aloysia triphylla oil turkey | |||
# | % | Leftshift | Components |
---|---|---|---|
41 | 0.54 | aromadendrene | |
35 | 0.10 | epi- | bicyclosesquiphellandrene |
48 | 0.15 | beta- | bisabolene |
31 | 0.56 | beta- | bourbonene |
52 | 0.24 | delta- | cadinene |
53 | 0.26 | gamma- | cadinene |
66 | 0.97 | T- | cadinol |
29 | 0.05 | alpha- | campholenic aldehyde |
57 | 0.36 | trans- | carveol |
59 | 0.12 | cis- | carveol |
50 | 0.50 | carvone | |
37 | 3.49 | beta- | caryophyllene |
61 | 4.87 | caryophyllene oxide | |
34 | 0.43 | alpha- | cedrene |
11 | 10.07 | 1,8- | cineole |
26 | 0.17 | citronellal | |
28 | 0.58 | alpha- | copaene |
54 | 4.93 | ar- | curcumene |
16 | 0.11 | para- | cymene |
42 | 0.11 | (E)-beta- | farnesene |
49 | 11.93 | geranial | |
58 | 0.04 | geraniol | |
56 | 0.21 | geranyl propionate | |
46 | 1.50 | germacrene D | |
12 | 0.17 | (E)-2- | hexenal |
18 | 0.04 | (Z)-3- | hexen-1-ol |
43 | 0.51 | alpha- | humulene |
10 | 18.59 | limonene | |
24 | 0.22 | (E)-1,2- | limonene epoxide |
23 | 0.47 | (Z)-1,2- | limonene epoxide + 1-octen-3-ol |
32 | 0.38 | linalool | |
22 | 0.04 | (Z)- | linalool oxide furanoid |
40 | 0.41 | (Z)-para- | mentha-2,8-dien-1-ol |
1 | 0.35 | methyl 2-methyl butyrate | |
62 | 0.08 | methyl eugenol | |
4 | 0.10 | 2- | methyl-3-buten-2-ol |
19 | 0.01 | 6- | methyl-3-heptanol |
36 | 0.08 | 6- | methyl-3,5-heptadien-2-one |
17 | 1.40 | 6- | methyl-5-hepten-2-one |
67 | 0.19 | T- | muurolol |
7 | 0.40 | myrcene | |
44 | 5.99 | neral | |
55 | 0.12 | nerol | |
63 | 0.73 | nerolidol | |
51 | 0.72 | neryl acetate | |
15 | 1.41 | (E)-beta- | ocimene |
13 | 0.11 | (Z)-beta- | ocimene |
20 | 0.06 | perillene | |
30 | 0.40 | (E,E)- | photocitral |
27 | 0.22 | (Z,Z)- | photocitral |
21 | 0.14 | photocitral B | |
2 | 1.42 | alpha- | pinene |
5 | 0.19 | beta- | pinene |
60 | 0.07 | piperitenone | |
39 | 0.31 | rosefuran epoxide | |
6 | 2.83 | sabinene | |
25 | 0.80 | (E)- | sabinene hydrate |
33 | 0.20 | (Z)- | sabinene hydrate |
65 | 4.30 | spathulenol | |
38 | 0.31 | terpinen-4-ol | |
8 | 0.08 | alpha- | terpinene |
14 | 0.08 | gamma- | terpinene |
45 | 2.00 | alpha- | terpineol |
3 | 0.20 | alpha- | thujene |
9 | 0.05 | 1,3,3- | trimethyl bicyclo(2,2,2)oct-5-ene |
64 | 0.08 | viridiflorol | |
47 | 0.27 | zingiberene | |
T. Ozek, N. Kirimer, K. H. C. Baser and G. Tiimen, Composition of the essential oil of Aloysia triphylla (l’Herit,) Britton grown in Turkey. J. Essent. Oil Res., 8,581-563 (1896). P&F 23, No. 5, 55, (1998) | |||
artemisia campestris spp. glutinosa flower oil italy | |||
# | % | Leftshift | Components |
21 | trace | aromadendrene | |
27 | 14.50 | bicyclogermacrene | |
33 | 0.90 | bisabolene endoperoxide | |
39 | 7.00 | alpha- | bisabolol |
42 | 1.70 | alpha- | bisabolol oxide |
22 | 0.10 | iso | borneol |
30 | trace | delta- | cadinene |
44 | 0.50 | alpha- | cadinol |
32 | 0.20 | calamenene | |
2 | trace | camphene | |
18 | trace | camphor | |
43 | 0.90 | carvacrol | |
34 | 0.30 | caryophyllene oxide | |
37 | 1.00 | cedrol | |
7 | 0.20 | 1,8- | cineole |
17 | 0.40 | alpha- | copaene |
31 | 0.20 | ar- | curcumene |
11 | 0.10 | para- | cymene |
28 | 5.00 | (E,E)-alpha- | farnesene |
24 | 1.50 | (E)-beta- | farnesene |
29 | 0.10 | geranyl acetate | |
26 | 8.00 | germacrene D | |
40 | 1.00 | globulol | |
23 | 0.40 | beta- | guaiene |
14 | 0.20 | (Z)-3- | hexen-1-yl isovalerate |
25 | 1.40 | alpha- | humulene |
6 | 3.00 | limonene | |
35 | 3.70 | methyl eugenol | |
45 | 0.40 | T- | muurolol |
5 | 11.20 | myrcene | |
20 | 0.40 | myrtenal | |
36 | 0.80 | (E)- | nerolidol |
8 | 2.40 | (Z)-beta- | ocimene |
13 | 0.10 | allo- | ocimene |
10 | 5.40 | (E)-beta- | ocimene |
1 | 2.60 | alpha- | pinene |
3 | 19.00 | beta- | pinene |
4 | 0.30 | sabinene | |
41 | 0.90 | spathulenol | |
19 | 0.90 | terpinen-4-ol | |
9 | 0.40 | gamma- | terpinene |
12 | trace | terpinolene | |
15 | trace | alpha- | thujone |
16 | trace | beta- | thujone |
38 | 0.90 | viridiflorol | |
J. of Ess. Oil Res. 13, No. 2, 91, (2001) | |||
artemisia variabilis flower oil italy | |||
# | % | Leftshift | Components |
38 | 0.40 | acenaphthalene | |
24 | 0.70 | bicyclogermacrene | |
33 | 1.00 | alpha- | bisabolol |
26 | trace | delta- | cadinene |
37 | 0.90 | alpha- | cadinol |
2 | trace | camphene | |
16 | trace | camphor | |
8 | 0.10 | 1,8- | cineole |
27 | trace | ar- | curcumene |
30 | 0.10 | 1H- | cyclobutano(de)naphthalene |
12 | 0.40 | para- | cymene |
39 | 77.30 | 1,2- | dihydroacenaphthlene |
28 | 0.50 | 1,4- | dimethyl naphthalene |
25 | 0.10 | geranyl acetate | |
23 | 0.30 | germacrene D | |
34 | 0.20 | globulol | |
20 | trace | beta- | guaiene |
15 | trace | (Z)-3- | hexen-1-yl isovalerate |
21 | 0.10 | alpha- | humulene |
40 | 0.10 | 2- | hydroxy-4,6-dimethoxyacetophenone |
7 | 1.00 | limonene | |
17 | trace | linalool | |
29 | trace | methyl eugenol | |
5 | 0.20 | myrcene | |
19 | trace | myrtenal | |
31 | 0.30 | (E)- | nerolidol |
9 | 5.50 | (Z)-beta- | ocimene |
14 | trace | allo- | ocimene |
11 | 1.30 | (E)-beta- | ocimene |
1 | 0.80 | alpha- | pinene |
3 | 3.60 | beta- | pinene |
4 | 0.10 | sabinene | |
35 | 1.00 | spathulenol | |
18 | 0.10 | terpinen-4-ol | |
6 | 0.10 | alpha- | terpinene |
10 | 3.20 | gamma- | terpinene |
22 | 0.20 | alpha- | terpineol |
13 | trace | terpinolene | |
36 | 0.80 | thymol | |
32 | 0.20 | viridiflorol | |
J. of Ess. Oil Res. 13, No. 2, 91, (2001) | |||
cassinia laevis flower oil australia | |||
# | % | Leftshift | Components |
14 | 0.10 | bicyclogermacrene | |
30 | 0.40 | bulnesol | |
17 | 2.40 | delta- | cadinene |
29 | 2.50 | T- | cadinol |
10 | 2.10 | beta- | caryophyllene |
4 | 2.80 | 1,8- | cineole |
6 | 0.40 | citronellal | |
9 | 1.90 | alpha- | copaene |
12 | 3.60 | beta- | copaene |
13 | 0.90 | germacrene D | |
20 | 1.20 | globulol | |
11 | 0.30 | alpha- | guaiene |
22 | 2.20 | guaiol | |
25 | 0.70 | humulene oxide I | |
27 | 1.00 | humulene oxide II | |
24 | 19.30 | ledol | |
3 | 4.30 | limonene | |
16 | 7.70 | alpha- | muurolene |
28 | 0.40 | alpha- | muurolol |
18 | 0.70 | palustrol | |
1 | 13.60 | alpha- | pinene |
2 | 0.50 | beta- | pinene |
21 | 0.40 | rosifoliol | |
5 | 0.70 | (Z)- | sabinene hydrate |
15 | 2.20 | beta- | selinene |
19 | 8.00 | spathulenol | |
7 | 0.90 | terpinen-4-ol | |
8 | 1.00 | alpha- | terpineol |
31 | 1.20 | unknown a | |
23 | 0.40 | viridiflorol | |
26 | 5.30 | widdrol | |
J. of Ess. Oil Res. 13, No. 2, 78, (2001) | |||
cistus ladaniferus leaf oil | |||
# | % | Leftshift | Components |
23 | 0.20 | acetophenone | |
45 | trace | 15- | acetoxylabdan-8-ol |
21 | 1.90 | allo- | aromadendrene |
29 | 0.80 | borneol | |
26 | 0.20 | iso | borneol |
18 | 3.10 | bornyl acetate | |
34 | 0.80 | delta- | cadinene |
35 | 0.40 | gamma- | cadinene |
2 | 2.10 | camphene | |
14 | 0.80 | alpha- | campholenic aldehyde |
38 | trace | trans- | carveol |
33 | 0.30 | carvone | |
39 | 0.40 | caryophyllene oxide | |
13 | 0.80 | alpha- | copaene |
12 | 0.70 | cyclosativene | |
9 | 1.70 | para- | cymene |
44 | 0.50 | beta- | eudesmol |
24 | trace | (E)-beta- | farnesene |
36 | 0.30 | geranyl acetate | |
41 | 0.30 | globulol | |
15 | 0.30 | alpha- | gurjunene |
25 | trace | alpha- | humulene |
31 | 0.90 | ledene | |
40 | 3.30 | ledol | |
6 | 1.70 | limonene | |
27 | 0.40 | gamma- | muurolene |
20 | 0.50 | myrtenal | |
37 | 0.40 | myrtenol | |
28 | 0.40 | myrtenyl acetate | |
7 | 0.40 | beta- | phellandrene |
1 | 39.00 | alpha- | pinene |
3 | 0.50 | beta- | pinene |
16 | 0.50 | iso | pinocamphone |
22 | 1.90 | trans- | pinocarveol |
17 | 0.90 | pinocarvone | |
4 | 0.80 | sabinene | |
43 | 0.50 | spathulenol | |
19 | 1.10 | terpinen-4-ol | |
5 | 0.10 | alpha- | terpinene |
8 | 0.40 | gamma- | terpinene |
30 | 0.50 | alpha- | terpineol |
10 | 0.20 | terpinolene | |
11 | 0.90 | 2,2,6- | trimethyl cyclohexanone |
32 | 0.30 | verbenone | |
42 | 11.80 | viridiflorol | |
J. P. Mariotti, F. Tomi, J. Cassanova, J. Costa and A. F. Bernadini, Composition of the essential oil of Cistus ladaniferus L. cultivated in Corsica (France). Flav. Fragr. J., 12, 147-151 (1997). P&F 24, No. 4, 31, (1999) | |||
cistus ladaniferus oil morocco | |||
# | % | Leftshift | Components |
40 | 0.80 | alpha- | amorphene |
47 | 0.97 | allo- | aromadendrene |
23 | 1.45 | borneol | |
35 | 2.40 | bornyl acetate | |
52 | 3.00 | delta- | cadinene |
59 | 1.32 | alpha- | cadinol |
58 | 0.81 | T- | cadinol |
53 | 0.31 | alpha- | calacorene |
54 | 0.37 | beta- | calacorene |
21 | 0.74 | camphene hydrate | |
12 | trace | camphenilone | |
17 | 0.78 | alpha- | campholenic aldehyde |
20 | 2.92 | camphor | |
36 | 0.21 | carvacrol | |
31 | 1.22 | cis- | carveol |
33 | 0.31 | carvone | |
45 | trace | beta- | caryophyllene |
7 | trace | 1,8- | cineole |
41 | 0.79 | alpha- | copaene |
38 | 0.30 | alpha- | cubebene |
42 | 0.19 | beta- | cubebene |
57 | 1.71 | cubenol | |
32 | 0.77 | cuminaldehyde | |
25 | 0.19 | para- | cymen-8-ol |
4 | 0.30 | ortho- | cymene |
13 | 0.43 | para- | cymene |
16 | 0.57 | 2,6- | dimethyl cyclohexanol |
2 | trace | 3,5- | dimethyl phenol |
30 | trace | alpha- | fenchyl acetate |
34 | 0.35 | geraniol | |
44 | 0.42 | alpha- | gurjunene |
46 | 0.19 | beta- | gurjunene |
43 | trace | iso | italicene |
50 | 0.45 | ledene | |
55 | 0.42 | ledol | |
5 | trace | limonene | |
11 | 0.15 | (Z)-para- | menth-2-en-1-ol |
51 | 0.62 | alpha- | muurolene |
48 | 0.18 | gamma- | muurolene |
28 | trace | myrtanol | |
27 | 1.35 | myrtenal | |
6 | 0.25 | beta- | phellandrene |
37 | 0.06 | phenyl propionic acid | |
1 | 0.37 | alpha- | pinene |
15 | 0.23 | alpha- | pinene oxide |
19 | 2.47 | trans- | pinocarveol |
22 | 1.11 | pinocarvone | |
18 | 0.16 | (E)- | rose oxide |
24 | 0.70 | terpinen-4-ol | |
3 | trace | alpha- | terpinene |
9 | 0.35 | gamma- | terpinene |
26 | 0.30 | alpha- | terpineol |
14 | 0.43 | terpinolene | |
10 | 0.35 | 3,5,5- | trimethyl cyclohex-2-en-1-one |
8 | 0.75 | 2,2,6- | trimethyl cyclohexanone |
49 | 0.16 | valencene | |
29 | 0.19 | verbenone | |
56 | 12.81 | viridiflorol | |
39 | 0.80 | alpha- | ylangene |
N. Mrabet, S. Zrira, M. M. Ismaili-Alaoui, H. Lahloa and B. Benjilali, Essential oils and resin gum from Moroccan Cistus, “Cistus ladaniferus L." Rivista Ital. EPPOS, (Numero Speciale), 622-630 (1997). P&F 24, No. 4, 31, (1999) | |||
cistus oil | |||
# | % | Leftshift | Components |
6 | 0.1 | acetophenone | |
141 | 0.2 | 6- | acetoxy-11-nor-drim-7-en-9-one |
72 | 0.2 | 7- | acetyl-2,2,6-trimethyl bicyclo(4.2.0)octane |
119 | 0.1 | 6- | acetyl-5,8,8-trimethyl bicyclo(3.2.1)octan-2,3-dione |
149 | 0.2 | 13-nor- | ambreinolide |
148 | 0.1 | 8-epi-13-nor- | ambreinolide |
78 | 0.2 | alpha- | ambrinol |
137 | 1.4 | ambrox | |
144 | 0.1 | 6-oxo-iso | ambrox |
81 | 0.9 | aromadendr-1-ene | |
135 | 0.3 | aromadendr-1(10)-en-9-one | |
91 | 1.4 | 1,5-(Z)- | aromadendr-9-ene |
132 | 0.1 | 1,10-seco- | aromadendran-1,10-dione |
130 | 0.1 | 5-epi-1,10-seco- | aromadendran-1,10-dione |
86 | 1.5 | allo- | aromadendrene |
b3 | 0.4 | benzoic acid | |
27 | 2.0 | borneol | |
55 | 1.7 | bornyl acetate | |
b21 | 0.9 | 3-iso | butenyl-5-methyl-5-vinyl butyrolactone |
126 | 0.5 | cadalene | |
98 | 0.4 | delta- | cadinene |
125 | 0.6 | alpha- | cadinol |
100 | 0.6 | alpha- | calacorene |
99 | 0.6 | (E)- | calamenene |
90 | 0.5 | (Z)- | calamenene |
b9 | 1.4 | gamma- | campholenic acid |
15 | 0.3 | alpha- | campholenic aldehyde |
10 | 0.3 | gamma- | campholenic aldehyde |
b7 | 0.3 | alpha- | campholytic acid |
b4 | 0.2 | gamma- | campholytic acid |
b5 | 2.4 | camphonanic acid | |
b12 | 2.1 | alpha- | camphoneic acid |
18 | 0.1 | camphor | |
60 | 0.8 | carvacrol | |
48 | 0.2 | carvenone | |
41 | 0.2 | trans- | carveol |
43 | 0.1 | cis- | carveol |
46 | 0.5 | carvone | |
138 | 0.1 | sesqui | chamaenol |
117 | 1.8 | copaborneol | |
127 | 0.6 | copabornyl acetate | |
74 | 1.1 | alpha- | copaene |
82 | 0.7 | cubeb-11-ene | |
113 | 4.1 | cubeban-11-ol | |
121 | 0.4 | 1-epi- | cubenol |
44 | 0.1 | cuminaldehyde | |
b11 | 1.0 | beta- | cyclogeranic acid |
b8 | 0.9 | gamma- | cyclogeranic acid |
53 | 0.3 | para- | cymen-7-ol |
3 | 0.4 | para- | cymene |
b13 | 0.7 | davanic acid | |
39 | 0.2 | decanal | |
b20 | 3.8 | decanoic acid | |
106 | 0.2 | 1,2- | dehydroglobulol |
118 | 0.3 | 3,4- | dehydroglobulol |
110 | 0.2 | 1-epi-3,4- | dehydroviridiflorol |
104 | 1.4 | 1,2- | dehydroviridiflorol |
146 | 0.2 | 14,15- | di-nor-8,13-epoxylabd-12-ene |
79 | 0.1 | dihydro-beta-ionene | |
94 | 0.2 | dihydroactinidiolide | |
37 | 0.5 | neo | dihydrocarveol |
b15 | 6.5 | dihydrocinnamic acid | |
b24 | 1.7 | dimethyl (Z)-2-hexyl-3-methyl butendioic acid | |
49 | 0.2 | 2,4- | dimethyl acetophenone |
9 | 1.0 | alpha-para- | dimethyl styrene |
97 | 0.2 | 4,7- | dimethyl tetral-1-one |
b14 | 1.2 | 2,6- | dimethyl-5-oxoheptanoic acid |
77 | 0.2 | dodecanal | |
70 | 0.1 | 11-nor- | drim-7-ene |
139 | 0.1 | drim-8-en-7-one | |
69 | 0.2 | 11-nor- | drim-8-ene |
101 | 0.3 | 11-nor- | driman-8-ol |
102 | 0.2 | beta- | elemol |
35 | 1.3 | elsholtzia ketone | |
136 | 0.2 | 5,11- | epoxycadin-1(10)-en-9-ol |
108 | 0.8 | 5,11- | epoxycadin-1(10)-ene |
8 | 0.8 | 6,8- | epoxymenth-1-ene |
64 | 0.1 | ethyl dihydrocinnamate | |
124 | 0.4 | beta- | eudesmol |
122 | 0.2 | gamma- | eudesmol |
65 | 1.6 | eugenol | |
45 | 0.2 | alpha- | fenchyl acetate |
76 | 0.1 | 1-( | fur-2-yl methyl)-2-formyl pyrrole |
b19 | 2.4 | geranic acid | |
51 | 0.2 | geraniol | |
80 | 0.1 | geranyl acetone | |
109 | 0.5 | gleenol | |
111 | 0.2 | globulol | |
b2 | 0.5 | heptanoic acid | |
b1 | 0.7 | hexanoic acid | |
133 | 0.1 | (Z)-3- | hexen-1-yl dihydrocinnamate |
134 | 0.3 | hexyl dihydrocinnamate | |
59 | 0.1 | (2E,4E)-6- | hydroxy-2,6-dimethyl hepta-2,4-dienal |
32 | trace | 2- | hydroxy-3-methyl benzaldehyde |
66 | 0.2 | 2- | hydroxy-4-isopropenyl toluene |
68 | 0.2 | (E)-5- | hydroxy-para-mentha-1(6),8-dien-2-one |
71 | 0.3 | (Z)-5- | hydroxy-para-mentha-1(6),8-dien-2-one |
140 | 0.1 | 10- | hydroxycalamene-8,9-epoxide |
131 | 0.1 | 9- | hydroxyladanifer-10-one(9(10(1))-abeo-9-hydroxyaromadendran-10-one) |
50 | 0.4 | 2- | hydroxypinan-3-one |
87 | 0.2 | (E)-beta- | ionone |
142 | 0.6 | 15-nor- | labd-1(17)-ene |
153 | 0.4 | labd-7-en-15-ol | |
145 | 0.5 | 15-nor- | labd-7-ene |
b31 | 6.3 | labd-7-enoic acid | |
154 | 0.3 | labd-8-en-15-ol | |
143 | 0.5 | 15-nor- | labd-8-ene |
b32 | 4.0 | labd-8-enoic acid | |
152 | 0.4 | labd-8(17)-en-15-ol | |
b30 | 5.1 | labd-8(17)-enoic acid | |
147 | 0.7 | 15-nor- | labdan-8-ol |
b23 | 2.5 | lauric acid | |
92 | 9.3 | ledene | |
73 | 0.2 | iso | ledene |
116 | 1.3 | ledol | |
12 | 0.2 | linalool | |
7 | 0.4 | (E)- | linalool oxide furanoid |
11 | 0.2 | (Z)- | linalool oxide furanoid |
b28 | 1.0 | linoleic acid | |
150 | 0.3 | manoyl oxide | |
151 | 0.3 | 13-epi- | manoyl oxide |
85 | 0.1 | massoia lactone | |
40 | 0.3 | (Z)-para- | menth-4(8)-en-2-ol |
62 | 0.1 | 2- | methoxy-6-methyl acetophenone |
29 | 0.3 | para- | methyl acetophenone |
52 | 1.0 | methyl dihydrocinnamate | |
75 | 0.4 | methyl eugenol | |
1 | 0.2 | 5- | methyl furfural |
2 | 0.1 | 6- | methyl-5-hepten-2-one |
120 | 0.3 | muurola-4,10(14)-dien-1-ol | |
123 | 0.3 | alpha- | muurolol |
b25 | 2.7 | myristic acid | |
33 | 0.9 | myrtenal | |
b18 | 6.0 | myrtenic acid | |
36 | 1.5 | myrtenol | |
58 | 1.1 | naginata ketone | |
22 | 0.2 | nerol oxide | |
103 | 0.2 | (E)- | nerolidol |
13 | 0.1 | nonanal | |
b10 | 1.6 | nonanoic acid | |
17 | 0.7 | (E)-3- | nonen-2-one |
b6 | 3.7 | octanoic acid | |
b27 | 1.2 | oleic acid | |
115 | 0.1 | beta- | oplopenone |
b26 | 5.1 | palmitic acid | |
105 | 1.2 | palustrol | |
129 | 0.1 | pentadecanal | |
42 | 0.1 | 3- | phenyl propanol |
23 | 1.5 | pinocamphone | |
28 | 0.7 | iso | pinocamphone |
19 | 1.8 | trans- | pinocarveol |
24 | 0.3 | pinocarvone | |
63 | 0.4 | trans- | pinocarvyl acetate |
47 | 0.8 | piperitone | |
25 | 0.1 | propiophenone | |
128 | 0.2 | 4-iso | propyl-6-methyl tetral-1-one |
16 | 0.1 | (E)- | rose oxide |
14 | 0.2 | (Z)- | rose oxide |
20 | 0.1 | (E)- | sabinol |
b29 | 0.8 | stearic acid | |
21 | 0.2 | (E)- | tagetone |
26 | 0.2 | (Z)- | tagetone |
31 | 0.8 | terpinen-4-ol | |
34 | 0.5 | alpha- | terpineol |
114 | 0.1 | tetradecanal | |
89 | 0.6 | 1,1,5,6- | tetramethyl-1,2-dihydronaphthalene |
95 | 0.2 | 1,1,5,6- | tetramethyl-1,2,3,4-tetrahydronaphthalene |
54 | 0.2 | thymol | |
107 | 0.2 | 6-para- | tolyl heptan-2-one |
88 | 0.1 | tridecanal | |
b16 | 0.7 | 1,5,5- | trimethyl bicyclo(4.1.0)heptan-7-carboxylic acid A |
b17 | 1.9 | 1,5,5- | trimethyl bicyclo(4.1.0)heptan-7-carboxylic acid B |
5 | 0.3 | 2,2,6- | trimethyl cyclohex-2-enone |
4 | 1.3 | 2,2,6- | trimethyl cyclohexanone |
93 | 0.2 | 1-(1,2,2- | trimethyl cyclopent-1-yl) pentan-1,4-dione |
96 | 0.2 | 6,6,10- | trimethyl decan-2-one |
30 | 0.5 | 2,2,5- | trimethyl oxepan-4-one |
67 | 0.2 | 1,1,6- | trimethyl-1,2-dihydronaphthalene |
83 | 0.1 | 4,4,7a- | trimethyl-1,4,5,6,7,7a-hexahydro-2H-inden-2-one |
84 | 0.1 | tuberolactone | |
61 | 0.2 | undecanal | |
b22 | 0.3 | undecanoic acid | |
38 | 0.3 | verbenone | |
112 | 4.3 | viridiflorol | |
56 | 0.2 | vitispirane A | |
57 | 0.1 | vitispirane B | |
P. Weyerstahl, H. Marschall, M. Weirauch, K. Thefeld and H. Surburg, Constituents of commercial labdanum oil. Flav. Fragr. J., 13, 295-318 (1998). P&F 24, No. 4, 31, (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) | |||
darwinia citriodora (endl.) benth. leaf oil australia | |||
# | % | Leftshift | Components |
19 | 0.10 | allo- | aromadendrene |
18 | 0.20 | aromadendrene | |
20 | 1.30 | bicyclogermacrene | |
7 | 0.10 | borneol | |
17 | 0.40 | beta- | caryophyllene |
11 | 0.30 | geranial | |
10 | 0.10 | geraniol | |
22 | 0.60 | globulol | |
2 | 0.80 | limonene | |
6 | 1.70 | linalool | |
15 | 37.40 | methyl geranate | |
14 | 41.00 | methyl myrtenate | |
9 | 0.30 | neral | |
21 | 0.60 | (E)- | nerolidol |
3 | 0.40 | (Z)-beta- | ocimene |
4 | 2.00 | (E)-beta- | ocimene |
1 | 7.80 | alpha- | pinene |
5 | 0.30 | gamma- | terpinene |
8 | 0.30 | alpha- | terpineol |
12 | 0.20 | unknown a | |
13 | 0.30 | unknown b | |
16 | 0.20 | unknown c | |
23 | 2.30 | viridiflorol | |
J. of Ess. Oil Res. 13, No. 1, 58, (2001) | |||
eucalyptus citriodora oil | |||
# | % | Leftshift | Components |
13 | 0.39 | beta- | caryophyllene |
5 | trace | 1,8- | cineole |
9 | 80.10 | citronellal | |
16 | 4.18 | citronellol | |
14 | 0.02 | citronellyl acetate | |
6 | trace | para- | cymene |
8 | 0.08 | alpha-para- | dimethyl styrene |
17 | trace | geraniol | |
18 | trace | globulol | |
4 | trace | limonene | |
10 | 0.66 | linalool | |
3 | trace | myrcene | |
1 | 0.14 | alpha- | pinene |
2 | 0.36 | beta- | pinene |
11 | 3.41 | iso | pulegol |
12 | 8.51 | iso(iso) | pulegol |
20 | 0.10 | spathulenol | |
15 | 0.02 | alpha- | terpineol |
7 | trace | terpinolene | |
19 | trace | viridiflorol | |
D. J. Boland, J. J. Brophy and A. P. N. House, Eucalyptus leaf oils. Use, chemisty, distillation and marketing. Inkata Press, Melbourne (1991). P&F 21, No. 6, 55, (1996) | |||
eucalyptus globulus bicostata oil | |||
# | % | Leftshift | Components |
9 | 5.57 | aromadendrene | |
12 | 1.56 | allo- | aromadendrene |
16 | 0.09 | borneol | |
10 | 0.22 | alpha- | bulnesene |
20 | 0.17 | delta- | cadinene |
18 | 0.16 | carvone | |
3 | 68.82 | 1,8- | cineole |
23 | 0.09 | para- | cymen-8-ol |
5 | 0.27 | para- | cymene |
31 | 0.12 | alpha- | eudesmol |
32 | 0.26 | beta- | eudesmol |
28 | 2.75 | globulol | |
8 | 0.55 | beta- | gurjunene |
2 | 1.57 | limonene | |
11 | 0.11 | (Z)-para- | menth-2-en-1-ol |
22 | 0.25 | (E)-para- | mentha-1,8-dien-6-ol |
24 | 0.08 | (Z)-para- | mentha-1,8-dien-6-ol |
21 | 0.97 | (E)-para- | mentha-1(7),8-dien-2-ol |
25 | 0.24 | (Z)-para- | mentha-1(7),8-dien-2-ol |
17 | 0.51 | alpha- | muurolene |
15 | 1.62 | neral | |
26 | 0.12 | palustrol | |
27 | 0.21 | 2- | phenethyl propionate |
1 | 1.90 | alpha- | pinene |
13 | 2.14 | trans- | pinocarveol |
7 | 0.92 | pinocarvone | |
19 | 0.07 | (E)- | piperitol |
30 | 0.13 | spathulenol | |
4 | 0.15 | gamma- | terpinene |
14 | 0.17 | delta- | terpineol |
6 | 0.98 | terpinolene | |
33 | 0.25 | torquatone | |
29 | 0.73 | viridiflorol | |
C. M. Bignell, P. J. Dunlap, J. J. Brophy and J. F. Jackson, Volatile leaf oils of some southwestern and southern Australian species of the genus Eucalyptus Part XII. A. Subgenus Eudesmia: B. Subgenus sumphyomyrtus: (a) section Exsertaria; (b) series globulares. Flav. Fragr. J., 11, 145-151 (1996). P&F 22, No. 1, 49, (1997) | |||
eucalyptus globulus bud oil | |||
# | % | Leftshift | Components |
11 | 0.05 | iso | amyl isovalerate |
18 | 16.57 | aromadendrene | |
20 | 1.88 | allo- | aromadendrene |
15 | 1.57 | beta- | bourbonene |
19 | 0.34 | bulnesene | |
31 | 0.10 | delta- | cadinene |
30 | 0.26 | gamma- | cadinene |
34 | 0.08 | trans- | carveol |
7 | 36.95 | 1,8- | cineole |
13 | 0.10 | alpha- | copaene |
21 | 0.11 | cryptone | |
12 | 0.27 | alpha- | cubebene |
35 | 0.37 | para- | cymen-7-ol |
9 | 8.04 | para- | cymene |
41 | 0.18 | beta- | eudesmol |
37 | trace | gamma- | eudesmol |
39 | 3.05 | globulol | |
38 | 0.12 | epi- | globulol |
28 | 0.29 | alpha- | guaiene |
14 | trace | alpha- | gurjunene |
17 | trace | beta- | gurjunene |
22 | trace | gamma- | gurjunene |
23 | trace | alpha- | humulene |
43 | 0.04 | 5-epi-neo | intermedeol |
25 | 0.10 | ledene | |
6 | 3.10 | limonene | |
33 | 0.10 | cis-para- | mentha-1(7),5-dien-2-ol |
5 | 0.07 | myrcene | |
32 | trace | nerol | |
36 | 0.07 | palustrol | |
4 | 0.01 | alpha- | phellandrene |
2 | 0.30 | beta- | pinene |
16 | 0.10 | pinocarvone | |
27 | trace | piperitone | |
3 | 0.54 | sabinene | |
29 | 0.29 | alpha- | selinene |
8 | trace | gamma- | terpinene |
26 | 4.66 | alpha- | terpineol |
10 | trace | terpinolene | |
1 | 11.95 | alpha- | thujene |
42 | 0.14 | thymol | |
24 | 0.36 | viridiflorene | |
40 | 0.53 | viridiflorol | |
J-C. Chalchat, J. L. Cabard, M. S. Gorunovic, V. Djermanovic and V. Bulatovic, Chemical composition of Eucalyptus globulus oils from the Montenegro coast and east coast of spain. J. Essent. Oil Res., 7, 147-152 (1995). P&F 26, No. 2, 22, (2001) | |||
eucalyptus globulus fruit oil | |||
# | % | Leftshift | Components |
13 | 0.46 | iso | amyl isovalerate |
21 | 23.33 | aromadendrene | |
23 | 3.32 | allo- | aromadendrene |
17 | 2.40 | beta- | bourbonene |
22 | 0.44 | bulnesene | |
41 | 0.62 | delta- | cadinene |
40 | trace | gamma- | cadinene |
58 | 0.20 | alpha- | cadinol |
55 | 0.28 | T- | cadinol |
18 | trace | carvenone | |
27 | 0.16 | carvotan acetone | |
7 | 15.31 | 1,8- | cineole |
15 | 0.08 | alpha- | copaene |
24 | 0.13 | cryptone | |
14 | 0.34 | alpha- | cubebene |
19 | trace | beta- | cubebene |
44 | trace | para- | cymen-7-ol |
11 | 6.44 | para- | cymene |
52 | 0.84 | beta- | eudesmol |
47 | 0.55 | gamma- | eudesmol |
36 | trace | germacrene D | |
50 | 14.98 | globulol | |
49 | 3.10 | epi- | globulol |
34 | 0.39 | alpha- | guaiene |
16 | trace | alpha- | gurjunene |
20 | 0.47 | beta- | gurjunene |
26 | 0.20 | gamma- | gurjunene |
28 | trace | alpha- | humulene |
59 | 0.22 | 5-epi-neo | intermedeol |
31 | 3.63 | ledene | |
46 | trace | ledol | |
6 | 1.10 | limonene | |
43 | trace | cis-para- | mentha-1(7),5-dien-2-ol |
38 | trace | gamma- | muurolene |
54 | 0.12 | T- | muurolol |
4 | 0.21 | myrcene | |
42 | 0.10 | nerol | |
10 | trace | (E)-beta- | ocimene |
45 | 0.16 | palustrol | |
3 | 2.11 | alpha- | phellandrene |
8 | 0.50 | beta- | phellandrene |
48 | trace | 2- | phenethyl 2-methyl butyrate |
1 | 3.61 | alpha- | pinene |
2 | 0.10 | beta- | pinene |
25 | trace | trans- | pinocarveol |
33 | trace | piperitone | |
35 | 0.30 | alpha- | selinene |
37 | trace | delta- | selinene |
39 | trace | gamma- | selinene |
53 | 0.20 | spathulenol | |
57 | trace | iso | spathulenol |
5 | 0.22 | alpha- | terpinene |
9 | 0.18 | gamma- | terpinene |
32 | 2.27 | alpha- | terpineol |
12 | 0.20 | terpinolene | |
56 | 0.28 | thymol | |
29 | trace | beta- | vetivene |
30 | 0.66 | viridiflorene | |
51 | 2.17 | viridiflorol | |
J-C. Chalchat, J. L. Cabard, M. S. Gorunovic, V. Djermanovic and V. Bulatovic, Chemical composition of Eucalyptus globulus oils from the Montenegro coast and east coast of spain. J. Essent. Oil Res., 7, 147-152 (1995). P&F 26, No. 2, 22, (2001) | |||
eucalyptus globulus leaf oil | |||
# | % | Leftshift | Components |
15 | 12.31 | aromadendrene | |
18 | 2.90 | allo- | aromadendrene |
22 | 0.06 | borneol | |
16 | 0.40 | alpha- | bulnesene |
26 | 0.42 | delta- | cadinene |
10 | 0.11 | alpha- | campholenic aldehyde |
5 | 40.72 | 1,8- | cineole |
12 | 0.06 | alpha- | copaene |
9 | 0.25 | alpha- | cubebene |
30 | 0.15 | para- | cymen-8-ol |
7 | 0.86 | para- | cymene |
38 | 0.26 | alpha- | eudesmol |
39 | 0.40 | beta- | eudesmol |
37 | 0.09 | gamma- | eudesmol |
34 | 4.37 | globulol | |
11 | 0.44 | alpha- | gurjunene |
14 | 0.84 | beta- | gurjunene |
4 | 4.24 | limonene | |
17 | 0.07 | (Z)-para- | menth-2-en-1-ol |
29 | 0.12 | (E)-para- | mentha-1,8-dien-6-ol |
28 | 0.18 | (E)-para- | mentha-1(7),8-dien-2-ol |
31 | 0.24 | (Z)-para- | mentha-1(7),8-dien-2-ol |
24 | 0.18 | alpha- | muurolene |
3 | 0.16 | myrcene | |
27 | 0.23 | myrtenol | |
20 | 0.30 | neral | |
32 | 0.18 | palustrol | |
33 | 0.17 | 2- | phenethyl propionate |
1 | 12.49 | alpha- | pinene |
2 | 0.36 | beta- | pinene |
19 | 0.66 | trans- | pinocarveol |
13 | 0.34 | pinocarvone | |
25 | 0.14 | (E)- | piperitol |
23 | 0.19 | beta- | selinene |
36 | 0.52 | spathulenol | |
6 | 0.17 | gamma- | terpinene |
21 | 3.65 | alpha- | terpineol |
8 | 0.15 | terpinolene | |
40 | 0.23 | torquatone | |
35 | 1.12 | viridiflorol | |
C. M. Bignell, P. J. Dunlap, J. J. Brophy and J. F. Jackson, Volatile leaf oils of some southwestern and southern Australian species of the genus Eucalyptus Part XII. A. Subgenus Eudesmia: B. Subgenus sumphyomyrtus: (a) section Exsertaria; (b) series globulares. Flav. Fragr. J., 11, 145-151 (1996). P&F 22, No. 1, 49, (1997) | |||
eucalyptus globulus maidenii f. muell oil | |||
# | % | Leftshift | Components |
12 | 12.04 | aromadendrene | |
15 | 2.95 | allo- | aromadendrene |
13 | 0.32 | alpha- | bulnesene |
23 | 0.27 | delta- | cadinene |
21 | 0.15 | carvone | |
4 | 58.60 | 1,8- | cineole |
8 | 0.07 | alpha- | copaene |
27 | 0.13 | para- | cymen-8-ol |
6 | 0.35 | para- | cymene |
7 | 0.12 | alpha-para- | dimethyl styrene |
34 | 0.10 | alpha- | eudesmol |
35 | 0.12 | beta- | eudesmol |
10 | 0.07 | alpha- | fenchol |
31 | 4.01 | globulol | |
11 | 0.63 | beta- | gurjunene |
3 | 0.96 | limonene | |
14 | 0.15 | (Z)-para- | menth-2-en-1-ol |
26 | 0.25 | (E)-para- | mentha-1,8-dien-6-ol |
28 | 0.07 | (Z)-para- | mentha-1,8-dien-6-ol |
25 | 0.94 | (E)-para- | mentha-1(7),8-dien-2-ol |
29 | 1.05 | (Z)-para- | mentha-1(7),8-dien-2-ol |
20 | 0.40 | alpha- | muurolene |
24 | 0.08 | myrtenol | |
5 | 0.23 | (E)-beta- | ocimene |
30 | 0.16 | palustrol | |
1 | 3.65 | alpha- | pinene |
2 | 0.12 | beta- | pinene |
16 | 2.23 | trans- | pinocarveol |
9 | 0.82 | pinocarvone | |
22 | 0.11 | (E)- | piperitol |
33 | 0.19 | spathulenol | |
19 | 1.05 | alpha- | terpineol |
17 | 0.34 | delta- | terpineol |
36 | 0.22 | torquatone | |
18 | 0.08 | viridiflorene | |
32 | 1.09 | viridiflorol | |
C. M. Bignell, P. J. Dunlap, J. J. Brophy and J. F. Jackson, Volatile leaf oils of some southwestern and southern Australian species of the genus Eucalyptus Part XII. A. Subgenus Eudesmia: B. Subgenus sumphyomyrtus: (a) section Exsertaria; (b) series globulares. Flav. Fragr. J., 11, 145-151 (1996). P&F 22, No. 1, 49, (1997) | |||
eucalyptus globulus oil rwanda | |||
Also in 1997, Chalchat et al. (1997) examined the com position of a lab-distilled oil of E. globulus leaves produced from trees found in Rwanda using CC/MS. The composition of the oil was found to be as follows: | |||
# | % | Leftshift | Components |
26 | 0.10 | allo- | aromadendrene |
4 | 0.04 | camphene | |
31 | 0.03 | trans- | carveol |
24 | 0.03 | beta- | caryophyllene |
11 | 71.20 | 1,8- | cineole |
19 | 0.03 | alpha- | cubebene |
32 | 0.07 | para- | cymen-8-ol |
15 | 8.23 | para- | cymene |
18 | 0.05 | alpha-para- | dimethyl styrene |
39 | 0.05 | alpha- | eudesmol |
40 | 0.11 | beta- | eudesmol |
37 | 0.01 | gamma- | eudesmol |
3 | 0.01 | alpha- | fenchene |
35 | 0.11 | globulol | |
34 | 0.04 | epi- | globulol |
20 | 0.02 | alpha- | gurjunene |
23 | 0.06 | beta- | gurjunene |
12 | 0.13 | (E)-2- | hexenal |
17 | 0.18 | (Z)-3- | hexen-1-ol |
10 | 3.10 | limonene | |
22 | trace | linalool | |
30 | 0.05 | (E)-para- | mentha-1(7),8-dien-2-ol |
33 | 0.03 | (Z)-para- | mentha-1(7),8-dien-2-ol |
8 | 0.09 | myrcene | |
13 | 0.02 | (Z)-beta- | ocimene |
7 | 0.01 | alpha- | phellandrene |
1 | 6.23 | alpha- | pinene |
5 | 0.19 | beta- | pinene |
27 | 0.20 | trans- | pinocarveol |
21 | 0.04 | pinocarvone | |
6 | 0.02 | sabinene | |
25 | 1.46 | terpinen-4-ol | |
9 | 0.02 | alpha- | terpinene |
14 | 3.20 | gamma- | terpinene |
28 | 0.11 | alpha- | terpineol |
16 | 0.06 | terpinolene | |
29 | 3.10 | alpha- | terpinyl acetate |
2 | 0.03 | alpha- | thujene |
38 | trace | thymol | |
36 | 0.03 | viridiflorol | |
J-C. Chalchat, A. Muhayimana, J. B. Habimana and J. L. Chabard, Aromatic plants of Rwanda II. Chemical composition of essential oils of ten Eucalpytus species growing in Ruhande Arboretum Butare, Rwanda. J. Essent. Oil Res., 9, 159-165 (1995). P&F 26, No. 2, 22, (2001) | |||
eucalyptus globulus oil zambia | |||
# | % | Leftshift | Components |
17 | 0.60 | aromadendrene | |
7 | 70.10 | 1,8- | cineole |
11 | 0.80 | para- | cymene |
26 | 0.20 | alpha- | eudesmol |
27 | 0.40 | beta- | eudesmol |
25 | 0.10 | gamma- | eudesmol |
22 | 0.10 | geranial | |
23 | 0.30 | geraniol | |
14 | trace | (Z)-3- | hexen-1-ol |
13 | trace | hexen-1-yl acetate | |
6 | 5.70 | limonene | |
16 | trace | linalool | |
4 | 0.70 | myrcene | |
20 | trace | neral | |
10 | trace | (E)-beta- | ocimene |
8 | trace | (Z)-beta- | ocimene |
2 | 14.00 | alpha- | pinene |
3 | 0.70 | beta- | pinene |
19 | 0.30 | trans- | pinocarveol |
15 | trace | pinocarvone | |
18 | 0.40 | terpinen-4-ol | |
5 | trace | alpha- | terpinene |
9 | 0.50 | gamma- | terpinene |
21 | 1.90 | alpha- | terpineol |
12 | trace | terpinolene | |
1 | 0.60 | iso | valeraldehyde |
24 | 0.50 | viridiflorol | |
E. Chisowa, Chemical composition of essential oils of three Eucalyptus species grown in Zambia. J. Essent. Oil Res., 9, 653--655 (1997). P&F 26, No. 2, 22, (2001) | |||
eucalyptus globulus subsp. pseudoglobulus oil | |||
# | % | Leftshift | Components |
13 | 1.16 | aromadendrene | |
16 | 0.28 | allo- | aromadendrene |
22 | 0.07 | borneol | |
27 | 0.25 | delta- | cadinene |
28 | 0.13 | gamma- | cadinene |
8 | 0.17 | alpha- | campholenic aldehyde |
26 | 0.31 | carvone | |
12 | 0.99 | beta- | caryophyllene |
35 | 0.13 | caryophyllene oxide | |
4 | 52.41 | 1,8- | cineole |
9 | 0.09 | alpha- | copaene |
32 | 0.16 | para- | cymen-8-ol |
6 | 1.60 | para- | cymene |
7 | 0.09 | alpha-para- | dimethyl styrene |
41 | 0.95 | alpha- | eudesmol |
42 | 8.65 | beta- | eudesmol |
40 | 0.73 | gamma- | eudesmol |
11 | 0.10 | alpha- | fenchol |
37 | 0.36 | globulol | |
19 | 0.55 | alpha- | humulene |
3 | 2.33 | limonene | |
14 | 0.13 | (Z)-para- | menth-2-en-1-ol |
31 | 0.45 | (E)-para- | mentha-1,8-dien-6-ol |
33 | 0.07 | (Z)-para- | mentha-1,8-dien-6-ol |
30 | 0.59 | (E)-para- | mentha-1(7),8-dien-2-ol |
34 | 0.64 | (Z)-para- | mentha-1(7),8-dien-2-ol |
15 | 0.11 | myrtenal | |
29 | 0.11 | myrtenol | |
5 | 0.08 | (E)-beta- | ocimene |
36 | 0.08 | 2- | phenethyl propionate |
1 | 12.27 | alpha- | pinene |
2 | 0.33 | beta- | pinene |
17 | 2.73 | trans- | pinocarveol |
10 | 2.84 | pinocarvone | |
20 | 0.07 | (Z)- | piperitol |
25 | 0.31 | alpha- | selinene |
24 | 0.28 | beta- | selinene |
39 | 0.13 | spathulenol | |
21 | 0.84 | alpha- | terpineol |
18 | 0.22 | delta- | terpineol |
43 | 0.12 | torquatone | |
23 | 0.18 | verbenone | |
38 | 0.13 | viridiflorol | |
C. M. Bignell, P. J. Dunlap, J. J. Brophy and J. F. Jackson, Volatile leaf oils of some southwestern and southern Australian species of the genus Eucalyptus Part XII. A. Subgenus Eudesmia: B. Subgenus sumphyomyrtus: (a) section Exsertaria; (b) series globulares. Flav. Fragr. J., 11, 145-151 (1996). P&F 22, No. 1, 49, (1997) | |||
glycosmis pentaphylla (cor.) bark oil india | |||
# | % | Leftshift | Components |
14 | 0.50 | alpha- | cadinol |
5 | 0.20 | alpha- | copaene |
12 | 0.20 | 1-epi- | cubenol |
6 | 0.20 | 2- | dodecanone |
16 | 0.60 | ethenyl dodecanoate | |
21 | 0.30 | ethyl hexadecanoate | |
9 | 0.20 | globulol | |
20 | 4.70 | hexadecanoic acid | |
13 | 0.20 | T- | muurolol |
22 | 0.50 | oleic acid | |
19 | 0.20 | pentadecanoic acid | |
17 | 0.20 | 2- | pentadecanone |
1 | 0.20 | terpinen-4-ol | |
11 | 0.20 | tetradecanal | |
18 | 0.70 | tetradecanoic acid | |
8 | 0.50 | 2- | tridecanol |
7 | 28.10 | 2- | tridecanone |
4 | 0.30 | undecanol | |
3 | 2.30 | 2- | undecanol |
2 | 52.10 | 2- | undecanone |
10 | 0.20 | viridiflorol | |
15 | 0.50 | oxo-alpha- | ylangene |
J. of Ess. Oil Res. 12, No. 4, 471, (2000) | |||
hamamelis virginiana leaf oil | |||
# | % | Leftshift | Components |
0.01 | benzyl benzoate | ||
trace | butyl benzoate | ||
0.05 | cadalene | ||
0.04 | delta- | cadinene | |
0.21 | beta- | caryophyllene | |
0.07 | cyclosativene | ||
trace | (E)-beta- | damascenone | |
0.03 | decanal | ||
3 | 0.01 | decane | |
0.28 | docosanal | ||
18 | 1.27 | docosane | |
0.21 | docosanol | ||
0.20 | dodecanal | ||
4 | 0.03 | dodecane | |
0.69 | dotriacontane | ||
trace | eicosanal | ||
15 | 0.60 | eicosane | |
0.02 | eicosanol | ||
0.16 | ethyl hexadecanoate | ||
0.09 | ethyl linoleate | ||
0.05 | ethyl linolenate | ||
0.06 | ethyl oleate | ||
0.09 | ethyl tetracosane | ||
0.01 | ethyl tetradecanoate | ||
0.05 | alpha- | eudesmol | |
0.02 | gamma- | eudesmol | |
1.47 | (E,E)-alpha- | farnesene | |
0.08 | alpha- | farnesene | |
1.74 | geraniol | ||
0.07 | geranyl acetone | ||
0.01 | geranyl formate | ||
0.47 | geranyl linalool | ||
1.14 | henitriacontane | ||
16.12 | heptacosane | ||
12 | 0.31 | heptadecane | |
0.05 | 2- | heptadecanone | |
0.91 | hexacosanal | ||
2.27 | hexacosane | ||
0.15 | hexadecanal | ||
10 | 0.07 | hexadecane | |
1.62 | hexadecanoic acid | ||
0.10 | hexadecanol | ||
11 | 0.16 | 1- | hexadecyne |
0.13 | hexanol | ||
0.19 | (Z)-3- | hexen-1-ol | |
0.02 | (E)-2- | hexen-1-yl (E)-2-hexenoate | |
trace | (Z)-3- | hexen-1-yl (E)-2-hexenoate | |
0.15 | (Z)-3- | hexen-1-yl 2-or-3-methyl butyrate | |
0.06 | (Z)-3- | hexen-1-yl angelate or tiglate | |
0.30 | (Z)-3- | hexen-1-yl benzoate | |
0.14 | (E)-2- | hexen-1-yl butyrate | |
trace | (Z)-3- | hexen-1-yl butyrate | |
0.03 | (E)-2- | hexen-1-yl hexanoate | |
0.23 | (Z)-3- | hexen-1-yl hexanoate | |
trace | (Z)-3- | hexen-1-yl octanoate | |
0.01 | (Z)-3- | hexen-1-yl salicylate | |
trace | hexyl tiglate | ||
trace | hotrienol | ||
0.05 | alpha- | humulene | |
trace | hydroxyedulan-1 | ||
0.08 | beta- | ionone | |
0.02 | kaurene | ||
3.74 | linalool | ||
0.12 | (E)- | linalool oxide | |
0.31 | (Z)- | linalool oxide | |
0.10 | manool | ||
0.03 | manoyl oxide | ||
19 | 0.02 | 2- | methyl docosane |
0.11 | methyl docosanoate | ||
0.04 | methyl eicosanoate | ||
16 | 0.02 | 2- | methyl heneicosane |
17 | 0.01 | 3- | methyl heneicosane |
0.06 | methyl henitriacontane | ||
0.08 | 3- | methyl heptacosane | |
0.05 | methyl hexacosane | ||
0.22 | 2- | methyl hexacosane | |
0.04 | 3- | methyl hexacosane | |
0.33 | methyl hexadecanoate | ||
0.09 | methyl linoleate | ||
0.47 | methyl linolenate | ||
0.21 | methyl nonacosane | ||
0.03 | methyl octacosane | ||
0.07 | 2- | methyl octacosane | |
0.08 | 3- | methyl octacosane | |
0.13 | methyl oleate | ||
0.18 | 2- | methyl pentacosane | |
0.15 | 3- | methyl pentacosane | |
0.05 | 4- | methyl pentacosane | |
0.03 | methyl tetracosane | ||
0.02 | 4- | methyl tetracosane | |
0.15 | methyl tetracosanoate | ||
7 | 0.27 | 3- | methyl tetradecane |
0.03 | methyl tetradecanoate | ||
0.13 | 2- | methyl triacontane | |
0.04 | 3- | methyl triacontane | |
0.04 | myrcenol | ||
0.03 | nerol | ||
0.09 | nerol oxide | ||
0.17 | (E)- | nerolidol | |
7.12 | nonacosane | ||
0.03 | nonadecanal | ||
14 | 0.78 | nonadecane | |
0.62 | nonanal | ||
2 | 0.01 | nonane | |
0.11 | nonanoic acid | ||
0.09 | nonanol | ||
0.28 | octacosanal | ||
1.75 | octacosane | ||
13 | 0.12 | octadecane | |
trace | octadecanol | ||
0.03 | octanal | ||
1 | 0.59 | octane | |
trace | octanol | ||
0.03 | 1- | octen-3-ol | |
10.99 | pentacosane | ||
0.13 | pentadecanal | ||
8 | 0.10 | pentadecane | |
0.04 | 2- | pentadecanone | |
9.79 | (E)- | phytol | |
0.68 | iso | phytol | |
0.07 | iso | propyl tetradecanoate | |
trace | riesling acetal | ||
0.03 | beta- | santalene | |
0.09 | squalene | ||
1.06 | alpha- | terpineol | |
0.39 | tetracosanal | ||
2.59 | tetracosane | ||
0.08 | 1- | tetracosene | |
0.05 | tetradecanal | ||
6 | 0.23 | tetradecane | |
0.30 | tetratriacontane | ||
1.14 | triacontane | ||
0.68 | tritriacontane | ||
20 | 10.38 | tricosane | |
0.24 | tridecanal | ||
5 | 0.54 | tridecane | |
0.04 | 2- | tridecanone | |
0.21 | 1,1,6- | trimethyl-1,2-dihydronaphthalene | |
0.01 | 1,1,6- | trimethyl-1,2,3,4-tetrahydronaphthalene | |
9 | 0.23 | 4,8,12- | trimethyl-1,3,7,11-tridecatetraene |
0.70 | 6,10,14- | trimethyl-2-pentadecanone | |
0.80 | ar- | turmerone | |
0.42 | undecanal | ||
0.03 | (E)-2- | undecenal | |
0.21 | viridiflorol | ||
0.09 | vitispirane | ||
R. Engel, M. Gutmann, C. Harisch, H. Koloclziej and A. Nahstedt, Study on the composition of the volatile fraction of Hamamelis virginiana. Planta Med., 64, 251-258 (1998). P&F 24, No. 4, 31, (1999) | |||
laurus nobilis leaf oil turkey | |||
# | % | Leftshift | Components |
84 | 0.10 | (E)- | anethole |
139 | 0.20 | anhydrooplopanone | |
16 | trace | benzaldehyde | |
123 | 0.10 | bicyclogermacrene | |
129 | 0.20 | alpha- | bisabolene |
55 | 0.30 | borneol | |
83 | 0.70 | bornyl acetate | |
101 | 0.10 | bourbonene | |
23 | <0.10 | iso | butyl 2-methyl butyrate |
9 | trace | iso | butyl isobutyrate |
152 | 0.10 | cadalene | |
128 | trace | cadina-1,4-diene | |
125 | 0.30 | gamma- | cadinene |
126 | 0.40 | delta- | cadinene |
146 | trace | T- | cadinol |
150 | 0.10 | alpha- | cadinol |
130 | 0.10 | alpha- | calacorene |
133 | 0.10 | beta- | calacorene |
127 | 0.10 | calamenene | |
15 | 0.70 | camphene | |
47 | <0.10 | alpha- | campholenic aldehyde |
25 | <0.10 | delta-3- | carene |
89 | 0.10 | carvacrol | |
71 | 0.20 | trans- | carveol |
74 | 0.10 | cis- | carveol |
78 | 0.10 | carvone | |
95 | 0.10 | cis- | carvyl acetate |
145 | 0.60 | 3(15),7(14)- | caryophylladien-6-ol |
106 | 0.40 | beta- | caryophyllene |
136 | 0.90 | caryophyllene oxide | |
29 | 21.80 | 1,8- | cineole |
92 | 0.40 | 1,8- | cineole-2-yl acetate |
108 | 0.70 | cinnamyl acetate | |
100 | <0.10 | alpha- | copaene |
77 | 0.10 | cuminaldehyde | |
105 | <0.10 | cuminyl acetate | |
87 | 0.10 | cuminyl alcohol | |
60 | 0.20 | para- | cymen-8-ol |
27 | 1.50 | para- | cymene |
38 | <0.10 | para- | cymenene |
114 | 0.30 | (E)-3- | decen-1-yl acetate |
154 | 0.20 | dehydrocostus lactone | |
75 | <0.10 | 2,3- | dimethoxytoluene |
96 | trace | 2- | dodecanone |
102 | 0.60 | beta- | elemene |
131 | 0.30 | elemicin | |
147 | 0.30 | (E)-iso | elemicin |
21 | 0.20 | 1,8- | epoxy-2-para-menthene |
155 | 0.10 | eremanthin | |
2 | trace | ethyl 2-methyl butyrate | |
3 | trace | ethyl isovalerate | |
149 | 0.30 | alpha- | eudesmol |
148 | 1.10 | beta- | eudesmol |
142 | <0.10 | 10-epi-gamma- | eudesmol |
144 | trace | gamma- | eudesmol |
94 | 2.90 | eugenol | |
111 | 0.20 | (E)-iso | eugenol |
118 | <0.10 | (Z,E)-alpha- | farnesene |
153 | <0.10 | farnesyl acetone | |
14 | <0.10 | alpha- | fenchene |
110 | trace | geranyl acetone | |
115 | 0.10 | germacrene D | |
109 | <0.10 | guaia-6,9-diene | |
107 | 0.10 | alpha- | guaiene |
104 | <0.10 | alpha- | gurjunene |
22 | trace | 2,4- | heptadienal |
1 | <0.10 | hexanal | |
7 | <0.10 | hexanol | |
4 | <0.10 | (E)-2- | hexenal |
6 | trace | (E)-2- | hexen-1-ol |
5 | 0.10 | (E)-3- | hexen-1-ol |
41 | 0.10 | hotrienol | |
113 | 0.10 | alpha- | humulene |
140 | 0.10 | humulene oxide | |
151 | 0.30 | intermedeol | |
51 | 0.10 | ipsdienol | |
141 | 0.20 | laevo- | junenol |
138 | 0.30 | ledol | |
28 | 1.50 | limonene | |
39 | 2.00 | linalool | |
36 | <0.10 | (E)- | linalool oxide furanoid |
35 | <0.10 | (Z)- | linalool oxide furanoid |
49 | 0.20 | (Z)-para- | menth-2-en-1-ol |
46 | 0.20 | (E)-para- | menth-2-en-1-ol |
91 | 0.10 | para- | mentha-1,4-dien-7-ol |
57 | 0.20 | para- | mentha-1,5-dien-8-ol |
64 | 0.20 | para- | mentha-1(7),2-dien-8-ol |
61 | 0.30 | (E)-para- | mentha-1(7),8-dien-2-ol |
73 | 0.30 | (Z)-para- | mentha-1(7),8-dien-2-ol |
48 | 0.10 | (Z)-para- | mentha-2,8-dien-1-ol |
45 | 0.10 | (E)-para- | mentha-2,8-dien-1-ol |
42 | <0.10 | para- | menthatriene |
67 | <0.10 | methyl chavicol | |
103 | 3.50 | methyl eugenol | |
120 | 0.40 | (E)- | methyl isoeugenol |
65 | trace | methyl salicylate | |
19 | <0.10 | 6- | methyl-5-hepten-2-one |
121 | 0.10 | gamma- | muurolene |
124 | trace | alpha- | muurolene |
20 | 0.60 | myrcene | |
68 | 0.40 | myrtenal | |
72 | 0.10 | nerol | |
52 | 0.10 | nerol oxide | |
132 | 0.10 | (E)- | nerolidol |
99 | <0.10 | neryl acetate | |
31 | trace | 2- | nonanone |
30 | <0.10 | (E)-beta- | ocimene |
134 | trace | palustrol | |
81 | 0.10 | phellandral | |
24 | 0.20 | alpha- | phellandrene |
97 | 0.10 | 3- | phenyl propyl acetate |
12 | 4.60 | alpha- | pinene |
18 | 4.00 | beta- | pinene |
50 | 0.10 | trans- | pinocarveol |
54 | 0.20 | pinocarvone | |
88 | 0.10 | pinocarvyl acetate | |
34 | <0.10 | pinol | |
43 | 0.10 | iso | pinol |
66 | <0.10 | (Z)- | piperitol |
69 | 0.10 | (E)- | piperitol |
79 | trace | piperitone | |
8 | trace | iso | propyl 2-methyl butyrate |
62 | trace | 4-iso | propyl-2-cyclohexenone |
53 | 0.10 | sabinaketone | |
17 | 5.30 | sabinene | |
33 | <0.10 | (E)- | sabinene hydrate |
40 | trace | (Z)- | sabinene hydrate |
76 | trace | sabinol | |
86 | 0.10 | sabinyl acetate | |
112 | trace | selina-4(15),5-diene | |
119 | 0.30 | beta- | selinene |
122 | 0.30 | alpha- | selinene |
116 | trace | gamma- | selinene |
135 | 0.80 | spathulenol | |
59 | 4.30 | terpinen-4-ol | |
26 | 1.30 | alpha- | terpinene |
32 | 1.80 | gamma- | terpinene |
63 | 3.10 | alpha- | terpineol |
56 | 0.60 | delta- | terpineol |
37 | 0.70 | terpinolene | |
90 | 0.90 | delta- | terpinyl acetate |
93 | 9.80 | alpha- | terpinyl acetate |
13 | 0.10 | 2,4(10)- | thujadiene |
80 | 0.50 | 4- | thujen-2-alpha-yl acetate |
11 | 0.60 | alpha- | thujene |
44 | trace | beta- | thujone |
82 | trace | thymol | |
10 | <0.10 | tricyclene | |
117 | 0.10 | 2- | tridecanone |
58 | trace | umbellulone | |
85 | 0.20 | 2- | undecanone |
143 | 0.20 | valerianol | |
70 | <0.10 | verbenone | |
137 | 0.30 | viridiflorol | |
98 | 0.10 | alpha- | ylangene |
J. of Ess. Oil Res. 13, No. 2, 95, (2001) | |||
leptospermum scoparium branch/leaf oil new zealand | |||
Porter and Wilkins (1998) reported the results of a GC and CC/MS analysis of manuka oil produced in New Zealand. The components identified in this somewhat uncommon oil were found to be: | |||
# | % | Leftshift | Components |
30 | 0.33 | alpha- | amorphene |
29 | 3.81 | gamma- | amorphene |
11 | 0.05 | iso | amyl 2-methyl butyrate |
12 | 0.13 | iso | amyl isovalerate |
17 | 0.09 | iso | amyl tiglate |
25 | 2.09 | aromadendrene | |
28 | 0.80 | allo- | aromadendrene |
38 | 5.94 | cadina-1,4-diene | |
26 | 4.88 | cadina-3,5-diene | |
36 | 6.02 | gamma- | cadinene |
35 | 14.42 | calamenene | |
24 | 2.63 | beta- | caryophyllene |
41 | 0.25 | caryophyllene oxide | |
6 | 0.22 | 1,8- | cineole |
21 | 5.86 | alpha- | copaene |
27 | 0.37 | beta- | copaene |
19 | 3.95 | alpha- | cubebene |
5 | 0.16 | para- | cymene |
22 | 0.55 | beta- | elemene |
34 | 0.84 | alpha- | farnesene |
37 | 4.91 | flavesone | |
23 | 1.02 | alpha- | gurjunene |
43 | 0.23 | ledol | |
45 | 15.54 | leptospermone | |
44 | 4.62 | iso | leptospermone |
7 | 0.10 | limonene | |
10 | 0.10 | linalool | |
13 | 0.05 | 2- | methyl butyl isovalerate |
33 | 0.77 | alpha- | muurolene |
4 | 0.24 | myrcene | |
39 | 0.24 | (E)- | nerolidol |
2 | 1.31 | alpha- | pinene |
3 | 0.12 | beta- | pinene |
14 | 0.24 | iso | prenyl isovalerate |
18 | 0.03 | iso | prenyl tiglate |
31 | 3.67 | beta- | selinene |
32 | 4.35 | alpha- | selinene + viridiflorene |
40 | 0.52 | spathulenol | |
15 | 0.04 | terpinen-4-ol | |
8 | 0.16 | gamma- | terpinene |
16 | 0.09 | alpha- | terpineol |
9 | 0.05 | terpinolene | |
1 | 0.03 | alpha- | thujene |
42 | 0.46 | viridiflorol | |
20 | 0.32 | alpha- | ylangene |
N. G. Porter, P. E. Smale, M. A. Nelson, A. J. Hay, J. W. van Klink and C. M. Dean, Variability in essential oil chemistry and plant morphology within a Leptospermum population. New Zealand J. Bot., 36, 125-133 (1998). P&F 26, No. 2, 22, (2001) | |||
leptospermum scoparium var. eximium oil australia | |||
# | % | Leftshift | Components |
20 | trace | aromadendrene | |
22 | 0.30 | allo- | aromadendrene |
28 | 0.80 | bicyclogermacrene | |
21 | trace | alpha- | bulnesene |
29 | 0.90 | gamma- | cadinene |
3 | trace | camphene | |
18 | 1.70 | beta- | caryophyllene |
32 | 0.30 | caryophyllene oxide | |
10 | 0.10 | 1,8- | cineole |
14 | trace | para- | cymene |
17 | 0.10 | beta- | elemene |
39 | 11.50 | alpha- | eudesmol |
40 | 13.80 | beta- | eudesmol |
38 | 13.60 | gamma- | eudesmol |
2 | trace | alpha- | fenchene |
30 | 0.50 | geraniol | |
35 | 3.30 | globulol | |
23 | 0.40 | alpha- | humulene |
8 | 1.40 | limonene | |
16 | 4.40 | linalool | |
34 | trace | (E)- | methyl cinnamate |
6 | 0.30 | myrcene | |
33 | 0.40 | (E)- | nerolidol |
13 | 0.80 | (E)-beta- | ocimene |
11 | 0.10 | (Z)-beta- | ocimene |
31 | 0.40 | palustrol | |
9 | trace | beta- | phellandrene |
1 | 18.10 | alpha- | pinene |
4 | 0.70 | beta- | pinene |
5 | trace | sabinene | |
27 | 0.30 | alpha- | selinene |
26 | 0.30 | beta- | selinene |
37 | 1.80 | spathulenol | |
19 | 0.40 | terpinen-4-ol | |
7 | 0.10 | alpha- | terpinene |
12 | 0.10 | gamma- | terpinene |
25 | 3.00 | alpha- | terpineol |
15 | 0.20 | terpinolene | |
24 | 0.30 | viridiflorene | |
36 | 4.30 | viridiflorol | |
J. J. Brophhy, B. J. Goldsack, A. R. Bean, P. I. Forester and B. J. Lepschi, Leaf essential oils of the genus Leptospermum (Myrtaceae) in eastern Australia. Part 5. Leptospermum continentale and allies. Flav. Fragr. J., 14, 98-104 (1999). P&F 26, No. 2, 22, (2001) | |||
leptospermum scoparium var. rotundifolium oil australia | |||
In 1979, Flynn et al. reported that L. scoparium var. rotundifolium contained the following constituents: | |||
# | % | Leftshift | Components |
17 | 0.60 | aromadendrene | |
18 | 1.00 | allo- | aromadendrene |
14 | 0.90 | iso | borneol |
13 | 0.50 | beta- | caryophyllene |
7 | 25.40 | 1,8- | cineole |
21 | 0.30 | cuminyl alcohol | |
9 | 2.30 | para- | cymene |
27 | 4.50 | alpha- | eudesmol |
28 | 7.10 | beta- | eudesmol |
26 | 2.70 | gamma- | eudesmol |
22 | 1.60 | geraniol | |
24 | 1.10 | globulol | |
6 | 1.20 | limonene | |
11 | 0.40 | linalool | |
23 | 0.50 | gamma- | muurolene |
4 | trace | myrcene | |
19 | 0.30 | myrtenol | |
20 | 0.10 | neral | |
2 | 30.80 | alpha- | pinene |
3 | 1.90 | beta- | pinene |
12 | 1.30 | terpinen-4-ol | |
5 | 0.10 | alpha- | terpinene |
8 | 0.30 | gamma- | terpinene |
15 | 4.70 | alpha- | terpineol |
10 | trace | terpinolene | |
16 | 1.30 | alpha- | terpinyl acetate |
1 | 0.10 | alpha- | thujene |
25 | 2.00 | viridiflorol | |
T. M. Flynn, E. V. Lassak and M. P. Smyth, The volatile leaf oils of three species of Leptospermum. Phytochemistry, 18, 2030-2031 (1979). P&F 26, No. 2, 22, (2001) | |||
lippia citriodora oil | |||
# | % | Leftshift | Components |
46 | 0.5 | allo- | aromadendrene |
28 | 0.4 | bornyl butyrate | |
43 | 0.8 | beta- | bourbonene |
48 | 0.1 | delta- | cadinene |
50 | 0.6 | gamma- | cadinene |
59 | 0.9 | T- | cadinol |
41 | 0.1 | carvacrol | |
32 | 0.4 | trans- | carveol |
40 | 0.8 | carvone | |
45 | 0.4 | beta- | caryophyllene |
52 | trace | iso | caryophyllene |
55 | 5.5 | caryophyllene oxide | |
58 | 1.0 | iso | caryophyllene oxide |
53 | 0.4 | alpha- | cedrene |
14 | 12.4 | 1,8- | cineole |
42 | 0.6 | alpha- | copaene |
47 | 0.6 | beta- | cubebene |
51 | trace | cuparene | |
49 | 4.6 | ar- | curcumene |
7 | 0.2 | para- | cymene |
36 | 0.6 | fenchone | |
26 | 9.9 | geranial | |
35 | 0.7 | geranic acid | |
33 | 0.5 | geraniol | |
29 | 1.6 | geranyl acetate | |
30 | 0.9 | geranyl isobutyrate | |
31 | 0.3 | geranyl propionate | |
44 | 0.1 | alpha- | gurjunene |
13 | 0.4 | (Z)-3- | hexen-1-yl butyrate |
12 | 0.3 | hexyl 2-methyl butyrate | |
4 | 3.7 | limonene | |
19 | 1.3 | linalool | |
18 | 0.1 | (E)- | linalool oxide furanoid |
17 | trace | (Z)- | linalool oxide furanoid |
54 | 0.2 | longifolene | |
24 | 0.7 | methyl geranate | |
9 | 7.4 | 6- | methyl-5-hepten-2-one |
56 | 0.5 | alpha- | muurolol |
37 | 0.2 | myrtenal | |
23 | 6.9 | neral | |
57 | 1.2 | nerolidol | |
27 | 0.6 | neryl acetate | |
10 | 0.3 | 3- | octanol |
11 | 0.7 | 1- | octen-3-ol |
5 | trace | alpha- | phellandrene |
1 | 1.4 | alpha- | pinene |
2 | 0.3 | beta- | pinene |
39 | 0.7 | trans- | pinocarveol |
21 | 0.7 | iso | pulegol |
15 | trace | rose oxide | |
3 | 0.2 | sabinene | |
38 | 0.6 | (E)- | sabinene hydrate |
20 | 0.3 | (Z)- | sabinene hydrate |
60 | 5.2 | spathulenol | |
22 | 1.0 | terpinen-4-ol | |
6 | 1.0 | gamma- | terpinene |
25 | 2.3 | alpha- | terpineol |
8 | trace | terpinolene | |
16 | 0.3 | alpha- | thujone |
34 | 0.3 | thymol | |
61 | 0.1 | viridiflorol | |
J. Bellakhdar, A.IL. Idrissi, S. Canigueral, J. Iglesias and R.Vila, Analysis de L'huile essentielle dela verveine odorante (Lippia citriodora H, B, and K). Plant. Medicin Phytother., 26, 269-273 (1993). P&F 23, No. 5, 55, (1998) | |||
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) | |||
marsypianthes chamaedrys (vahl) kuntze oil brazil | |||
# | % | Leftshift | Components |
15 | 1.50 | (E)-alpha- | bergamotene |
19 | 7.20 | bicyclogermacrene | |
6 | 0.30 | bornyl acetate | |
10 | 1.40 | beta- | bourbonene |
21 | 0.50 | gamma- | cadinene |
23 | 2.50 | delta- | cadinene |
2 | 0.30 | camphene | |
13 | 15.10 | beta- | caryophyllene |
26 | 2.60 | caryophyllene oxide | |
14 | 0.20 | beta- | cedrene |
9 | 5.30 | alpha- | copaene |
8 | 0.20 | alpha- | cubebene |
11 | 0.50 | beta- | cubebene |
12 | 2.50 | beta- | elemene |
7 | 2.50 | delta- | elemene |
17 | 0.40 | (E)-beta- | farnesene |
20 | 3.10 | germacrene A | |
25 | 0.30 | germacrene B | |
22 | 1.80 | germacrene C | |
18 | 35.60 | germacrene D | |
16 | 4.40 | alpha- | humulene |
4 | 0.40 | limonene | |
5 | 1.80 | (E)-beta- | ocimene |
1 | 0.70 | alpha- | pinene |
3 | 2.90 | sabinene | |
24 | 0.40 | selina-3,7(11)-diene | |
27 | 0.60 | viridiflorol | |
J. of Ess. Oil Res. 13, No. 1, 45, (2001) | |||
melaleuca alternifolia leaf oil | |||
# | % | Leftshift | Components |
39 | 0.29 | alpha- | amorphene |
33 | 1.61 | aromadendrene | |
35 | 0.69 | allo- | aromadendrene |
40 | 0.13 | bicyclogermacrene | |
36 | 0.51 | 1-epi- | bicyclosesquiphellandrene |
32 | 0.19 | alpha- | bulnesene |
44 | 0.30 | cadina-1,4-diene | |
42 | 1.86 | delta- | cadinene |
43 | 0.27 | calamenene | |
31 | 0.44 | beta- | caryophyllene |
11 | trace | 1,4- | cineole |
16 | 3.04 | 1,8- | cineole |
25 | 0.17 | alpha- | copaene |
26 | 0.09 | alpha- | cubebene |
49 | 0.52 | cubenol | |
27 | trace | para- | cymen-8-ol |
9 | 4.96 | para- | cymene |
17 | 0.17 | alpha-para- | dimethyl styrene |
48 | 0.80 | globulol | |
46 | 0.18 | epi- | globulol |
28 | 0.45 | alpha- | gurjunene |
29 | trace | beta- | gurjunene |
34 | 0.15 | gamma- | gurjunene |
8 | trace | (-)- | limonene |
10 | 0.51 | (+)- | limonene |
18 | trace | (-)- | linalool |
19 | trace | (+)- | linalool |
30 | trace | beta- | maaliene |
38 | trace | methyl eugenol | |
37 | 0.26 | alpha- | muurolene |
4 | 0.46 | myrcene | |
45 | 0.06 | palustrol | |
5 | trace | (-)-alpha- | phellandrene |
12 | 0.22 | (-)-beta- | phellandrene |
6 | trace | (+)-alpha- | phellandrene |
13 | 0.36 | (+)-beta- | phellandrene |
2 | 0.18 | (-)-alpha- | pinene |
3 | 1.68 | (+)-alpha- | pinene |
20 | trace | sabinene hydrate | |
47 | 0.15 | spathulenol | |
22 | 13.13 | (-)- | terpinen-4-ol |
21 | 24.73 | (+)- | terpinen-4-ol |
7 | 9.90 | alpha- | terpinene |
14 | 21.15 | gamma- | terpinene |
23 | 0.69 | (-)-alpha- | terpineol |
24 | 2.03 | (+)-alpha- | terpineol |
15 | 3.18 | terpinolene | |
1 | 0.44 | alpha- | thujene |
41 | 1.75 | viridiflorene | |
50 | 0.58 | viridiflorol | |
D. N. Leach, S. G. Wyllie, J. G. Hall and I. Kyratzis, Enantiomeric composition of the principal components of the oil of Melaleuca alternifolia. J. Agric. Food Sci., 41, 1627-1632 (1993). P&F 22, No. 2, 59, (1997) | |||
melaleuca cajuputi oil | |||
# | % | Leftshift | Components |
15 | 0.9 | aromadendrene | |
22 | 0.6 | bicyclogermacrene | |
14 | 1.1 | beta- | caryophyllene |
24 | 1.1 | caryophyllene oxide | |
8 | 48.8 | 1,8- | cineole |
10 | 0.6 | para- | cymene |
17 | 0.1 | beta- | farnesene |
25 | 2.1 | globulol | |
12 | 0.1 | alpha- | gurjunene |
16 | 0.4 | alpha- | humulene |
7 | 4.1 | limonene | |
13 | 0.1 | linalool | |
23 | 0.1 | palustrol | |
5 | 0.5 | alpha- | phellandrene |
1 | 1.0 | alpha- | pinene |
3 | 1.1 | beta- | pinene |
4 | 0.1 | sabinene | |
21 | 0.8 | alpha- | selinene |
20 | 0.9 | beta- | selinene |
27 | 8.3 | spathulenol | |
6 | 0.1 | alpha- | terpinene |
9 | 0.2 | gamma- | terpinene |
19 | 5.5 | alpha- | terpineol |
11 | 0.1 | terpinolene | |
2 | 0.2 | alpha- | thujene |
18 | 6.1 | viridiflorene | |
26 | 1.3 | viridiflorol | |
J. J. Brophy and J. C. Doran, Essential oils of tropical Asteromyrtus, Callistemon and Melaleuca species. ACIAR monograph, Australian Centre for International Agriculture, Canberra, Australia (1996). P&F 25, No. 1, 33, (2000) | |||
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 herb oil idaho | |||
Kubeczka (1993) compared the chemical compositions of peppermint oil produced from two different regions in the United States with the composition of an oil noted as Mitcham oil (origin unknown). His results are shown in Table VI. Note: Only the Peppermint Oil from Michigan analysis will be shown here: | |||
# | % | Leftshift | Components |
2 | 0.01 | camphene | |
22 | 2.24 | beta- | caryophyllene |
8 | 7.02 | 1,8- | cineole + beta-phellandrene |
12 | 0.24 | para- | cymene |
27 | 1.27 | germacrene D | |
7 | 2.44 | limonene | |
19 | 0.31 | linalool | |
17 | 2.48 | menthofuran | |
24 | 38.01 | menthol | |
21 | 3.25 | neo | menthol |
16 | 23.14 | menthone | |
18 | 3.08 | iso | menthone |
20 | 3.69 | menthyl acetate | |
5 | 0.33 | myrcene | |
9 | 0.41 | (Z)-beta- | ocimene |
11 | 0.11 | (Z)-beta- | ocimene |
14 | 0.30 | 3- | octanol |
1 | 1.34 | alpha- | pinene |
3 | 1.65 | beta- | pinene |
28 | 0.46 | piperitone | |
23 | 0.78 | iso(iso) | pulegol |
25 | 1.38 | pulegone | |
4 | 0.77 | sabinene | |
15 | 1.14 | (E)- | sabinene hydrate |
6 | 0.43 | alpha- | terpinene |
10 | 0.68 | gamma- | terpinene |
26 | 0.15 | alpha- | terpineol |
13 | 0.18 | terpinolene | |
29 | 0.15 | viridiflorol | |
K. H. Kubeczka, Moglichkeiten und grenzen der qualitatsbeurteilung arzneilich verwendeter atherischer Ole. In: Atherische Ole-anspruch und wirklichkeit. Edit., R. Carle, pp. 85-102, Wissenschaft, Verlag. mbh Stuttgart (1993). P&F 22, No. 4, 57, (1997) | |||
mentha x piperita oil mongolia | |||
# | % | Leftshift | Components |
29 | 0.05 | borneol | |
16 | 0.31 | beta- | bourbonene + benzaldehyde |
33 | 0.16 | delta- | cadinene |
17 | 0.42 | camphor | |
32 | 0.16 | carvone | |
3 | 2.47 | 1,8- | cineole |
4 | 0.22 | para- | cymene |
34 | 0.05 | geraniol | |
30 | 0.05 | germacrene D | |
13 | 0.06 | (Z)-3- | hexen-1-yl isovalerate |
27 | 0.18 | alpha- | humulene |
35 | 0.04 | (Z)- | jasmone |
2 | 0.38 | limonene | |
18 | 0.28 | linalool | |
10 | trace | (Z)- | linalool oxide furanoid |
14 | 0.07 | menthofuran | |
25 | 35.07 | menthol | |
21 | 3.74 | neo | menthol |
24 | 0.39 | neoiso | menthol |
11 | 32.22 | menthone | |
15 | 5.43 | iso | menthone |
20 | 9.39 | menthyl acetate | |
5 | 0.07 | 2- | methyl butyl 2-methyl butyrate |
6 | 0.08 | 2- | methyl butyl isovalerate |
36 | 0.06 | (Z)- | nerolidol |
8 | 0.21 | 3- | octanol |
9 | 0.30 | 1- | octen-3-ol |
7 | 0.07 | 3- | octyl acetate |
1 | 0.04 | beta- | pinene |
31 | 1.32 | piperitone | |
26 | 0.22 | pulegone | |
23 | 0.05 | rosefuran oxide | |
12 | trace | (E)- | sabinene hydrate |
19 | 0.24 | (Z)- | sabinene hydrate |
22 | 0.07 | terpinen-4-ol | |
28 | 0.06 | alpha- | terpineol |
37 | 0.09 | viridiflorol | |
D. Karasawa, S. Shatar, A. Erdenechimeg, Y. Okamoto, H. Tateha and S, Shimizu, A study on Mongolian mints. A new chemotype from Mentha asiatia Borriss and constituents of M. arvensis L. and M. piperita L. J. Essent. Oil. Res., 7, 255-260 (1995). P&F 22, No. 4, 57, (1997) | |||
microstrobos niphophilus leaf oil australia | |||
# | % | Leftshift | Components |
16 | 1.00 | bicyclogermacrene | |
17 | 0.60 | delta- | cadinene |
24 | 0.70 | T- | cadinol |
27 | 2.10 | alpha- | cadinol |
4 | 0.90 | camphene | |
18 | 0.60 | citronellol | |
20 | 0.20 | epi- | cubenol |
19 | 0.30 | cubenol | |
12 | 0.10 | para- | cymene |
3 | trace | fenchene | |
15 | 0.30 | germacrene D | |
21 | 0.40 | globulol | |
9 | 30.50 | limonene | |
25 | 0.80 | T- | muurolol |
26 | 0.30 | alpha- | muurolol |
7 | 20.80 | myrcene | |
10 | 0.70 | beta- | phellandrene |
2 | 26.90 | alpha- | pinene |
5 | 0.90 | beta- | pinene |
6 | 0.80 | sabinene | |
23 | 3.60 | spathulenol | |
8 | 0.50 | alpha- | terpinene |
11 | 0.70 | gamma- | terpinene |
14 | 0.40 | alpha- | terpineol |
13 | 0.50 | terpinolene | |
1 | 0.80 | tricyclene | |
22 | 0.30 | viridiflorol | |
J. of Ess. Oil Res. 13, No. 2, 108, (2001) | |||
ocimum basilicum flower oil | |||
# | % | Leftshift | Components |
25 | 0.01 | (E)- | anethole |
2 | 0.10 | camphene | |
31 | 0.01 | cedrol | |
7 | 3.30 | 1,8- | cineole |
17 | 0.01 | beta- | copaene |
22 | 0.77 | alpha- | cubebene |
27 | 0.02 | dibutyl octane dioate | |
18 | 0.73 | beta- | elemene |
32 | 0.06 | beta- | eudesmol |
23 | trace | germacrene B | |
24 | 0.05 | beta- | gurjunene |
9 | trace | hexanol | |
10 | 0.03 | 3- | hexen-1-ol |
28 | 0.11 | beta- | himachalene |
5 | 0.01 | limonene | |
16 | 1.48 | linalool | |
19 | 85.52 | methyl chavicol | |
26 | 0.56 | methyl eugenol | |
12 | 0.08 | 6- | methyl-3-heptanone |
4 | 0.05 | myrcene | |
15 | 0.01 | (Z)-allo- | ocimene |
8 | 2.60 | (Z)-beta- | ocimene |
11 | 0.02 | 3- | octanol |
30 | 0.79 | beta- | patchoulene |
6 | 0.03 | alpha- | phellandrene |
1 | 0.04 | alpha- | pinene |
3 | 0.12 | sabinene | |
13 | 0.01 | sabinene hydrate | |
20 | 2.51 | beta- | selinene |
21 | 0.72 | alpha- | terpineol |
14 | 0.08 | terpinolene | |
29 | 0.02 | viridiflorol | |
S.-J. Tsai and L.-Y. Sheen, Essential oil of Ocimum basllicum L cultivated in Taiwan. In: Trends in Food Science. Edits., L W. Sze and F. C. Woo, pp 66-70, Proceedings of the 7th World Congress of Food Science and Technology, Singapore Institute of Food Science and Technology, Singapore (1987). P&F 17, No. 4, 39, (1992) | |||
ocimum basilicum leaf oil | |||
# | % | Leftshift | Components |
25 | 0.01 | (E)- | anethole |
2 | 0.35 | camphene | |
30 | 0.02 | cedrol | |
7 | 5.47 | 1,8- | cineole |
17 | 0.01 | beta- | copaene |
22 | 0.66 | alpha- | cubebene |
18 | 0.90 | beta- | elemene |
31 | 0.08 | beta- | eudesmol |
23 | 0.01 | germacrene B | |
24 | 0.08 | beta- | gurjunene |
9 | trace | hexanol | |
10 | 0.03 | 3- | hexen-1-ol |
27 | 0.13 | beta- | himachalene |
5 | 0.02 | limonene | |
16 | 0.37 | linalool | |
19 | 84.69 | methyl chavicol | |
26 | 2.44 | methyl eugenol | |
12 | 0.17 | 6- | methyl-3-heptanone |
4 | 0.13 | myrcene | |
15 | 0.02 | (Z)-allo- | ocimene |
8 | 1.33 | (Z)-beta- | ocimene |
11 | 0.02 | 3- | octanol |
29 | 0.90 | beta- | patchoulene |
6 | 0.08 | alpha- | phellandrene |
1 | 0.13 | alpha- | pinene |
3 | 0.22 | sabinene | |
13 | 0.01 | sabinene hydrate | |
20 | 0.54 | beta- | selinene |
21 | 0.90 | alpha- | terpineol |
14 | trace | terpinolene | |
28 | 0.02 | viridiflorol | |
S.-J. Tsai and L.-Y. Sheen, Essential oil of Ocimum basllicum L cultivated in Taiwan. In: Trends in Food Science. Edits., L W. Sze and F. C. Woo, pp 66-70, Proceedings of the 7th World Congress of Food Science and Technology, Singapore Institute of Food Science and Technology, Singapore (1987). P&F 17, No. 4, 39, (1992) | |||
phoebe porosa mez. oil brazil | |||
# | % | Leftshift | Components |
31 | 0.66 | 1,10- | aristolene |
35 | 0.11 | aromadendrene | |
39 | 2.67 | allo- | aromadendrene |
33 | 2.54 | (E)-alpha- | bergamotene |
28 | 0.51 | (Z)-alpha- | bergamotene |
70 | 3.33 | alpha- | bisabolol |
69 | 2.50 | beta- | bisabolol |
15 | 0.01 | borneol | |
49 | 0.11 | cadina-1(10),4-diene | |
48 | 3.28 | delta- | cadinene |
46 | 1.20 | gamma- | cadinene |
50 | 1.06 | alpha- | calacorene |
59 | 1.20 | alpha- | calacorene epoxide |
47 | 1.47 | calamenene | |
3 | 0.03 | camphene | |
8 | 0.20 | delta-3- | carene |
30 | 1.15 | beta- | caryophyllene |
54 | 1.09 | beta- | caryophyllene oxide |
29 | 0.11 | alpha- | cedrene |
11 | 0.45 | 1,8- | cineole |
25 | 6.25 | alpha- | copaene |
21 | 0.42 | alpha- | cubebene |
41 | 2.49 | beta- | curcumene |
23 | 0.33 | cyclosativene | |
9 | 0.38 | para- | cymene |
27 | 0.44 | beta- | elemene |
20 | 0.06 | delta- | elemene |
51 | 0.59 | elemol | |
60 | 8.78 | eremoligenol | |
61 | 2.55 | eremophil-9,10-en-11-ol | |
58 | 2.12 | 10-epi-gamma- | eudesmol |
68 | 2.36 | 7-epi-delta- | eudesmol |
67 | 2.37 | alpha- | eudesmol |
65 | 6.86 | beta- | eudesmol |
62 | 0.12 | gamma- | eudesmol |
37 | 1.28 | (E)-beta- | farnesene |
34 | 0.63 | (Z)-beta- | farnesene + alpha-amorphene |
18 | 0.15 | geraniol | |
22 | 0.05 | geranyl acetate | |
36 | 0.23 | guaia-3,7-diene | |
32 | 0.50 | gamma- | gurjunene |
63 | 3.25 | hinesol | |
38 | 1.36 | alpha- | humulene |
56 | 1.08 | humulene oxide I | |
57 | 0.70 | ledol | |
10 | 0.10 | limonene | |
14 | 0.11 | linalool | |
45 | 0.10 | alpha- | muurolene |
40 | 0.22 | gamma- | muurolene |
6 | 0.04 | myrcene | |
52 | 0.74 | (E)- | nerolidol |
7 | 0.08 | alpha- | phellandrene |
2 | 1.29 | alpha- | pinene |
5 | 0.34 | beta- | pinene |
4 | 0.03 | sabinene | |
19 | 0.70 | safrole | |
43 | 1.07 | alpha- | selinene |
42 | 1.15 | beta- | selinene |
53 | 0.66 | spathulenol | |
16 | 0.29 | terpinen-4-ol | |
12 | 0.03 | gamma- | terpinene |
17 | 0.07 | alpha- | terpineol |
13 | 0.01 | terpinolene | |
1 | 0.04 | alpha- | thujene |
26 | 1.95 | sesqui | thujene |
64 | 0.78 | torreyol | |
66 | 7.55 | valerianol | |
44 | 0.77 | viridiflorene | |
55 | 1.19 | viridiflorol | |
24 | 0.44 | alpha- | ylangene |
T. Reynolds and G. Kite, Volatile constituents of Phoebe pomsa Mez. J. Essent. Oil Res., 7, 415-418 (1995). P&F 20, No. 6, 35, (1995) | |||
polyalthia australis (benth.) jessup leaf oil australia | |||
# | % | Leftshift | Components |
13 | 0.40 | allo- | aromadendrene |
11 | 0.20 | aromadendrene | |
3 | 0.20 | bicycloelemene | |
21 | 4.30 | bicyclogermacrene | |
5 | 0.30 | beta- | bourbonene |
24 | 0.30 | cadina-1,4-diene | |
23 | 0.50 | gamma- | cadinene |
22 | 1.20 | delta- | cadinene |
32 | 0.90 | T- | cadinol |
35 | 0.80 | alpha- | cadinol |
26 | 0.30 | calacorene | |
25 | 0.30 | calamenene | |
10 | 7.50 | beta- | caryophyllene |
27 | 9.50 | caryophyllene oxide | |
4 | 2.70 | alpha- | copaene |
1 | 0.30 | alpha- | cubebene |
7 | 0.30 | beta- | cubebene |
9 | 1.00 | beta- | elemene |
2 | 0.40 | delta- | elemene |
18 | 6.80 | germacrene D | |
29 | 1.50 | globulol | |
6 | trace | alpha- | gurjunene |
15 | 2.40 | alpha- | humulene |
33 | 1.10 | T- | muurolol |
34 | 0.60 | alpha- | muurolol |
19 | 1.50 | beta- | selinene |
20 | 1.10 | alpha- | selinene |
31 | 18.60 | spathulenol | |
12 | 1.10 | unknown a | |
14 | 0.10 | unknown b | |
16 | 0.90 | unknown c | |
28 | 2.20 | unknown d | |
17 | 0.60 | viridiflorene | |
30 | 1.10 | viridiflorol | |
8 | 0.30 | beta- | ylangene |
J. of Ess. Oil Res. 13, No. 1, 5, (2001) | |||
polyalthia michaelii leaf oil australia | |||
# | % | Leftshift | Components |
9 | 0.20 | bicycloelemene | |
23 | 4.00 | bicyclogermacrene | |
11 | 0.20 | beta- | bourbonene |
25 | 0.40 | gamma- | cadinene |
24 | 0.80 | delta- | cadinene |
2 | 0.60 | delta-3- | carene |
15 | 1.70 | beta- | caryophyllene |
26 | 3.40 | caryophyllene oxide | |
10 | 0.20 | alpha- | copaene |
7 | 0.20 | alpha- | cubebene |
12 | 0.20 | beta- | cubebene |
27 | 0.30 | cubenol | |
5 | trace | para- | cymene |
14 | 0.60 | beta- | elemene |
8 | 0.40 | delta- | elemene |
16 | 0.10 | gamma- | elemene |
20 | 0.70 | germacrene D | |
28 | 2.40 | globulol | |
18 | 0.50 | alpha- | humulene |
4 | 0.10 | limonene | |
3 | trace | myrcene | |
1 | 0.30 | alpha- | pinene |
21 | 0.40 | beta- | selinene |
22 | 0.40 | alpha- | selinene |
30 | 42.20 | spathulenol | |
6 | trace | terpinolene | |
13 | 0.20 | unknown a | |
17 | 0.30 | unknown b | |
19 | 0.90 | unknown c | |
29 | 0.80 | viridiflorol | |
J. of Ess. Oil Res. 13, No. 1, 5, (2001) | |||
sage oil dalmatian | |||
As part of a study of the essential oils of Salvia species, Mathé et al. (1997) analyzed an oil of S. officinalis using GC and GC/MS. The components identified in this oil were as follows: | |||
# | % | Leftshift | Components |
0.20 | alpha- | thujene | |
1.10 | alpha- | pinene | |
2.30 | beta- | pinene | |
0.90 | myrcene | ||
0.20 | alpha- | terpinene | |
0.20 | para- | cymene | |
1.30 | limonene | ||
3.50 | 1,8- | cineole | |
0.50 | gamma- | terpinene | |
0.40 | terpinolene | ||
36.00 | alpha- | thujone | |
9.70 | beta- | thujone | |
9.60 | camphor gum | ||
8.40 | borneol | ||
0.50 | terpinen-4-ol | ||
0.10 | alpha- | terpineol | |
4.90 | bornyl acetate | ||
0.70 | beta- | caryophyllene | |
4.20 | alpha- | humulene | |
0.20 | caryophyllene oxide | ||
4.60 | viridiflorol | ||
0.80 | humulene oxide | ||
0.90 | sclarene | ||
salvia lavandulifolia vahl. leaf oil | |||
Also in 1999, Guillén and Manzanos examined the composition of a methylene chloride extract of the aerial parts of S. lavandulaefolia using CC and CC/MS. The identified components are summarized as follows: | |||
# | % | Leftshift | Components |
0.50 | alpha- | pinene | |
0.40 | camphene | ||
0.10 | beta- | pinene | |
0.20 | myrcene | ||
0.10 | alpha- | terpinene | |
0.10 | para- | cymene | |
0.30 | limonene | ||
2.80 | 1,8- | cineole | |
0.10 | linalool | ||
2.90 | camphor | ||
1.50 | borneol | ||
0.10 | terpinen-4-ol | ||
0.80 | alpha- | terpineol | |
0.10 | geraniol | ||
0.70 | bornyl acetate | ||
0.10 | alpha- | cubebene | |
0.20 | alpha- | copaene | |
0.10 | alpha- | gurjunene | |
0.10 | aromadendrene | ||
0.60 | alpha- | humulene | |
0.10 | allo- | aromadendrene | |
0.10 | ar- | curcumene | |
0.20 | beta- | selinene | |
0.10 | alpha- | selinene | |
0.10 | alpha- | muurolene | |
0.40 | gamma- | cadinene | |
0.60 | delta- | cadinene | |
0.10 | cadina-1,4-diene | ||
0.10 | spathulenol | ||
0.60 | caryophyllenol II | ||
3.30 | viridiflorol | ||
0.40 | beta- | gurjunene epoxide | |
0.10 | caryophyllenol | ||
0.80 | beta- | caryophyllene | |
0.30 | aristolenol | ||
0.10 | neo | phytadiene | |
0.10 | 6,10,14- | trimethyl-2-pentadecanone | |
0.10 | pimara-8(9),15-diene | ||
0.20 | abieta-8,11,13-trienal | ||
0.10 | abieta-6,8,11,13-tetraen-12-ol | ||
0.80 | ferruginol | ||
0.80 | abieta-8,11,13-trien-19-ol | ||
6.50 | abieta-8,11,13-trien-19-oic acid | ||
0.60 | barbatusol | ||
0.70 | 12- | hydroxyabeita-8,11,13-trien-12-ol-20-al | |
1.50 | rosmadial | ||
13.90 | dimethyl salvicanol | ||
2.70 | carnosic acid | ||
0.20 | squalene | ||
0.30 | cirsimaritin | ||
1.20 | beta- | sitosterol | |
0.80 | beta- | amyrin | |
1.80 | 3,5- | dihydroxy-6,7,8-trimethoxyflavone | |
0.30 | hexadecanoic acid | ||
0.10 | oleic acid | ||
0.70 | pentacosane | ||
0.30 | heptacosane | ||
0.30 | octacosane | ||
0.10 | ethyl hexacosane | ||
2.30 | nonacosane | ||
0.10 | methyl octacosane | ||
0.20 | triacontane | ||
0.30 | ethyl octacosane | ||
0.10 | methyl nonacosane | ||
2.70 | henitriacontane | ||
0.10 | ethyl nonacosane | ||
0.50 | methyl triacontane | ||
1.00 | dotriacontane | ||
0.80 | ethyl triacontane | ||
0.20 | methyl henitriacontane | ||
5.30 | tritriacotane | ||
1.90 | tetratriacotane | ||
0.30 | ethyl dotriacotane | ||
0.60 | pentatriacotane | ||
salvia lavandulifolia vahl. leaf oil spain | |||
Six years later, Mathé etal. (1997) used a combination of CC and CC/MS to analyze an oil of Salvia lavandulaefolia. It was found to contain the following constituents: | |||
# | % | Leftshift | Components |
0.40 | alpha- | thujene | |
2.70 | alpha- | pinene | |
6.80 | beta- | pinene | |
5.80 | myrcene | ||
0.40 | alpha- | terpinene | |
0.40 | para- | cymene | |
47.00 | 1,8- | cineole | |
1.10 | gamma- | terpinene | |
0.50 | terpinolene | ||
12.60 | camphor | ||
2.20 | borneol | ||
0.70 | terpinen-4-ol | ||
0.30 | alpha- | terpineol | |
0.60 | bornyl acetate | ||
4.90 | beta- | caryophyllene | |
1.00 | alpha- | humulene | |
0.30 | caryophyllene oxide | ||
4.50 | viridiflorol | ||
salvia officinalis oil albania | |||
Dobos et al. (1997) analyzed an oil produced from S. officinalis grown in Albania. The oil, which was analyzed by a combination of CC and GC/MS was found to possess the following constituents: | |||
# | % | Leftshift | Components |
20 | 8.70 | borneol | |
23 | 5.00 | bornyl acetate | |
26 | trace | beta- | bourbonene |
33 | 0.10 | delta- | cadinene |
4 | 2.80 | camphene | |
19 | 9.70 | camphor | |
28 | 0.70 | beta- | caryophyllene |
34 | 0.10 | caryophyllene oxide | |
11 | 3.40 | 1,8- | cineole |
25 | trace | alpha- | copaene |
9 | 0.20 | para- | cymene |
31 | 0.10 | germacrene B | |
29 | 4.30 | alpha- | humulene |
36 | 0.70 | humulene oxide | |
27 | 1.00 | jasmone | |
10 | 1.30 | limonene | |
30 | 0.10 | gamma- | muurolene |
6 | 0.90 | myrcene | |
13 | 0.10 | (E)-beta- | ocimene |
12 | 0.50 | (Z)-beta- | ocimene |
7 | 1.00 | alpha- | phellandrene |
2 | 1.10 | alpha- | pinene |
3 | 2.30 | beta- | pinene |
5 | 0.30 | sabinene | |
18 | 0.30 | (E)- | sabinol |
37 | 1.90 | sclarene | |
21 | 0.50 | terpinen-4-ol | |
8 | 0.20 | alpha- | terpinene |
14 | 0.50 | gamma- | terpinene |
22 | 0.10 | alpha- | terpineol |
15 | 0.40 | terpinolene | |
1 | 0.20 | alpha- | thujene |
16 | 35.90 | alpha- | thujone |
17 | 9.70 | beta- | thujone |
24 | 0.30 | thujyl acetate | |
32 | 0.10 | valencene | |
35 | 4.60 | viridiflorol | |
A. Dobos, G. Nagy, E. M. Genova, I. Mathe, V. Miklossy-Vary and G. Janicsak, Comparative analysis of Salvia officinalis and Salvia tomentosa essential oils. P&F 26, No. 3, 66, (2001) | |||
salvia officinalis oil cuba | |||
Sage oil produced from S. officinalis grown in Cuba was analyzed by CC/MS. The constituents characterized in this oil by Pino et al. (1997) were as follows: | |||
# | % | Leftshift | Components |
21 | 3.81 | borneol | |
2 | 2.48 | camphene | |
15 | 10.36 | camphor | |
22 | 0.21 | carvone | |
18 | 5.51 | beta- | caryophyllene |
23 | 0.96 | caryophyllene oxide | |
7 | 1.81 | 1,8- | cineole |
10 | 0.35 | para- | cymene |
17 | 2.24 | alpha- | fenchyl acetate |
20 | 9.72 | alpha- | humulene |
24 | 2.21 | humulene oxide I | |
6 | 1.69 | limonene | |
16 | 0.26 | linalool | |
28 | 14.74 | manool | |
14 | 0.11 | menthone | |
27 | 0.06 | methyl (Z)-9-hexadecenoate | |
26 | 0.26 | methyl palmitate | |
29 | 0.11 | methyl stearate | |
8 | 0.19 | (Z)-beta- | ocimene |
4 | 1.16 | alpha- | phellandrene |
1 | 0.81 | alpha- | pinene |
3 | 0.96 | beta- | pinene |
19 | 0.86 | pulegone | |
5 | 0.12 | alpha- | terpinene |
9 | 0.29 | gamma- | terpinene |
11 | 0.22 | terpinolene | |
12 | 12.95 | alpha- | thujone |
13 | 10.89 | beta- | thujone |
25 | 13.46 | viridiflorol | |
J. A. Pino, M. Estarron and V. Fuentes, Essential oil of sage (salvia officinalis L.) grown in Cuba. J. Essent. Oil Res., 9, 221-222 (1997). P&F 26, No. 3, 66, (2001) | |||
salvia officinalis oil cuba | |||
# | % | Leftshift | Components |
29 | 0.11 | methyl (E)-9-octadecenoate | |
21 | 3.81 | borneol | |
2 | 2.48 | camphene | |
15 | 10.36 | camphor | |
22 | 0.21 | carvone | |
18 | 5.51 | beta- | caryophyllene |
23 | 0.96 | caryophyllene oxide | |
7 | 1.81 | 1,8- | cineole |
10 | 0.35 | para- | cymene |
17 | 2.24 | alpha- | fenchyl acetate |
20 | 9.72 | alpha- | humulene |
24 | 2.21 | humulene oxide I | |
6 | 1.69 | limonene | |
16 | 0.26 | linalool | |
28 | 14.74 | manool | |
14 | 0.11 | menthone | |
27 | 0.06 | methyl (Z)-9-hexadecenoate | |
26 | 0.26 | methyl hexadecanoate | |
8 | 0.19 | (Z)-beta- | ocimene |
4 | 1.16 | alpha- | phellandrene |
1 | 0.81 | alpha- | pinene |
3 | 0.96 | beta- | pinene |
19 | 0.86 | pulegone | |
5 | 0.12 | alpha- | terpinene |
9 | 0.29 | gamma- | terpinene |
11 | 0.22 | terpinolene | |
12 | 12.95 | alpha- | thujone |
13 | 10.89 | beta- | thujone |
25 | 13.46 | viridiflorol | |
salvia officinalis oil hydrodistillation france | |||
Six years later, Milhau et al. (1997) used GC/MS to examine an oil of S. officinalis produced by hydrodistillation of plants cultivated in France. The components identified in this study were as follows: | |||
# | % | Leftshift | Components |
12 | 1.90 | borneol | |
15 | 2.00 | bornyl acetate | |
2 | 9.10 | camphene | |
11 | 2.00 | camphor | |
16 | 2.60 | beta- | caryophyllene |
7 | 20.50 | 1,8- | cineole |
6 | 1.50 | para- | cymene |
17 | 2.90 | alpha- | humulene |
5 | 1.60 | myrcene | |
1 | 5.90 | alpha- | pinene |
4 | 2.20 | beta- | pinene |
3 | 0.40 | sabinene | |
13 | 0.30 | terpinen-4-ol | |
8 | 0.20 | gamma- | terpinene |
14 | 0.70 | alpha- | terpineol |
9 | 22.80 | alpha- | thujone |
10 | 3.70 | beta- | thujone |
18 | 0.60 | viridiflorol | |
G. Milhau, A. Valentin, F. Benoit, M. Mallie, J-M. Bastide, Y. Pelissier and J-M. Bessiere, In vitro antimalarial activity of eight essential oils. J. Essent. Oil Res., 9, 329-333 (1997). P&F 26, No. 3, 66, (2001) | |||
salvia officinalis oil lithuania | |||
# | % | Leftshift | Components |
14 | 2.04 | borneol | |
16 | 1.34 | bornyl acetate | |
3 | 5.14 | camphene | |
13 | 11.63 | camphor | |
17 | 6.57 | beta- | caryophyllene |
10 | 10.06 | 1,8- | cineole |
8 | 0.60 | para- | cymene |
18 | 5.24 | alpha- | humulene |
9 | 1.67 | limonene | |
15 | 0.20 | methyl chavicol | |
6 | 1.00 | myrcene | |
2 | 6.05 | alpha- | pinene |
5 | 2.11 | beta- | pinene |
4 | 0.09 | sabinene | |
7 | 0.24 | alpha- | terpinene |
1 | 0.15 | alpha- | thujene |
11 | 19.58 | alpha- | thujone |
12 | 13.43 | beta- | thujone |
19 | 4.58 | viridiflorol | |
P. R. Venskutonis, Essential oil composition of some herbs cultivated in Lithuania. In: Flavours, Fragrances and Essential Oils. Proceedings of the 13th IInternational Congress of Flavours, Fragrances and Essential oils, Istanbul, Turkey, Oct. 1995, Edit., K. H. C. Baser, Vol.2, pp. 108-123, Anadolu Univ. Press, Eskisehir, Turkey (1995). P&F 23, No. 2, 47, (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 reunion | |||
Comparative percentage composition of Salvia offlcinalis oil produced from plants grown in two areas of Egypt, Giza oil | |||
# | % | Leftshift | Components |
1.87 | borneol | ||
2.27 | bornyl acetate | ||
20.18 | camphor | ||
1.32 | beta- | caryophyllene | |
3.61 | alpha- | humulene | |
4.04 | limonene | ||
trace | linalool | ||
0.19 | 7- | methyl-3,4-octadiene | |
0.14 | myrtenol | ||
1.18 | beta- | phellandrene | |
2.71 | alpha- | pinene | |
0.72 | beta- | pinene | |
0.76 | pinocamphone | ||
1.63 | sabinene | ||
0.56 | terpinen-4-ol | ||
0.32 | gamma- | terpinene | |
0.24 | alpha- | terpineol | |
0.30 | terpinolene | ||
2.52 | alpha- | thujene | |
33.25 | alpha- | thujone | |
12.97 | beta- | thujone | |
0.13 | tricyclene | ||
0.17 | caryophyllene oxide | ||
2.71 | manool | ||
3.77 | viridiflorol | ||
probably misidentification of cis-p-menth-2-en-1-ol probably 3-pinanone, also known as isopinocamphone | |||
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. | |||
satureja viminea oil costa rica | |||
# | % | Leftshift | Components |
30 | trace | beta- | bourbonene |
36 | 0.60 | delta- | cadinene |
35 | 0.20 | gamma- | cadinene |
42 | 0.10 | alpha- | cadinol |
40 | trace | T- | cadinol |
5 | trace | camphene | |
32 | 3.60 | beta- | caryophyllene |
13 | 0.10 | 1,8- | cineole |
29 | 0.30 | alpha- | copaene |
11 | trace | para- | cymene |
17 | trace | para- | cymenene |
31 | trace | alpha- | gurjunene |
1 | trace | (E)-2- | hexenal |
2 | 0.10 | (Z)-3- | hexen-1-ol |
33 | 1.30 | alpha- | humulene |
12 | 1.00 | limonene | |
18 | 0.50 | linalool | |
19 | 40.00 | para- | menth-3-en-8-ol |
15 | 5.20 | para- | mentha-3,8-diene |
20 | 0.10 | menthofuran | |
34 | 0.60 | gamma- | muurolene |
41 | 0.10 | T- | muurolol |
8 | trace | myrcene | |
23 | 0.20 | myrtenal | |
27 | 0.10 | neral | |
37 | 0.20 | (E)- | nerolidol |
28 | trace | neryl acetate | |
9 | trace | alpha- | phellandrene |
4 | 0.40 | alpha- | pinene |
7 | 0.50 | beta- | pinene |
26 | 0.70 | piperitenone | |
25 | 35.30 | pulegone | |
21 | 0.60 | iso | pulegone |
6 | 0.20 | sabinene | |
38 | 0.50 | spathulenol | |
22 | 0.10 | terpinen-4-ol | |
10 | trace | alpha- | terpinene |
14 | trace | gamma- | terpinene |
24 | 0.10 | alpha- | terpineol |
16 | 0.90 | terpinolene | |
3 | 0.10 | alpha- | thujene |
39 | trace | viridiflorol | |
J. of Ess. Oil Res. 12, No. 3, 279, (2000) | |||
sundacarpus amarus (blume) c.n. page leaf oil australia | |||
# | % | Leftshift | Components |
7 | 5.90 | aromadendrene | |
9 | 0.20 | allo- | aromadendrene |
2 | 0.30 | bicycloelemene | |
13 | 10.40 | bicyclogermacrene | |
8 | 0.10 | alpha- | bulnesene |
14 | 1.30 | delta- | cadinene |
15 | 2.60 | gamma- | cadinene |
6 | 1.00 | beta- | caryophyllene |
3 | trace | alpha- | copaene |
20 | 0.10 | cubeban-11-ol | |
1 | trace | alpha- | cubebene |
4 | 0.10 | beta- | cubebene |
21 | 3.80 | globulol | |
17 | 0.10 | epi- | globulol |
10 | 0.90 | alpha- | humulene |
18 | 0.10 | ledol | |
16 | 0.10 | palustrol | |
19 | 0.10 | iso | propyl myristate |
12 | trace | alpha- | selinene |
11 | 67.70 | beta- | selinene |
23 | 0.20 | spathulenol | |
22 | 0.30 | viridiflorol | |
5 | 0.10 | beta- | ylangene |
J. of Ess. Oil Res. 12, No. 4, 421, (2000) | |||
tanacetum vulgare oil | |||
# | % | Leftshift | Components |
16 | 1.60 | artemisyl alcohol | |
12 | 23.50 | artemisyl ketone | |
18 | 0.10 | beta- | bourbonene |
31 | trace | delta- | cadinene |
3 | 0.60 | camphene | |
19 | 6.00 | camphor | |
29 | 6.60 | carvone | |
23 | 0.30 | beta- | caryophyllene |
8 | 0.70 | 1,8- | cineole |
17 | 0.10 | alpha- | copaene |
20 | 0.10 | beta- | copaene |
10 | 0.80 | para- | cymene |
28 | 1.50 | germacrene D | |
7 | 0.20 | limonene | |
26 | 0.20 | menthol | |
24 | 0.10 | neo | menthol |
1 | 0.10 | (E)-2- | methyl-3-methylene hept-5-ene |
6 | 0.10 | alpha- | phellandrene |
2 | 0.20 | alpha- | pinene |
4 | 0.10 | beta- | pinene |
5 | 1.50 | sabinene | |
27 | 0.20 | sabinol | |
30 | 1.20 | sabinyl 2-methyl butyrate | |
21 | 0.70 | terpinen-4-ol | |
9 | 0.30 | gamma- | terpinene |
11 | trace | terpinolene | |
14 | 0.90 | alpha- | thujone |
15 | 49.50 | beta- | thujone |
25 | 0.40 | iso | thujyl alcohol |
32 | 0.20 | viridiflorol | |
22 | 0.10 | beta- | ylangene |
13 | 1.10 | yomogi alcohol | |
B. M. Lawrence, unpublished data (1976). P&F 25, No. 1, 33, (2000) | |||
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 ssp. zygis herb oil portuguese | |||
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 |
25 | trace | beta- | bisabolene |
23 | 1.0 | borneol | |
18 | trace | bornyl acetate | |
3 | 0.6 | camphene | |
16 | 0.5 | camphor | |
29 | 42.0 | carvacrol | |
19 | 1.5 | beta- | caryophyllene |
30 | 0.6 | caryophyllene oxide | |
9 | 0.2 | 1,8- | cineole |
11 | 19.9 | para- | cymene |
27 | 0.3 | geraniol | |
26 | 0.2 | geranyl acetate | |
24 | trace | germacrene D | |
21 | trace | alpha- | humulene |
8 | 0.4 | limonene | |
17 | 3.8 | linalool | |
6 | 1.3 | myrcene | |
13 | 0.1 | 3- | octanol |
14 | 0.2 | 1- | octen-3-ol |
2 | 0.7 | alpha- | pinene |
4 | 0.1 | beta- | pinene |
5 | trace | sabinene | |
15 | 0.2 | (E)- | sabinene hydrate |
20 | 0.9 | terpinen-4-ol | |
7 | 1.0 | alpha- | terpinene |
10 | 15.0 | gamma- | terpinene |
22 | 0.1 | alpha- | terpineol |
12 | trace | terpinolene | |
1 | 0.8 | alpha- | thujene |
28 | 0.2 | thymol | |
31 | 0.1 | viridiflorol | |
L. R. Salgueiro. A. Proencada Cunha and J. Paiva,Chemotaxonomic characterization of a Thymus hybrid from Portugal. Flav. Fragr. J., 8, 325-330 (1993). P&F 20, No. 3, 67, (1995) | |||
valeriana officinalis rhizome oil china | |||
# | % | Leftshift | Components |
10 | 1.31 | iso | borneol |
12 | 46.22 | bornyl acetate | |
13 | 0.61 | iso | bornyl acetate |
26 | 0.72 | bornyl isovalerate | |
3 | 23.50 | camphene | |
9 | 0.33 | camphor | |
14 | 1.64 | carvyl acetate | |
22 | 0.50 | beta- | caryophyllene alcohol |
5 | 0.40 | para- | cymene |
21 | 0.32 | decahydro-1,1,4,7-tetramethyl cyclopropazulen-4-ol | |
20 | 0.44 | decahydro-2,2,4,8-tetramethyl-4,8-methanazulen-9-ol | |
17 | 0.33 | 1,1- | dimethoxy-3,7-dimethyl-2,6-octadiene |
16 | 0.17 | 1,4- | dimethoxytetramethyl benzene |
7 | 1.37 | 7,7- | dimethyl-2-methylene bicyclo(3.1.1)heptane |
28 | 1.52 | (2Z)-3,7- | dimethyl-2,6-octadien-1-ol isovalerate |
23 | 0.60 | 2,6- | dimethyl-6(4-methyl-3-pentenyl)-2-cyclohexene-1-carboxaldehyde |
24 | 1.93 | 4- | ethyl-2,2,4-trimethyl-3-(1-methyl ethenyl) cyclohexene methanol |
27 | 0.61 | geranyl isovalerate | |
18 | 0.38 | beta- | gurjunene |
25 | 0.53 | ledol | |
6 | 0.77 | limonene | |
8 | 0.35 | 3- | methyl 2-norbornane carboxaldehyde |
2 | 5.46 | alpha- | pinene |
4 | 3.50 | beta- | pinene |
11 | 0.28 | 2-iso | propyl-5-methyl anisole |
1 | 0.43 | alpha- | thujene |
19 | 0.98 | 4(2,6,6- | trimethyl cyclohexa-1,3-dienyl)but-2-en-4-one |
15 | 0.61 | 2,2,4- | trimethyl-3-cyclohexene-1-methyl acetate |
Y-D. Chen and C-H. Gu, Study on the chemical composition of essential oil from Valeriana officinalis. Lincnan Huaxue Yu Gongye, 9(1), 59-64 (1989). P&F 24, No. 3, 47, (1999) | |||
zanthoxylum bracchyacanthum leaf oil australia | |||
# | % | Leftshift | Components |
18 | 0.20 | aromadendrene | |
20 | 1.10 | allo- | aromadendrene |
23 | 12.50 | bicyclogermacrene | |
13 | trace | beta- | bourbonene |
19 | 0.10 | alpha- | bulnesene |
24 | 0.50 | delta- | cadinene |
25 | 0.60 | gamma- | cadinene |
37 | 0.90 | alpha- | cadinol |
34 | 0.30 | T- | cadinol |
2 | 0.50 | camphene | |
17 | 14.00 | beta- | caryophyllene |
27 | 0.40 | caryophyllene oxide | |
29 | 0.50 | cubeban-11-ol | |
12 | 0.10 | para- | cymene |
16 | 0.10 | beta- | elemene |
22 | 6.10 | germacrene D | |
30 | 0.60 | globulol | |
32 | 0.10 | guaiol | |
14 | 0.10 | alpha- | gurjunene |
21 | 1.60 | alpha- | humulene |
28 | 0.60 | ledol | |
8 | 1.20 | limonene | |
15 | 0.20 | linalool | |
36 | 0.10 | alpha- | muurolol |
35 | 0.30 | T- | muurolol |
6 | 2.90 | myrcene | |
11 | 1.30 | (E)-beta- | ocimene |
26 | 0.60 | palustrol | |
5 | trace | alpha- | phellandrene |
9 | 1.00 | beta- | phellandrene |
38 | 1.70 | phytol | |
1 | 46.00 | alpha- | pinene |
3 | 0.60 | beta- | pinene |
4 | 0.40 | sabinene | |
33 | 0.20 | spathulenol | |
7 | trace | alpha- | terpinene |
10 | 0.10 | gamma- | terpinene |
31 | 0.50 | viridiflorol | |
J. of Ess. Oil Res. 12, No. 3, 285, (2000) | |||
zanthoxylum ovalifolium leaf oil australia | |||
# | % | Leftshift | Components |
14 | 0.50 | aromadendrene | |
15 | 0.30 | allo- | aromadendrene |
9 | 0.20 | bicycloelemene | |
19 | 8.20 | bicyclogermacrene | |
20 | 0.50 | delta- | cadinene |
21 | 0.10 | gamma- | cadinene |
2 | 0.50 | camphene | |
13 | 7.50 | beta- | caryophyllene |
23 | 0.50 | caryophyllene oxide | |
10 | 0.30 | alpha- | copaene |
12 | 0.60 | beta- | elemene |
24 | 0.60 | globulol | |
16 | 0.90 | alpha- | humulene |
6 | 1.30 | limonene | |
11 | 0.20 | linalool | |
18 | 0.20 | alpha- | muurolene |
5 | 19.80 | myrcene | |
8 | 1.10 | (E)-beta- | ocimene |
7 | 0.70 | beta- | phellandrene |
1 | 31.60 | alpha- | pinene |
3 | 1.20 | beta- | pinene |
4 | 0.70 | sabinene | |
22 | 1.20 | safrole | |
26 | 4.40 | spathulenol | |
17 | 0.80 | viridiflorene | |
25 | 0.40 | viridiflorol | |
J. of Ess. Oil Res. 12, No. 3, 285, (2000) |