyl-5-hepten-2-one |
38 | trace | muurolene | |
66 | trace | muurolol | |
4 | 0.25 | myrcene | |
36 | 1.50 | neral | |
47 | 5.50 | nerol | |
21 | trace | nerol oxide | |
53 | trace | nerolidol | |
42 | 5.20 | neryl acetate | |
16 | trace | nonanal | |
10 | 0.15 | (E)-beta- | ocimene |
8 | 0.10 | (Z)-beta- | ocimene |
18 | 0.10 | perillene | |
1 | 0.10 | alpha- | pinene |
3 | 0.10 | beta- | pinene |
72 | 5.20 | sclareol | |
59 | 0.20 | spathulenol | |
33 | 0.20 | terpinen-4-ol | |
39 | 15.10 | alpha- | terpineol |
11 | trace | terpinolene | |
65 | trace | thymol | |
60 | 0.10 | valerianol | |
20 | 0.10 | alpha- | ylangene + 1-octen-3-ol |
Ch. Souleles and N. Argyriadou, Constituents of the essential oil of Salvia sclarea growing wild in Greece. Internat. J. Pharmacog., 35, 218-220 (1997). P&F 25, No. 4, 55, (2000) | |||
salvia sclarea oil sardinia | |||
# | % | Leftshift | Components |
12 | 0.50 | camphor | |
14 | 2.90 | beta- | caryophyllene |
7 | 1.50 | 1,8- | cineole |
9 | 0.10 | para- | cymene |
22 | 0.60 | geraniol | |
20 | 1.30 | geranyl acetate | |
23 | 1.60 | germacrene D | |
6 | 1.00 | limonene | |
16 | 2.60 | linalool | |
11 | 0.40 | (E)- | linalool oxide furanoid |
10 | 0.50 | (Z)- | linalool oxide furanoid |
13 | 12.70 | linalyl acetate | |
18 | 0.10 | methyl chavicol | |
5 | 0.10 | myrcene | |
21 | 0.20 | nerol | |
19 | 2.10 | neryl acetate | |
4 | 0.60 | alpha- | phellandrene |
1 | 0.10 | alpha- | pinene |
2 | 0.40 | beta- | pinene |
3 | 0.20 | sabinene | |
8 | 0.90 | gamma- | terpinene |
17 | 47.40 | alpha- | terpineol |
15 | 22.10 | alpha- | terpinyl acetate |
A. T. Peana, M. D. L. Moretti and C. Juliano, Chemical composition and antimicrobiol action of the essential oils of Salvia desoleana and S. scalrea. Planta Med., 65, 752-753 (1999). P&F 25, No. 4, 55, (2000) | |||
salvia sclarea oil spain | |||
# | % | Leftshift | Components |
6 | trace | amyl butyrate | |
39 | 0.52 | bicyclogermacrene | |
15 | 0.12 | borneol | |
24 | 1.11 | bornyl acetate | |
30 | 0.27 | beta- | bourbonene |
35 | 0.14 | alpha- | cadinene |
42 | 0.22 | gamma- | cadinene |
51 | 1.10 | alpha- | cadinol |
45 | trace | beta- | calacorene |
44 | 0.77 | (Z)- | calamenene + germacrene B |
2 | trace | camphene | |
33 | 4.80 | beta- | caryophyllene |
47 | 0.99 | caryophyllene oxide | |
32 | 0.14 | alpha- | cedrene |
7 | 0.83 | 1,8- | cineole + limonene |
26 | 0.36 | alpha- | cubebene |
48 | 0.16 | cubenol | |
28 | 0.27 | beta- | damascenone |
18 | 0.11 | dihydrocarveol | |
31 | 0.43 | beta- | elemene |
25 | trace | delta- | elemene |
50 | 0.73 | beta- | eudesmol |
41 | 0.27 | (E,E)-alpha- | farnesene |
36 | 0.14 | (Z)-beta- | farnesene |
22 | 0.93 | geranial | |
20 | 1.12 | geraniol | |
29 | 1.62 | geranyl acetate | |
23 | 0.25 | geranyl formate | |
37 | 7.57 | germacrene D | |
34 | 0.14 | beta- | gurjunene |
14 | 32.97 | linalool | |
12 | trace | (E)- | linalool oxide furanoid |
11 | trace | (Z)- | linalool oxide furanoid |
21 | 16.85 | linalyl acetate | |
54 | 0.55 | manool | |
52 | trace | manoyl oxide | |
53 | 1.14 | 13-epi- | manoyl oxide |
40 | 0.40 | alpha- | muurolene |
49 | 0.42 | alpha- | muurolol |
5 | 1.61 | myrcene | |
19 | 0.72 | nerol | |
43 | trace | (Z)- | nerolidol |
27 | 1.17 | neryl acetate | |
9 | 0.94 | (E)-beta- | ocimene |
8 | 0.58 | (Z)-beta- | ocimene |
1 | 0.30 | alpha- | pinene |
4 | 0.41 | beta- | pinene |
3 | trace | sabinene | |
55 | 0.45 | sclareol | |
46 | 0.12 | spathulenol | |
16 | trace | terpinen-4-ol | |
10 | trace | gamma- | terpinene |
17 | 5.63 | alpha- | terpineol |
13 | 0.37 | terpinolene | |
38 | 2.84 | valencene | |
M. E. Torres, A. Velasco-Negueruela, M. J. Perez-Alonso and M. G. Pinilla, Volatile constituents of two Salvia species grown wild in Spain. J. Essent. Oil Res., 9, 27-33 (1997). P&F 25, No. 4, 55, (2000) | |||
salvia sclarea seed oil tunisia | |||
GC Analyses of Salvia Seeds as Valuable Essential Oil Source Mouna Ben Taârit, Kamel Msaada, Karim Hosni, and Brahim Marzouk1 1Laboratoire des Substances Bioactives, Centre de Biotechnologie, Technopôle de Borj-Cédria, BP 901, 2050 Hammam-Lif, Tunisia 2Laboratoire des Substances Naturelles, Institut National de Recherche et d’Analyse Physico-Chimique (INRAP), Sidi Thabet, 2020 Ariana, Tunisia | |||
# | % | Leftshift | Components |
146 | 0.06 | allo- | aromadendrene |
149 | 4.29 | bicyclogermacrene | |
153 | 0.35 | beta- | bourbonene |
177 | 0.24 | delta- | cadinene |
164 | 0.52 | T- | cadinol |
164 | 0.88 | alpha- | cadinol |
154 | 0.10 | alpha- | calacorene |
129 | 1.93 | carvacrol | |
141 | 0.24 | beta- | caryophyllene |
200 | 3.18 | caryophyllene oxide | |
121 | 0.12 | 1,8- | cineole |
137 | 4.08 | alpha- | copaene |
134 | 2.86 | alpha- | cubebene |
154 | 0.72 | beta- | cubebene |
190 | 0.24 | epi- | cubenol |
102 | 0.12 | para- | cymene |
147 | 0.85 | delta- | elemene |
1.72 | beta- | eudesmol | |
125 | 2.79 | geraniol | |
138 | 1.94 | geranyl acetate | |
155 | 1.29 | germacrene B | |
147 | 5.88 | germacrene D | |
852 | 0.03 | (E)-2- | hexenal |
145 | 0.08 | alpha- | humulene |
159 | 1.55 | humulene oxide I | |
103 | 0.17 | limonene | |
109 | 24.25 | linalool | |
123 | 6.90 | linalyl acetate | |
0.59 | 13-epi- | manool | |
122 | 0.98 | nerol | |
173 | 0.36 | neryl acetate | |
138 | 1.46 | (Z)-allo- | ocimene |
103 | 0.03 | beta- | phellandrene |
939 | 0.27 | alpha- | pinene |
214 | 0.03 | spathulenol | |
161 | 0.37 | terpinen-4-ol | |
118 | 0.20 | alpha- | terpineol |
118 | 0.20 | delta- | terpineol |
135 | 0.29 | alpha- | terpinyl acetate |
930 | 7.48 | alpha- | thujene |
219 | 0.10 | thymol | |
927 | 0.08 | tricyclene | |
110 | 0.75 | undecane | |
137 | 0.24 | alpha- | ylangene |
Overall, it emerges that tricyclene and camphor were biochemical markers of the essential oil of S. verbenaca seeds. Being rich in camphor, seeds could be used as antimicrobial agent. Another point that should be highlighted is that S. officinalis seeds had the same a-thujone chemotype as leaves, whereas these two organs showed some quantitative differences leading to the safe use of seeds essential oil in food industry. From a qualitative standpoint, seeds of S. sclarea seemed to have the same enzymatic trend as flowers characterized by the prevalence of linalool. It is noteworthy to mention that linalool-producing seeds as S. sclarea were suitable for flavouring purposes and constitute potential anti-inflammatory agents. | |||
salvia verbenaca seed oil tunisia | |||
GC Analyses of Salvia Seeds as Valuable Essential Oil Source Mouna Ben Taârit, Kamel Msaada, Karim Hosni, and Brahim Marzouk1 1Laboratoire des Substances Bioactives, Centre de Biotechnologie, Technopôle de Borj-Cédria, BP 901, 2050 Hammam-Lif, Tunisia 2Laboratoire des Substances Naturelles, Institut National de Recherche et d’Analyse Physico-Chimique (INRAP), Sidi Thabet, 2020 Ariana, Tunisia | |||
# | % | Leftshift | Components |
166 | 1.29 | allo- | aromadendrene |
143 | 0.66 | aromadendrene | |
150 | 1.10 | beta- | bisabolene |
128 | 0.79 | bornyl acetate | |
138 | 1.73 | beta- | bourbonene |
114 | 38.94 | camphor | |
101 | 0.50 | delta-3- | carene |
141 | 0.27 | beta- | caryophyllene |
157 | 7.28 | caryophyllene oxide | |
141 | 1.50 | beta- | cubebene |
128 | 0.37 | para- | cymene |
133 | 3.97 | delta- | elemene |
164 | 3.76 | beta- | eudesmol |
144 | 1.76 | (Z)-beta- | farnesene |
108 | 0.26 | alpha- | fenchone |
800 | 0.42 | hexanal | |
168 | 0.67 | alpha- | humulene |
155 | 0.84 | linalool | |
145 | 1.05 | (E)- | linalool oxide |
156 | 2.53 | linalyl acetate | |
5.61 | 13-epi- | manool | |
147 | 0.05 | gamma- | muurolene |
136 | 2.40 | neryl acetate | |
111 | 1.55 | (Z)-allo- | ocimene |
103 | 0.44 | alpha- | pinene |
117 | 0.88 | terpinen-4-ol | |
118 | 2.03 | alpha- | terpineol |
168 | 0.49 | delta- | terpineol |
135 | 4.77 | alpha- | terpinyl acetate |
142 | 0.52 | alpha- | thujone |
927 | 0.96 | tricyclene | |
110 | 2.65 | undecane | |
it emerges that tricyclene and camphor were biochemical markers of the essential oil of S. verbenaca seedsOverall,. Being rich in camphor, seeds could be used as antimicrobial agent. Another point that should be highlighted is that S. officinalis seeds had the same a-thujone chemotype as leaves, whereas these two organs showed some quantitative differences leading to the safe use of seeds essential oil in food industry. From a qualitative standpoint, seeds of S. sclarea seemed to have the same enzymatic trend as flowers characterized by the prevalence of linalool. It is noteworthy to mention that linalool-producing seeds as S. sclarea were suitable for flavouring purposes and constitute potential anti-inflammatory agents. | |||
skimmia laureola oil | |||
# | % | Leftshift | Components |
20 | 0.6 | elemol | |
15 | 0.5 | alpha- | farnesene |
22 | 0.7 | (E,E)- | farnesol |
21 | 1.5 | (E,E)- | farnesyl acetate |
8 | 5.0 | geijerene | |
11 | 12.3 | pre | geijerene |
18 | 1.9 | geraniol | |
16 | 2.5 | geranyl acetate | |
3 | 0.4 | limonene | |
9 | 7.8 | linalool | |
10 | 55.6 | linalyl acetate | |
4 | 0.4 | myrcene | |
17 | 0.6 | nerol | |
19 | 0.4 | nerolidol | |
14 | 1.1 | neryl acetate | |
7 | 0.7 | (E)-beta- | ocimene |
6 | 0.5 | (Z)-beta- | ocimene |
5 | 1.6 | beta- | phellandrene |
1 | 0.2 | alpha- | pinene |
2 | 0.1 | sabinene | |
13 | 1.8 | alpha- | terpineol |
12 | 0.9 | alpha- | terpinyl acetate |
C. S. Mathela, A. B. Melkani and A. K. Pant, Reinvestigation of Skimmia laureola essential oil. Indian Perfum., 36(3), 217-222 (1992). P&F 19, No. 3, 59, (1994) | |||
tagetes minuta flower oil CO2 extract | |||
# | % | Leftshift | Components |
54 | 3.56 | alchenenotriol | |
30 | 9.98 | (E)- | anethole |
27 | 2.10 | para- | anisaldehyde |
41 | 0.33 | aromadendrene | |
47 | 0.08 | beta- | bisabolene |
48 | 0.12 | gamma- | cadinene |
14 | 0.11 | camphor | |
24 | 0.23 | cis- | carveol |
40 | 3.44 | beta- | caryophyllene |
23 | 0.61 | citronellol | |
2 | 1.12 | para- | cymene |
31 | 1.51 | dehydroelshotzia ketone | |
20 | 0.12 | (Z)- | dihydrocarvone |
6 | 5.19 | dihydrotagetone | |
9 | 0.22 | alpha-para- | dimethyl styrene |
33 | 3.00 | delta- | elemene |
50 | 0.11 | gamma- | elemene (furanoid) |
21 | 0.15 | elsholtzia ketone | |
49 | 0.15 | eugenyl acetate | |
37 | 0.28 | geranyl acetate | |
53 | 0.28 | guaiol | |
42 | 2.14 | alpha- | humulene |
51 | 0.29 | ledol | |
3 | 15.14 | limonene | |
11 | 1.03 | linalool | |
8 | 0.43 | (Z)- | linalool oxide furanoid |
28 | 0.47 | linalyl acetate | |
10 | 0.12 | (E)-para- | menth-2-en-1-ol |
29 | 0.39 | methyl citronellate | |
39 | 0.24 | methyl eugenol | |
43 | 0.22 | 6- | methyl-gamma-ionone |
45 | 0.29 | alpha- | muurolene |
1 | 0.24 | myrcene | |
34 | 0.19 | neryl acetate | |
5 | 0.30 | (E)-beta- | ocimene |
4 | 19.33 | (Z)-beta- | ocimene |
36 | 0.10 | beta- | patchoulene |
46 | 0.13 | pentadecane | |
17 | 0.30 | (Z)- | pinanone |
13 | 3.68 | (Z)- | sabinene hydrate |
35 | 0.32 | (E)-iso | safrole |
52 | 2.42 | spathulenol | |
26 | 0.65 | (E)- | tagetenone |
25 | 13.26 | (Z)- | tagetenone |
15 | 2.81 | (E)- | tagetone |
16 | 0.34 | (Z)- | tagetone |
18 | 0.46 | terpinen-4-ol | |
7 | 0.26 | gamma- | terpinene |
19 | 0.50 | alpha- | terpineol |
38 | 0.16 | tetradecane | |
12 | 0.24 | alpha- | thujone |
32 | 0.12 | tridecane | |
44 | 0.57 | valencene | |
22 | 0.05 | verbenone | |
J. Daghero, M. Mattea, E. Reverchon, G. Della Porta and F. Senatore, Isolation of Tagetes minuta L. oil using supercritical CO2 extraction. In: Proceedings WOCMAP-2. Edits., V. Martino, A. Bandoni, G. Bleak and N. Capelle, Acta Hort., 503, 21-25 (1999). P&F 25, No. 6, 32, (2000) | |||
tangerine oil america | |||
# | % | Leftshift | Components |
2 | trace | camphene | |
21 | 0.02 | beta- | caryophyllene |
14 | 0.02 | citronellal + octyl acetate | |
28 | 0.02 | citronellol | |
11 | 0.48 | para- | cymene |
15 | 0.12 | decanal | |
25 | 0.04 | dodecanal | |
27 | 0.03 | geranial | |
29 | trace | geranyl acetate | |
8 | 90.75 | limonene | |
16 | 1.17 | linalool | |
18 | trace | linalyl acetate | |
5 | 2.28 | myrcene | |
23 | trace | neral | |
26 | trace | neryl acetate | |
13 | 0.06 | nonanal | |
22 | trace | nonanol | |
17 | trace | octanol | |
6 | trace | alpha- | phellandrene |
9 | trace | beta- | phellandrene |
1 | 1.41 | alpha- | pinene |
3 | 0.58 | beta- | pinene |
4 | 0.23 | sabinene | |
20 | 0.04 | terpinen-4-ol | |
7 | trace | alpha- | terpinene |
10 | 1.96 | gamma- | terpinene |
24 | 0.07 | alpha- | terpineol |
12 | 0.24 | terpinolene + octanal | |
19 | 0.03 | undecanal | |
M. Koketsu, M. T. Magaihaes, V. C. Wilberg and M. G. R. Donaliso, Oleos Essenciais de frutos citricos cultivados no Brazil. Bol. Pesqui EMBRAPA Cent. Technol Agric. Aliment., (7), 21 pp (1983). P&F 17, No. 4, 39, (1992) | |||
thymus serpyllum oil canada | |||
# | % | Leftshift | Components |
14 | 3.70 | beta- | bisabolene |
15 | 4.80 | delta- | cadinene |
17 | 5.90 | alpha- | cadinol |
16 | 1.00 | T- | cadinol |
1 | 0.30 | camphene | |
10 | 7.00 | beta- | caryophyllene |
4 | 0.70 | 1,8- | cineole |
6 | 0.70 | para- | cymene |
13 | 3.70 | geranyl acetate | |
3 | 1.80 | limonene | |
8 | 25.20 | linalool | |
9 | 8.30 | linalyl acetate | |
2 | 0.50 | myrcene | |
7 | 2.10 | 1- | octen-3-ol |
5 | 0.50 | gamma- | terpinene |
11 | 2.90 | alpha- | terpineol |
12 | 9.60 | alpha- | terpinyl acetate |
18 | 3.50 | thymol | |
B. M, Lawrence, unpublished information. P&F 23, No. 3, 63, (1998) | |||
thymus vulgaris absolute | |||
# | % | Leftshift | Components |
21 | 6.96 | carvacrol | |
17 | trace | carvone | |
23 | trace | beta- | caryophyllene |
12 | trace | 1,8- | cineole |
22 | 2.10 | alpha- | copaene |
10 | 0.95 | para- | cymene |
4 | 0.89 | 4,7- | dimethyl-4-octanol |
18 | 2.61 | geraniol | |
11 | trace | limonene + alpha-phellandrene | |
16 | 5.76 | linalool | |
19 | 23.17 | linalyl acetate | |
5 | 1.44 | 6- | methyl-5-hepten-2-one |
6 | trace | myrcene | |
14 | trace | (E)-beta- | ocimene |
13 | trace | (Z)-beta- | ocimene |
7 | 0.92 | 3- | octanol |
8 | trace | alpha- | phellandrene |
2 | trace | alpha- | pinene |
3 | trace | beta- | pinene |
9 | trace | alpha- | terpinene |
15 | 2.45 | gamma- | terpinene |
1 | trace | alpha- | thujene |
20 | 43.10 | thymol | |
F. I. Jean, G. J. Collin and D. Lord, Essential oils and microwave extracts of cultivated plants. Perfum. Flavor, 17(3), 35-41 (1992). P&F 23, No. 1, 39, (1998) | |||
thymus zygis gracillis herb oil spain | |||
Variations in the chemical composition of the essential oils of T. sygis L. ssp. sylvestris (Hoffm. et Link) Brot. ex. Coutinho and T. sygis L. ssp. gracilis (boiss.) R. Morales from southeastern Spain were determined by Saez (1995). In this study, oils from four collections of each subspecies were examined by GC and GC/MS. A summary of the data obtained from these analyses (Table IV) shows that different chemotypes of each of the subspecies can be found. Of these, only the thymol chemotypes of T. zygis ssp. gracilis is typical of the red thyme oil in commerce. Only the chemotype thymol will be shown here: | |||
# | % | Leftshift | Components |
19 | 1.63 | borneol | |
14 | 1.17 | iso | bornyl acetate |
29 | 0.05 | alpha- | cadinol |
2 | 0.30 | camphene | |
11 | 0.56 | camphor | |
28 | 3.34 | carvacrol | |
16 | 0.12 | beta- | caryophyllene |
23 | 0.07 | caryophyllene oxide | |
7 | 1.02 | 1,8- | cineole |
21 | 0.08 | citronellol | |
9 | 2.95 | para- | cymene |
25 | 0.08 | elemol | |
22 | 0.14 | geraniol | |
20 | 0.09 | geranyl acetate | |
6 | 0.09 | limonene | |
12 | 7.89 | linalool | |
13 | 0.06 | linalyl acetate | |
4 | 0.06 | myrcene | |
1 | 0.04 | alpha- | pinene |
3 | 0.04 | beta- | pinene |
10 | 0.36 | (E)- | sabinene hydrate |
26 | 0.28 | spathulenol | |
15 | 1.60 | terpinen-4-ol | |
5 | 0.02 | alpha- | terpinene |
8 | 0.36 | gamma- | terpinene |
18 | 0.08 | alpha- | terpineol |
17 | 0.11 | delta- | terpineol |
27 | 71.84 | thymol | |
24 | 0.08 | viridiflorol | |
F. Saez, Essential oil variability of Thymus zygis growing wild in southeastern Spain. Phytochemistry, 40, 819-825 (1995). P&F 23, No. 1, 39, (1998) | |||
thymus zygis spp. sylvestris herb oil spain | |||
Variations in the chemical composition of the essential oils of T. sygis L. ssp. sylvestris (Hoffm. et Link) Brot. ex. Coutinho and T. sygis L. ssp. gracilis (boiss.) R. Morales from southeastern Spain were determined by Saez (1995). In this study, oils from four collections of each subspecies were examined by GC and GC/MS. A summary of the data obtained from these analyses (Table IV) shows that different chemotypes of each of the subspecies can be found. Of these, only the thymol chemotypes of T. zygis ssp. gracilis is typical of the red thyme oil in commerce. Only the chemotype thymol will be shown here: | |||
# | % | Leftshift | Components |
23 | 4.06 | borneol | |
18 | 1.04 | iso | bornyl acetate |
30 | 0.04 | alpha- | cadinol |
3 | 1.76 | camphene | |
15 | 0.10 | camphor | |
29 | 1.66 | carvacrol | |
20 | 0.36 | beta- | caryophyllene |
27 | 0.63 | caryophyllene oxide | |
9 | 1.54 | 1,8- | cineole |
25 | 0.06 | citronellol | |
12 | 27.63 | para- | cymene |
26 | 0.39 | geraniol | |
24 | 0.24 | geranyl acetate | |
8 | 0.13 | limonene | |
16 | 5.10 | linalool | |
17 | 0.40 | linalyl acetate | |
6 | 0.09 | myrcene | |
10 | 1.14 | (Z)-beta- | ocimene |
2 | 2.28 | alpha- | pinene |
4 | 0.29 | beta- | pinene |
5 | 0.06 | sabinene | |
14 | 0.22 | (E)- | sabinene hydrate |
19 | 1.15 | terpinen-4-ol | |
7 | 1.91 | alpha- | terpinene |
11 | 10.95 | gamma- | terpinene |
22 | 0.04 | alpha- | terpineol |
21 | 0.03 | delta- | terpineol |
13 | 0.15 | terpinolene | |
1 | 0.08 | alpha- | thujene |
28 | 34.18 | thymol | |
F. Saez, Essential oil variability of Thymus zygis growing wild in southeastern Spain. Phytochemistry, 40, 819-825 (1995). P&F 23, No. 1, 39, (1998) | |||
zingiber officinale oil CO2 extract | |||
# | % | Leftshift | Components |
11 | 3.53 | beta- | bisabolene |
20 | 1.82 | bisabolyl acetate | |
3 | 0.60 | borneol | |
7 | 0.31 | beta- | caryophyllene |
1 | trace | 1,8- | cineole |
9 | 10.87 | ar- | curcumene |
18 | 1.31 | eudesmol | |
6 | 0.83 | eugenol | |
13 | 14.17 | beta- | farnesene |
16 | 0.88 | (E,E)- | farnesol |
15 | trace | (Z,Z)- | farnesol |
22 | 6.02 | gingerol | |
17 | 2.26 | gingerone | |
21 | 0.54 | lanceolyl acetate | |
2 | trace | linalool | |
5 | 0.80 | linalyl acetate | |
19 | 2.21 | nerolidyl acetate | |
8 | 0.64 | neryl acetate | |
12 | 6.81 | beta-sesqui | phellandrene |
14 | trace | beta- | selinene |
23 | 12.22 | 6- | shogaol |
4 | 2.51 | alpha- | terpineol |
10 | 24.70 | zingiberene | |
M. D’Alpaos, P. Traldi, G. Tassinato and P. Pallado, Extraction of essential oils and flavors with classic and supercritical techniques: a comparison. Rivista Ital. EPPOS (Numero Speciale – Agosto), 200-207 (1997). P&F 25, No. 2, 46, (2000) | |||
zingiber officinale root oil china | |||
# | % | Leftshift | Components |
29 | 3.00 | agarospirol | |
41 | 0.06 | gamma- | aminobutyric acid |
40 | 0.26 | aspartic acid | |
30 | 0.78 | alpha- | bisabolol |
27 | 0.20 | borneol | |
24 | 8.72 | beta- | cadinene |
42 | trace | delta-3- | carene |
43 | 0.05 | carveol | |
12 | 0.26 | carvone | |
25 | 13.12 | iso | caryophyllene |
20 | 0.19 | alpha- | cedrene |
6 | 1.10 | 1,8- | cineole |
16 | 0.52 | citronellyl acetate | |
19 | 0.43 | alpha- | copaene |
22 | 16.38 | ar- | curcumene |
31 | 0.84 | gamma- | curcumene |
10 | 0.40 | decanal | |
34 | 0.34 | dihydrogermacrene | |
15 | 0.16 | elemene | |
37 | 0.65 | eugenol | |
35 | 0.34 | farnesol | |
28 | 0.15 | geranial | |
17 | 0.60 | geraniol | |
18 | 1.10 | geranyl acetate | |
21 | 0.72 | germacrene D | |
26 | 0.97 | glycine | |
4 | 0.68 | limonene | |
5 | 0.14 | linalool | |
8 | 0.30 | linalyl acetate | |
44 | trace | linalyl propionate | |
13 | 0.71 | neral | |
9 | 0.30 | nonanal | |
7 | 0.50 | octanal | |
11 | 0.10 | 2- | octyl acetate |
3 | 0.92 | beta- | phellandrene |
39 | 0.12 | phenyl alanine | |
1 | 0.69 | alpha- | pinene |
2 | 1.05 | beta- | pinene |
38 | 0.10 | pipecolic acid | |
33 | 0.28 | tetradecanoic acid | |
36 | trace | turmerone | |
14 | 0.71 | 2- | undecanone |
32 | 1.55 | zingerenol | |
23 | 23.80 | zingiberene |