cananga odorata oil china | |||
# | % | Leftshift | Components |
---|---|---|---|
24.14 | benzyl acetate | ||
1.90 | benzyl alcohol | ||
20.45 | benzyl benzoate | ||
0.16 | beta- | cadinene | |
0.24 | delta- | cadinene | |
2.69 | gamma- | cadinene | |
0.51 | beta- | caryophyllene | |
0.97 | (E)- | cinnamyl acetate | |
0.27 | para- | cresol | |
2.05 | para- | cresyl methyl ether | |
0.22 | gamma- | elemene | |
1.54 | (E)-iso | eugenol | |
0.67 | alpha- | farnesene | |
0.21 | (Z,E)- | farnesol | |
6.08 | geranyl acetate | ||
0.27 | alpha- | humulene | |
29.20 | linalool | ||
0.14 | 4- | methoxybenzyl acetate | |
0.29 | methyl 3-methoxybenzene | ||
2.70 | methyl benzoate | ||
0.63 | 2- | phenethyl acetate | |
L-F. Zhu, Y-H. Li, B-L. Li, B-Y. Lu and W-L. Zhang, Aromatic plants and essential constituents (supplement 1). South China Institute of Botany, Chinese Academy of Sciences, Hai Feng Publ. Co. distributed by Peace Book Co., Ltd., Hong Kong (1995). P&F 24, No. 4, 31, (1999) | |||
cassia leaf oil | |||
# | % | Leftshift | Components |
0.54 | benzaldehyde | ||
1.82 | benzyl benzoate | ||
1.58 | camphene | ||
2.60 | camphor | ||
2.90 | delta-3- | carene | |
6.24 | beta- | caryophyllene | |
46.52 | (E)- | cinnamaldehyde | |
2.64 | (E)- | cinnamyl acetate | |
1.40 | alpha- | copaene | |
4.18 | para- | cymene | |
3.63 | eugenol | ||
0.30 | eugenyl acetate | ||
0.85 | alpha- | humulene | |
2.98 | linalool | ||
0.79 | ortho- | methoxycinnamaldehyde | |
0.07 | myrcene | ||
9.16 | beta- | phellandrene + limonene | |
3.47 | alpha- | pinene | |
1.02 | beta- | pinene | |
0.07 | alpha- | terpineol | |
L.-F. Zhu, Y.-H. Li, B.-L. Li, B.-Y. Lu and N.-H. Xia, Aromatic Plants and Essential Constituents. South China Institute of Botany, Chinese Academy of Sciences, Hai Feng Publish. Co. distributed by Peace Book Co. Ltd., Hong Kong (1993). P&F 19, No. 4, 33, (1994) | |||
cinnamomum angustifolium rafin. oil madagascar | |||
# | % | Leftshift | Components |
27 | 3.00 | bicyclogermacrene | |
29 | 0.30 | delta- | cadinene |
4 | 0.10 | camphene | |
18 | 0.10 | camphor | |
7 | 1.80 | delta-3- | carene |
39 | 0.10 | carvacrol | |
20 | 6.20 | beta- | caryophyllene |
33 | 1.00 | caryophyllene oxide | |
12 | 9.70 | 1,8- | cineole |
34 | 0.20 | (E)- | cinnamaldehyde |
28 | 0.90 | (Z)- | cinnamaldehyde |
38 | 0.40 | (E)- | cinnamyl acetate |
32 | 0.30 | para- | cymen-8-ol |
16 | 17.60 | para- | cymene |
3 | 0.30 | alpha- | fenchene |
30 | 0.30 | geranyl acetate | |
26 | 1.80 | germacrene D | |
36 | 0.40 | guaiol | |
22 | 0.20 | alpha- | humulene |
11 | 1.80 | limonene | |
19 | 3.30 | linalool | |
31 | 0.20 | para- | mentha-1(7),5-dien-2-ol |
9 | 2.60 | myrcene | |
35 | 0.40 | (E)- | nerolidol |
15 | 1.10 | (E)-beta- | ocimene |
13 | 0.20 | (Z)-beta- | ocimene |
8 | 23.40 | alpha- | phellandrene |
1 | 4.80 | alpha- | pinene |
5 | 1.20 | beta- | pinene |
6 | 1.00 | sabinene | |
23 | 0.20 | salicylaldehyde | |
37 | 1.40 | spathulenol | |
21 | 0.70 | terpinen-4-ol | |
10 | 0.30 | alpha- | terpinene |
14 | 0.50 | gamma- | terpinene |
25 | 2.10 | alpha- | terpineol |
17 | 0.30 | terpinolene | |
2 | 1.90 | alpha- | thujene |
24 | 0.40 | viridiflorene | |
J. of Ess. Oil Res. 12, No. 5, 537, (2000) | |||
cinnamomum cassia bark oil china | |||
# | % | Leftshift | Components |
1 | 0.54 | benzaldehyde | |
20 | 1.82 | benzyl benzoate | |
3 | 1.58 | camphene | |
10 | 2.60 | camphor | |
6 | 2.90 | delta-3- | carene |
16 | 6.24 | beta- | caryophyllene |
12 | 46.52 | (E)- | cinnamaldehyde |
15 | 2.64 | (E)- | cinnamyl acetate |
14 | 1.40 | alpha- | copaene |
7 | 4.18 | para- | cymene |
13 | 3.63 | eugenol | |
18 | 0.30 | eugenyl acetate | |
17 | 0.85 | alpha- | humulene |
9 | 2.98 | linalool | |
19 | 0.79 | ortho- | methoxycinnamaldehyde |
4 | 0.07 | myrcene | |
8 | 9.16 | beta- | phellandrene + limonene |
2 | 3.47 | alpha- | pinene |
5 | 1.02 | beta- | pinene |
11 | 0.07 | alpha- | terpineol |
N. Bouzid, K. Toulgouate, G. Villarem and A. Gaset, Analyse quantitative des fractions d’huile essentielle pouvant co-exister lors d’hydrodistillation & plants aromatiques. Rivista Ital. EPPOS, (April), 15-25 (1997). P&F 23, No. 1, 39, (1998) | |||
cinnamomum zeylanicum bark oil india | |||
In 1989, Variyar and Bandyopadhayay used retention time data of authentic compounds on a packed GC column to determine the composition of bark and twig oils of Cinnamomum zeylanicum of Kerala (India) origin. The compounds characterized in these oils can be seen in Table VIII. Only the bark oil will be shown here: | |||
# | % | Leftshift | Components |
5 | 0.90 | beta- | caryophyllene |
3 | 0.26 | 1,8- | cineole |
8 | 82.11 | (E)- | cinnamaldehyde |
10 | 0.95 | (E)- | cinnamyl acetate |
9 | 7.69 | (E)- | cinnamyl alcohol |
11 | 0.41 | coumarin | |
12 | 0.76 | eugenol | |
7 | 0.28 | alpha- | humulene |
2 | 0.18 | limonene | |
4 | 2.48 | linalool | |
1 | 0.18 | alpha- | pinene |
6 | 0.80 | terpinen-4-ol | |
P. S. Variyar and Bandyopadhayay, On some chemical aspects of Cinnamomum zeylanicum. PAFAI, (Oct/Dec), 35-38 (1989). P&F 23, No. 1, 39, (1998) | |||
cinnamomum zeylanicum bark oil sri lauka | |||
Using GC (retention indices) Bouzid et al. (1997) analyzed an oil of cinnamon bark. The compounds identified were as follows: | |||
# | % | Leftshift | Components |
11 | trace-0.05 | benzaldehyde | |
25 | 0.40-1.00 | benzyl benzoate | |
2 | 0.04-0.05 | camphene | |
4 | 0.01-0.02 | delta-3- | carene |
19 | trace-0.12 | caryophyllene | |
13 | 1.00-2.00 | beta- | caryophyllene |
20 | 72.00-82.15 | (E)- | cinnamaldehyde |
17 | 0.12-0.98 | (Z)- | cinnamaldehyde |
21 | 3.24-3.65 | (E)- | cinnamyl acetate |
23 | 0.50-0.60 | (E)- | cinnamyl alcohol |
10 | 0.04-0.05 | alpha- | copaene |
9 | 0.25-0.35 | para- | cymene |
22 | 1.07-13.30 | eugenol | |
14 | 0.20-0.62 | alpha- | humulene |
7 | 0.09-0.10 | limonene | |
12 | 0.70-1.06 | linalool | |
5 | 0.06 | para- | menthene |
18 | 0.09-0.15 | ortho- | methoxybenzaldehyde |
24 | 0.30-0.80 | ortho- | methoxycinnamaldehyde |
6 | 0.07-0.08 | myrcene | |
8 | 0.40-0.64 | beta- | phellandrene |
16 | 0.10-0.70 | phenyl propionaldehyde | |
1 | 0.04-0.07 | alpha- | pinene |
3 | 0.02-0.03 | beta- | pinene |
15 | 0.35-0.62 | alpha- | terpineol + borneol |
cinnamomum zeylanicum fruit oil india | |||
In 1997, Jayaprakasha et al. analyzed two oils of the fruit of C. zeylanicum by GC and GC/MS. Although the oils were produced from fruit harvested in two different locations in India, Karnataka and Kerala, the oil compositions were similar as can be seen from the following analytical results: | |||
# | % | Leftshift | Components |
32 | 2.7-2.8 | benzyl benzoate | |
8 | 0.3-0.4 | borneol | |
21 | 2.3-3.0 | delta- | cadinene |
20 | 1.2-1.6 | gamma- | cadinene |
31 | 1.0-1.5 | alpha- | cadinol |
30 | 2.7-3.4 | T- | cadinol |
15 | 9.2-13.7 | beta- | caryophyllene |
24 | 0.9-1.1 | caryophyllene oxide | |
10 | 0.6-4.3 | (E)- | cinnamaldehyde |
7 | 0.2-0.3 | (Z)- | cinnamaldehyde |
16 | 42.4-54.2 | (E)- | cinnamyl acetate |
11 | 2.0-2.2 | (E)- | cinnamyl alcohol |
14 | 1.8-3.1 | alpha- | copaene |
29 | 0.5-0.8 | cubenol | |
27 | 0.4-0.5 | 10-epi-gamma- | eudesmol |
12 | 0.2-0.3 | eugenol | |
19 | 1.7-2.0 | germacrene B | |
18 | 0.7-0.8 | germacrene D | |
26 | 0.3 | germacrene D-4-ol | |
25 | 0.5-0.6 | globulol | |
22 | 0.4 | beta- | guaiene |
17 | 2.8-3.1 | alpha- | humulene |
34 | 0.0-0.3 | methyl oleate | |
33 | 0.0-0.3 | methyl palmitate | |
28 | 0.3 | alpha- | muurolol |
3 | 0.0-0.2 | myrcene | |
23 | 0.2-0.4 | nerolidol | |
6 | 0.2-0.5 | (E)-beta- | ocimene |
4 | 0.1-0.7 | alpha- | phellandrene |
5 | 0.4-1.6 | beta- | phellandrene |
13 | 2.9-4.3 | 3- | phenyl propyl acetate |
1 | 0.1-1.6 | alpha- | pinene |
2 | 0.1-0.6 | beta- | pinene |
9 | 0.3 | alpha- | terpineol |
G. K. Jayaprakasha, L. Jaganmohan Rao and K. K. Sakariah, Chemical composition of the folatile oil from the fruits of Cinnamomum zeylanicum Blume. Flav. Fragr. J., 12, 331-333 (1997) P&F 23, No. 1, 39, (1998) | |||
cinnamomum zeylanicum leaf oil | |||
The seasonal variation in the composition of cinnamon leaf oil produced from leaves harvested at different times of the year was studied by Kaul et al. (1996). They found that oil produced from leaves harvested either in the summer or in the winter possessed comparable chemical compositions, whereas an oil produced from leaves harvested in the rainy season had a reduced level of eugenol and an increased level of eugenyl acetate (Table VIII). Note: this page will only include the summer harvest. | |||
# | % | Leftshift | Components |
22 | 0.43 | benzyl benzoate | |
20 | 0.06 | delta- | cadinene |
3 | 0.12 | camphene | |
17 | 0.48 | beta- | caryophyllene |
21 | 0.26 | caryophyllene oxide | |
13 | 0.17 | (E)- | cinnamaldehyde |
16 | 0.19 | (E)- | cinnamyl acetate |
9 | 0.07 | citronellal | |
6 | 0.36 | para- | cymene |
15 | 0.34 | beta- | elemene |
14 | 93.94 | eugenol | |
19 | 1.07 | eugenyl acetate | |
18 | 0.12 | alpha- | humulene |
7 | 0.31 | limonene + 1,8-cineole | |
8 | 0.86 | linalool | |
5 | 0.23 | alpha- | phellandrene |
2 | 0.33 | alpha- | pinene |
4 | 0.16 | beta- | pinene |
12 | 0.07 | piperitone | |
10 | 0.09 | terpinen-4-ol | |
11 | 0.10 | alpha- | terpineol |
1 | 0.03 | alpha- | thujene |
P. N. Kaul, A. K. Battacharya and B. R. Rajeswara Rae, Seasonal variation in the composition of the essential oil of cinnamon (Cinnamomum zeylanicum Blume) leaves. Indian Perfum., 40(2), 36-38 (1996). P&F 22, No. 5, 71, (1997) | |||
cinnamomum zeylanicum twig oil india | |||
In 1989, Variyar and Bandyopadhayay used retention time data of authentic compounds on a packed GC column to determine the composition of bark and twig oils of Cinnamomum zeylanicum of Kerala (India) origin. The compounds characterized in these oils can be seen in Table VIII. Only the twig oil will be shown here: | |||
# | % | Leftshift | Components |
5 | 0.73 | beta- | caryophyllene |
3 | 0.64 | 1,8- | cineole |
8 | 76.07 | (E)- | cinnamaldehyde |
10 | 0.43 | (E)- | cinnamyl acetate |
9 | 9.55 | (E)- | cinnamyl alcohol |
11 | 0.32 | coumarin | |
12 | 4.03 | eugenol | |
7 | 0.19 | alpha- | humulene |
2 | 0.14 | limonene | |
4 | 3.05 | linalool | |
1 | 0.21 | alpha- | pinene |
6 | 0.50 | terpinen-4-ol | |
P. S. Variyar and Bandyopadhayay, On some chemical aspects of Cinnamomum zeylanicum. PAFAI, (Oct/Dec), 35-38 (1989). P&F 23, No. 1, 39, (1998) | |||
cinnamon bark oil ceylon | |||
Using GC (retention indices) Bouzid et al. (1997) analyzed an oil of cinnamon bark. The compounds identified were as follows: | |||
# | % | Leftshift | Components |
1 | 0.54 | benzaldehyde | |
20 | 1.82 | benzyl benzoate | |
3 | 1.58 | camphene | |
10 | 2.60 | camphor | |
6 | 2.90 | delta-3- | carene |
16 | 6.24 | beta- | caryophyllene |
12 | 46.52 | (E)- | cinnamaldehyde |
15 | 2.64 | (E)- | cinnamyl acetate |
14 | 1.40 | alpha- | copaene |
7 | 4.18 | para- | cymene |
13 | 3.63 | eugenol | |
18 | 0.30 | eugenyl acetate | |
17 | 0.85 | alpha- | humulene |
9 | 2.98 | linalool | |
19 | 0.79 | ortho- | methoxycinnamaldehyde |
4 | 0.07 | myrcene | |
8 | 9.16 | beta- | phellandrene + limonene |
2 | 3.47 | alpha- | pinene |
5 | 1.02 | beta- | pinene |
11 | 0.07 | alpha- | terpineol |
N. Bouzid, K. Toulgouate, G. Villarem and A. Gaset, Analyse quantitative des fractions d'huile essentielle pouvant co-exister lors d'hydrodistillation de plants aromatiques. Rivista Ital. EPPOS, (April), 15-25 (1997). P&F 23, No. 1, 39, (1998) | |||
michelia champaca concrete | |||
# | % | Leftshift | Components |
52 | 0.05 | iso | amyl benzoate |
36 | 0.03 | 5- | amyl-3,4-dimethyl isoxazole |
37 | 0.02 | 3- | amyl-4,5-dimethyl isoxazole |
244 | trace | (E)- | anethole |
140 | 0.03 | benzaldehyde | |
73 | 0.10 | (E+Z)- | benzaldoxime |
159 | 0.20 | benzoic acid | |
216 | 0.01 | benzyl (Z)-3-hexenoate | |
212 | trace | benzyl 2-methyl butyrate | |
25 | 0.60 | benzyl acetate | |
38 | 2.00 | benzyl alcohol | |
90 | 1.00 | benzyl benzoate | |
211 | trace | benzyl butyrate | |
21 | 0.10 | benzyl formate | |
213 | 0.03 | benzyl isovalerate | |
240 | trace | benzyl methyl ether | |
217 | 0.20 | benzyl phenyl acetate | |
218 | 0.10 | benzyl phenyl propionate | |
209 | trace | benzyl propionate | |
215 | 0.02 | benzyl tiglate | |
214 | 0.04 | benzyl valerate | |
122 | 0.10 | borneol | |
203 | 0.03 | bornyl acetate | |
168 | 0.01 | bovolide | |
210 | trace | butyl benzoate | |
101 | 0.03 | beta- | caryophyllene |
64 | 0.20 | caryophyllene oxide | |
4 | 0.03 | 1,8- | cineole |
75 | 0.30 | cinnamic alcohol | |
143 | 0.02 | cinnamic aldehyde | |
251 | 0.01 | cinnamic aldehyde oxime | |
256 | trace | cinnamonitrile | |
71 | 0.10 | (E)- | cinnamyl acetate |
231 | 0.05 | cinnamyl benzoate | |
228 | 0.01 | cinnamyl formate | |
229 | 0.01 | cinnamyl isovalerate | |
230 | 0.05 | cinnamyl tiglate | |
172 | 0.01 | coumarin | |
134 | 0.02 | creosol | |
133 | trace | para- | cresol |
57 | 0.04 | cubenol | |
53 | 0.02 | epi- | cubenol |
139 | trace | beta- | cyclocitral |
169 | trace | decan-5-olide | |
118 | 0.05 | decanol | |
170 | trace | (Z)-7- | decen-5-olide |
154 | 0.10 | dehydro-beta-ionone | |
155 | trace | dehydro-beta-ionone 5,6-epoxide | |
91 | 0.05 | 3-oxo- | dihydro-alpha-ionol |
45 | 0.01 | dihydro-alpha-ionone | |
87 | 0.10 | 3-oxo- | dihydro-alpha-ionone |
82 | 0.20 | (E+Z)- | dihydro-alpha-ionone oxime |
60 | 0.40 | dihydro-beta-ionol | |
93 | 0.20 | 3-oxo- | dihydro-beta-ionol |
129 | 0.01 | dihydro-beta-ionol 5,6-epoxide | |
46 | 0.30 | dihydro-beta-ionone | |
157 | 0.05 | 4-oxo- | dihydro-beta-ionone |
83 | 0.40 | (E+Z)- | dihydro-beta-ionone oxime |
50 | 0.02 | dihydro-beta-ionyl formate | |
171 | 0.03 | dihydroactinidiolide | |
74 | 0.02 | dihydrobovolide | |
61 | 0.03 | 7-oxo- | dihydrotheaspirane a1 |
67 | 0.03 | 7-oxo- | dihydrotheaspirane a2 |
62 | 0.02 | 7-oxo- | dihydrotheaspirane b1 |
68 | 0.02 | 7-oxo- | dihydrotheaspirane b2 |
167 | 0.02 | 2,3- | dimethyl-2-nonen-4-olide |
120 | trace | (E)-6,10- | dimethyl-5,9-undecadien-2-ol |
130 | trace | 5,8-epi | dioxy-6-megastigmen-9-ol |
153 | trace | 2,3- | epoxy-2,6,6-trimethyl cyclohexan-1,4-dione |
184 | 0.01 | ethyl 2-hydroxy-3-methyl valerate | |
178 | trace | ethyl 2-methyl butyrate | |
179 | trace | ethyl 3-methyl butyrate | |
22 | 0.50 | ethyl benzoate | |
177 | 0.01 | ethyl butyrate | |
181 | trace | ethyl caproate | |
196 | trace | ethyl caprylate | |
233 | trace | ethyl cinnamate | |
238 | 0.03 | ethyl nicotinate | |
183 | trace | ethyl tiglate | |
69 | 0.30 | eugenol | |
77 | 0.10 | iso | eugenol |
43 | 0.80 | (E,E)-alpha- | farnesene |
125 | 0.20 | (E,E)- | farnesol |
138 | 0.01 | geranial | |
158 | 0.10 | geranic acid | |
124 | 0.02 | geraniol | |
207 | trace | geranyl acetate | |
48 | 0.04 | (E)- | geranyl acetone |
206 | trace | geranyl formate | |
127 | 0.30 | geranyl linalool | |
103 | 0.10 | germacrene D | |
149 | 0.01 | 2- | heptadecanone |
107 | 0.01 | heptanol | |
252 | trace | heptanonitrile | |
255 | trace | hexadecanonitrile | |
9 | 0.02 | hexanol | |
106 | trace | (E)-2- | hexenal |
10 | 0.01 | (Z)-3- | hexen-1-ol |
7 | 0.01 | (Z)-3- | hexen-1-yl acetate |
192 | trace | (Z)-3- | hexen-1-yl acetate |
191 | 0.05 | (Z)-3- | hexen-1-yl benzoate |
189 | trace | (Z)-3- | hexen-1-yl butyrate |
188 | trace | (Z)-3- | hexen-1-yl formate |
190 | 0.02 | (Z)-3- | hexen-1-yl tiglate |
186 | trace | hexyl acetate | |
187 | 0.05 | hexyl benzoate | |
185 | trace | hexyl formate | |
102 | trace | alpha- | humulene |
136 | trace | para- | hydroxyanisole |
78 | 4.00 | indole | |
55 | 0.03 | (E)-beta- | ionol |
156 | 0.05 | 4-oxo-beta- | ionol |
51 | 0.10 | alpha- | ionol |
128 | trace | beta- | ionol 5,6-epoxide |
47 | 0.03 | (E)-alpha- | ionone |
54 | 0.20 | (E)-beta- | ionone |
56 | 0.10 | beta- | ionone 5,7-epoxide |
86 | 0.50 | (E)-alpha- | ionone oxime |
89 | 0.90 | (E)-beta- | ionone oxime |
85 | 0.20 | (Z)-alpha- | ionone oxime |
88 | 0.30 | (Z)-beta- | ionone oxime |
208 | trace | beta- | ionyl formate |
49 | 0.05 | (Z)- | jasmone |
249 | 0.02 | jasmone oxime | |
3 | trace | limonene | |
16 | 0.80 | linalool | |
12 | 0.20 | (Z)- | linalool oxide furanoid |
35 | 0.20 | (E)- | linalool oxide pyranoid |
31 | 2.50 | (Z)- | linalool oxide pyranoid |
163 | 1.00 | linoleic acid | |
164 | 0.50 | linolenic acid | |
193 | trace | methyl (E)-2-hexenoate | |
26 | 0.02 | methyl (E)-3-methyl-4-decenoate | |
80 | 0.14 | methyl (E)-jasmonate | |
194 | trace | methyl (Z)-3-hexenoate | |
201 | 0.01 | methyl (Z)-3-methyl-4-decenoate | |
200 | 0.02 | methyl (Z)-4-decenoate | |
79 | 0.06 | methyl (Z)-jasmonate | |
11 | 0.01 | methyl 2-hydroxy-3-methyl butyrate | |
13 | 0.02 | methyl 2-hydroxy-3-methyl valerate | |
175 | 0.01 | methyl 2-methyl butyrate | |
176 | 0.01 | methyl 3-methyl butyrate | |
234 | 0.02 | methyl 5-phenyl valerate | |
239 | trace | 4- | methyl anisole |
72 | 9.00 | methyl anthranilate | |
17 | 5.00 | methyl benzoate | |
104 | 0.01 | 2- | methyl butanol |
105 | trace | 3- | methyl butanol |
14 | 0.02 | (E+Z)-2- | methyl butyraldoxime |
15 | 0.02 | (E+Z)-3- | methyl butyraldoxime |
174 | trace | methyl butyrate | |
1 | trace | 2- | methyl butyronitrile |
199 | trace | methyl caprinate | |
180 | trace | methyl caproate | |
195 | 0.02 | methyl caprylate | |
232 | 0.05 | methyl cinnamate | |
242 | 0.10 | methyl eugenol | |
204 | 0.05 | methyl geranate | |
173 | trace | methyl isobutyrate | |
243 | 0.20 | methyl isoeugenol | |
250 | 0.02 | (Z)- | methyl jasmonate oxime |
202 | 0.15 | methyl laurate | |
94 | 2.01 | methyl linoleate | |
96 | 0.50 | methyl linolenate | |
236 | 0.10 | methyl N-acetyl anthranilate | |
65 | 0.02 | methyl N-ethyl anthranilate | |
237 | 0.10 | methyl N-formyl anthranilate | |
63 | 0.05 | methyl N-methyl anthranilate | |
28 | 0.15 | methyl nicotinate | |
81 | 0.20 | methyl palmitate | |
32 | 0.10 | methyl phenyl acetate | |
34 | 0.15 | methyl salicylate | |
92 | 0.20 | methyl stearate | |
182 | trace | methyl tiglate | |
235 | 0.01 | methyl vanillate | |
5 | trace | 2- | methyl-1-nitrobutane |
146 | trace | (E)-3- | methyl-2-nonen-4-one |
119 | 0.02 | (E)-3- | methyl-4-decen-1-ol |
41 | 0.02 | (E)-3- | methyl-4-decen-1-ol |
58 | 0.04 | 3- | methyl-5-(2,6,6-trimethyl cyclohex-1-en-1-yl) isoxazole |
8 | 0.02 | 6- | methyl-5-hepten-2-one |
44 | 0.03 | (E+Z)-6- | methyl-5-hepten-2-one oxime |
99 | trace | myrcene | |
137 | trace | neral | |
123 | 0.01 | nerol | |
70 | 0.40 | (E)- | nerolidol |
205 | trace | neryl formate | |
59 | 0.10 | 1- | nitro-2-phenethane |
165 | trace | nonan-4-olide | |
114 | 0.03 | nonanol | |
145 | 0.02 | 2- | nonanone |
247 | 0.01 | 2- | nonanone oxime |
117 | 0.02 | (Z,Z)-3,6- | nonen-1-ol |
115 | trace | (Z)-3- | nonen-1-ol |
116 | trace | (Z)-6- | nonen-1-ol |
198 | 0.01 | (Z)-6- | nonen-1-yl acetate |
166 | trace | 2- | nonen-4-olide |
6 | 0.20 | (E)-beta- | ocimene |
100 | 0.02 | (Z)-beta- | ocimene |
113 | trace | (E,E)-2,4- | octadien-1-ol |
112 | 0.01 | (Z,Z)-2,5- | octadien-1-ol |
108 | 0.05 | octanol | |
144 | 0.01 | 3- | octanone |
246 | trace | 3- | octanone oxime |
253 | trace | octanonitrile | |
110 | trace | (E)-2- | octen-1-ol |
109 | trace | (Z)-2- | octen-1-ol |
111 | 0.01 | (Z)-5- | octen-1-ol |
197 | 0.05 | (Z)-5- | octen-1-yl acetate |
161 | 0.20 | palmitic acid | |
148 | 0.01 | 2- | pentadecanone |
39 | 0.30 | 2- | phenethyl acetate |
42 | 30.00 | 2- | phenethyl alcohol |
95 | 0.50 | 2- | phenethyl benzoate |
220 | 0.01 | 2- | phenethyl butyrate |
223 | 0.05 | 2- | phenethyl caproate |
224 | 0.05 | 2- | phenethyl caprylate |
33 | 0.30 | 2- | phenethyl formate |
219 | trace | 2- | phenethyl isobutyrate |
221 | 0.02 | 2- | phenethyl isovalerate |
241 | trace | 2- | phenethyl methyl ether |
225 | 0.20 | 2- | phenethyl phenyl acetate |
222 | 0.02 | 2- | phenethyl tiglate |
132 | trace | phenol | |
141 | 0.02 | phenyl acetaldehyde | |
76 | 1.00 | (E+Z)- | phenyl acetaldoxime |
23 | 0.01 | (E+Z)- | phenyl acetaldoxime-O-methyl ether |
160 | 0.20 | phenyl acetic acid | |
142 | trace | phenyl propionaldehyde | |
227 | 0.05 | 3- | phenyl propyl acetate |
131 | 0.02 | 3- | phenyl propyl alcohol |
226 | 0.05 | 3- | phenyl propyl formate |
126 | 0.30 | phytol | |
97 | trace | alpha- | pinene |
2 | 0.01 | beta- | pinene |
98 | trace | sabinene | |
245 | trace | safrole | |
162 | 0.50 | stearic acid | |
121 | 0.03 | terpinen-4-ol | |
27 | 0.10 | alpha- | terpineol |
254 | trace | tetradecanonitrile | |
84 | 0.05 | 4,4a,5,6- | tetrahydro-4,4,7-trimethyl-2(3H)-naphthalenone |
19 | 0.02 | 1,2,5,5- | tetramethyl octahydroquinoline |
66 | 0.03 | 1,3,7,7- | tetramethyl-2-oxabicyclo(4.4.0)decan-9-one |
29 | 0.20 | 2,5,5,8a- | tetramethyl-6,7,8,8a-tetrahydro-1(5H)-1-benzopyran |
18 | 0.02 | theaspirane A | |
20 | 0.02 | theaspirane B | |
147 | 0.02 | 2- | tridecanone |
152 | 0.01 | 2,6,6- | trimethyl cyclohexan-1,4-dione |
150 | 0.20 | 6,10,14- | trimethyl pentadecan-2-one |
248 | 0.05 | 6,10,14- | trimethyl pentadecan-2-one oxime |
151 | 0.05 | 2,6,6- | trimethyl-2-cyclohexen-1,4-dione |
30 | 0.01 | 2,5,5- | trimethyl-5,6,7,8-tetrahydroquinoline |
24 | 0.01 | 2- | undecanone |
135 | trace | para- | vinyl phenol |
R. Kaiser, New volatile constituents of the flower concrete of Michelia champaca L. In: Proceedings of 11th International Congress of Essential Oils, Fragrances and Flavours. Edits., S. C. Bhattacharyya, N. Sen and K. L. Sethi, p. 1-13, Oxford & IBH Publishing Co., Pvt. Ltd, New Delhi (1989). P&F 25, No. 4, 55, (2000) | |||
ylang ylang flower oil | |||
# | % | Leftshift | Components |
51 | 0.13 | alpha- | amorphene |
29 | 0.35 | (E)- | anethole |
5 | 0.94 | benzaldehyde | |
20 | 11.63 | benzyl acetate | |
11 | 2.20 | benzyl alcohol | |
63 | 6.19 | benzyl benzoate | |
33 | 0.04 | benzyl butyrate | |
65 | 1.37 | benzyl salicylate | |
58 | 0.07 | alpha- | bisabolol |
47 | 0.71 | 3- | buten-2-yl benzoate |
36 | 0.08 | butyl benzoate | |
53 | 0.16 | delta- | cadinene |
54 | 0.12 | gamma- | cadinene |
60 | 0.12 | cadinol | |
61 | 0.12 | alpha- | cadinol |
42 | 1.69 | beta- | caryophyllene |
57 | 0.07 | caryophyllene oxide | |
12 | 0.09 | 1,8- | cineole |
43 | 2.09 | (E)- | cinnamyl acetate |
30 | 0.26 | (E)- | cinnamyl alcohol |
38 | 0.13 | alpha- | copaene |
17 | 0.09 | para- | cresol |
10 | 0.34 | para- | cresyl methyl ether |
45 | 0.58 | beta- | cubebene |
26 | 0.13 | 1,4- | dimethoxybenzene |
25 | 0.17 | 3,4- | dimethoxytoluene |
21 | 1.46 | ethyl benzoate | |
44 | 0.37 | (Z)-iso | eugenol |
52 | 2.34 | (E,E)-alpha- | farnesene |
62 | 0.84 | (E,E)- | farnesol |
64 | 0.61 | (E,E)- | farnesyl acetate |
37 | 1.96 | geranyl acetate | |
49 | 5.55 | germacrene D | |
3 | 0.28 | (E)-2- | hexen-1-ol |
9 | 0.16 | (Z)-3- | hexen-1-yl acetate |
55 | 0.19 | (Z)-3- | hexen-1-yl benzoate |
46 | 0.74 | alpha- | humulene |
13 | 0.07 | limonene | |
18 | 35.49 | linalool | |
22 | 0.07 | 2- | methoxy-4-methyl phenol |
15 | 0.17 | 2- | methoxyphenol |
39 | 0.11 | 4- | methoxyphenyl methyl acetate |
31 | 0.05 | methyl 2-methoxybenzoate | |
35 | 0.06 | methyl 4-methoxybenzoate | |
32 | 0.08 | methyl anthranilate | |
16 | 6.50 | methyl benzoate | |
48 | 0.86 | methyl eugenol | |
23 | 0.29 | methyl salicylate | |
2 | 0.06 | 3- | methyl-2-butenol |
4 | 0.33 | 3- | methyl-2-butenyl acetate |
1 | 0.07 | 2- | methyl-3-butenol |
50 | 0.14 | gamma- | muurolene |
59 | 0.11 | alpha- | muurolol |
8 | 0.16 | myrcene | |
27 | 0.27 | nerol | |
56 | 0.13 | (E)- | nerolidol |
14 | 0.14 | (E)-beta- | ocimene |
28 | 0.20 | 2- | phenyl-1-nitroethane |
6 | 1.87 | alpha- | pinene |
7 | 0.66 | beta- | pinene |
34 | 0.08 | 4-(2- | propenyl) phenol |
24 | 0.14 | alpha- | terpineol |
41 | 5.51 | tetradecane | |
40 | 0.16 | alpha- | ylangene |
E. E. Stashenko, W. Torres and J. R. Martinez Morales, A study of the compositional variation of the essential oil of ylang ylang (Cananga odorata Hook. fil. et Thomson, forma genuina) during flower development. J. High Resol. Chromatogr., 18, 101-104 (1995). P&F 24, No. 4, 31, (1999) |