artemisia absinthium herb oil italy | |||
Mucciarelli et al. (1995) performed GC/MS analysis on oils obtained from a number of Artemisia species growing in northwest Italy. In this study, they determined that an oil of A. absinthum contained: | |||
# | % | Leftshift | Components |
---|---|---|---|
17 | trace | artemisyl alcohol | |
46 | trace | artemisyl ketone | |
31 | trace | ascaridole | |
55 | trace | (E)-alpha- | bergamotol |
54 | trace | alpha- | bisabolol |
58 | trace | bisabolol oxide | |
36 | trace | borneol | |
42 | trace | bornyl acetate | |
56 | trace | alpha- | cadinol |
4 | trace | camphene | |
47 | trace | camphenilone | |
21 | 0.4 | camphor | |
59 | 0.3 | carvacrol | |
39 | trace | trans- | carveol |
25 | trace | carvone | |
50 | 0.5 | beta- | caryophyllene |
57 | 0.4 | caryophyllene oxide | |
41 | trace | (E)- | chrysanthenyl acetate |
40 | trace | (Z)- | chrysanthenyl acetate |
28 | 2.0 | 1,8- | cineole |
48 | 0.2 | alpha- | copaene |
52 | trace | epi- | cubenol |
45 | 0.2 | cuminaldehyde | |
12 | 1.0 | para- | cymene |
26 | trace | damascenone | |
27 | trace | 2,3- | dihydro-1,8-cineole |
29 | trace | (Z)- | epoxyocimene |
3 | trace | alpha- | fenchene |
10 | 0.1 | limonene | |
18 | trace | linalool | |
30 | 0.1 | linalool oxide | |
7 | trace | myrcene | |
44 | 0.1 | myrtenal | |
38 | 0.1 | myrtenol | |
51 | trace | (E)- | nerolidol |
37 | trace | nojiku alcohol | |
8 | trace | alpha- | phellandrene |
1 | 0.3 | alpha- | pinene |
5 | 0.7 | beta- | pinene |
22 | trace | iso | pinocamphone |
33 | trace | pinocarveol | |
23 | 0.2 | pinocarvone | |
6 | 1.6 | sabinene | |
14 | 0.2 | (E)- | sabinene hydrate |
43 | 1.6 | sabinyl acetate | |
49 | 0.6 | gamma- | selinene |
53 | 0.1 | spathulenol | |
32 | 1.3 | terpinen-4-ol | |
9 | 0.3 | alpha- | terpinene |
11 | 0.6 | gamma- | terpinene |
35 | trace | alpha- | terpineol |
13 | 0.1 | terpinolene | |
16 | 0.4 | (Z)- | thuj-2-en-4-ol |
2 | 0.3 | alpha- | thujene |
19 | 67.5 | alpha- | thujone |
20 | 18.2 | beta- | thujone |
34 | trace | (E)- | verbenol |
24 | trace | verbenone | |
15 | trace | yomogi alcohol | |
M. Mucciarelli, R. Caramiello, M. Maffei and F. Chialva, Essential oils from some Artemisia species growing spontaneously in Northwest Italy. Flav. Fragr. J., 10, 25-32 (1995). P&F 23, No. 1, 39, (1998) | |||
bois de rose leaf oil brazil | |||
# | % | Leftshift | Components |
21 | 0.62-0.79 | benzyl benzoate | |
11 | trace | camphor | |
19 | 0.80-0.95 | caryophyllene oxide | |
4 | 0.03-0.04 | 1,8- | cineole |
10 | 1.40-2.70 | cyclosativene | |
7 | trace-0.03 | para- | cymene |
16 | 4.50-6.00 | eremophilene | |
14 | 0.40-0.54 | hotrienol | |
3 | 0.10-0.15 | limonene | |
12 | 73.00-78.00 | linalool | |
9 | 1.00-1.54 | (E)- | linalool oxide furanoid |
8 | 1.20-1.80 | (Z)- | linalool oxide furanoid |
18 | 0.04 | (E)- | linalool oxide pyranoid |
17 | 0.13-0.25 | (Z)- | linalool oxide pyranoid |
2 | 0.06-0.10 | myrcene | |
6 | 0.03-0.05 | (E)-beta- | ocimene |
5 | trace-0.20 | (Z)-beta- | ocimene |
1 | trace-0.03 | beta- | pinene |
15 | 0.10-0.50 | gamma- | selinene |
20 | 0.35-0.62 | spathulenol | |
13 | 0.14-0.53 | terpinen-4-ol | |
S. T. Ohashi, L. dos S. Rosa, J. A. Santana and C. L. Green, Brazilian rosewood oil: sustainable production and oil quality management. Perfum. Flav., 22(2), 1-5 (1997). P&F 24, No. 1, 53, (1999) | |||
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) | |||
juniperus phoenicea wood oil | |||
# | % | Leftshift | Components |
26 | 0.23 | abietatriene | |
20 | 0.25 | gamma- | cadinene |
2 | trace | camphene | |
5 | 0.21 | delta-3- | carene |
23 | 0.96 | beta- | caryophyllene |
24 | 0.28 | caryophyllene oxide | |
10 | 2.22 | para- | cymen-8-ol |
6 | 0.14 | para- | cymene |
17 | 0.62 | beta- | elemene |
15 | 0.36 | delta- | elemene |
16 | 0.57 | gamma- | elemene |
19 | 0.60 | elemoferol | |
18 | 3.31 | elemol | |
25 | 0.41 | alpha- | humulene |
14 | 0.46 | juniper camphor | |
7 | 0.80 | limonene | |
28 | 0.38 | manoyl oxide | |
22 | 0.40 | alpha- | muurolene |
21 | 0.31 | gamma- | muurolene |
3 | 0.68 | myrcene | |
1 | 69.00 | alpha- | pinene |
4 | 0.80 | beta- | pinene |
27 | 0.47 | sandracopimaradiene | |
13 | 0.37 | selina-3,7(11)-diene | |
11 | 0.41 | beta- | selinene |
12 | 2.15 | gamma- | selinene |
9 | 1.77 | alpha- | terpineol |
8 | 4.80 | alpha- | terpinyl acetate |
J. de Pascual Teresa, A. F. Barrero, M. C. Caballero, M. A. Ramos and A. San Feliciano, Components de las arcestidas de Juniperus phoenicea linneaus aceit esencial. Rivista Ital. 62, 353-354 (1981). P&F 7, No. 4, 41, (1982) | |||
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) | |||
levisticum officinale root oil | |||
# | % | Leftshift | Components |
22 | 0.26 | bornyl acetate | |
25 | 1.33 | (E)-3- | butylidene phthalide |
24 | 2.24 | (Z)-3- | butylidene phthalide |
27 | 0.55 | (E)-3- | butylidene-4,5-dihydrophthalide |
26 | 61.79 | (Z)-3- | butylidene-4,5-dihydrophthalide |
2 | 0.07 | camphene | |
16 | 0.19 | alpha- | copaene |
17 | 0.87 | beta- | cubebene |
7 | 0.86 | para- | cymene |
9 | 0.18 | limonene | |
20 | 2.79 | linalool | |
5 | 0.45 | myrcene | |
11 | 0.63 | (E)-beta- | ocimene |
10 | 0.22 | (Z)-beta- | ocimene |
14 | 0.47 | pentyl benzene | |
15 | 0.13 | pentyl cyclohexane | |
6 | 0.24 | alpha- | phellandrene |
8 | 0.07 | beta- | phellandrene |
1 | 0.65 | alpha- | pinene |
4 | 2.05 | beta- | pinene |
3 | 0.12 | sabinene | |
19 | 5.92 | beta- | selinene |
18 | 1.58 | gamma- | selinene |
12 | 0.74 | gamma- | terpinene |
21 | 4.12 | alpha- | terpineol |
13 | 0.37 | terpinolene | |
23 | 0.22 | alpha- | terpinyl acetate |
28 | 0.39 | (Z)-3- | validene-3,4-dihydrophthalide |
J-Q. Cu, F. Pu, Y. Shi, F. Perineau, M. Delmas and A. Gaset, The chemical composition of lovage headspace and essential oils produced by solvent extraction with various solvents. J. Essent. Oil. Res., 2, 53-59 (1990). P&F 24, No. 2, 35, (1999) | |||
patchouli oil china | |||
# | % | Leftshift | Components |
33 | 0.85 | aristolone | |
5 | trace | camphene | |
23 | 3.18 | beta- | caryophyllene |
30 | 0.21 | ar- | curcumene |
16 | 0.01 | dihydrocarvone | |
21 | 0.04 | delta- | elemene |
24 | 8.82 | alpha- | guaiene |
28 | 8.65 | delta- | guaiene |
6 | 0.01 | 1- | hepten-3-ol |
2 | 0.01 | hexanal | |
8 | 0.02 | limonene | |
10 | 0.01 | linalool | |
9 | trace | linalool oxide | |
27 | 0.66 | beta- | maaliene |
13 | 0.01 | 4- | methyl-1-furanyl-1-pentene |
3 | 0.01 | 5- | methyl-2-hexanone |
1 | 0.01 | 3- | methyl-2-pentanone |
18 | 0.02 | myrtenol | |
26 | 8.48 | alpha- | patchoulene |
22 | 6.91 | beta- | patchoulene |
31 | 31.86 | patchouli alcohol | |
19 | 0.02 | perilla ketone | |
11 | 0.03 | iso | phorone |
4 | 0.09 | alpha- | pinene |
7 | 0.26 | beta- | pinene |
14 | 0.01 | iso | pinocamphone |
32 | 3.83 | pogostone | |
29 | 0.11 | gamma- | selinene |
25 | 9.58 | seychellene | |
15 | 0.01 | terpinen-4-ol | |
20 | trace | thujone | |
12 | 0.03 | (E)- | verbenol |
17 | 0.02 | verbenone | |
L. Guan, L-H. Quan and P-H. Cong, Study on chemical constituents of volatile oil from Pogostemon Cablin (Blanc.) Benth. Tianran Chanwu Yangui Yu Kaifa, 4(2), 3437 (1992). P&F 20, No. 3, 67, (1995) | |||
rosewood oil brazillian | |||
# | % | Leftshift | Components |
21 | 0.25-0.59 | benzyl benzoate | |
11 | 0.03-0.09 | camphor | |
19 | 0.10-0.15 | caryophyllene oxide | |
4 | trace | 1,8- | cineole |
10 | trace-0.90 | cyclosativene | |
7 | trace-0.03 | para- | cymene |
16 | 0.30-0.90 | eremophilene | |
14 | 0.10-0.20 | hotrienol | |
3 | 0.10-0.56 | limonene | |
12 | 87.00-92.00 | linalool | |
9 | 0.90-1.60 | (E)- | linalool oxide furanoid |
8 | 1.00-1.68 | (Z)- | linalool oxide furanoid |
18 | 0.03-0.27 | (E)- | linalool oxide pyranoid |
17 | 0.10-0.27 | (Z)- | linalool oxide pyranoid |
2 | 0.04-0.04 | myrcene | |
6 | 0.03-0.07 | (E)-beta- | ocimene |
5 | 0.03-0.20 | (Z)-beta- | ocimene |
1 | trace-0.10 | beta- | pinene |
15 | 0.20-0.37 | gamma- | selinene |
20 | trace | spathulenol | |
13 | 0.10-0.26 | terpinen-4-ol | |
S. T. Ohashi, L. dos S. Rosa, J. A. Santana and C. L. Green, Brazilian rosewood oil: sustainable production and oil quality management. Perfum. Flav., 22(2), 1-5 (1997). P&F 24, No. 1, 53, (1999) |