ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GAS
The purpose of this research is to identify chemical components of sandalwood oil by using the gas chromatography method. This sandalwood oil was obtained by steam and water distillation for 18, 24, and 30 hours distilling times. The condition of the gas chromatography empl...
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doaj-cbe379bb8de148c782612d983449a6812020-11-25T00:50:42ZindForest Product Research and Development CenterJurnal Penelitian Hasil Hutan (Journal of Forest Products Research)0216-43292442-89572017-08-015743744110.20886/jphh.1988.5.7.437-4412397ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GASAbdul Hakim Lukman0Bambang Wiyono1Pusat Penelitian dan Pengembangan Hasil HutanPusat Penelitian dan Pengembangan Hasil HutanThe purpose of this research is to identify chemical components of sandalwood oil by using the gas chromatography method. This sandalwood oil was obtained by steam and water distillation for 18, 24, and 30 hours distilling times. The condition of the gas chromatography employed was adjusted to : injector temperature 200° C. detector temperature 0° C, initial column temperature 140° C, final temperature column 200° C, speed temperature column 5° C/min, with nitrogen gas as carrier, and the using the flame ionization detector system. The identification of the peak components was done by comparing the relative retention time of the peak component with the peak retention time chemical solution standard. The peak area of each components was calculated by normalization method. The results indicated that chemical components of sandalwood oil, which was produced by the steam and water distillation for 18, 24, and 30 hours, include 0.0391, 0.0271, and 0.0313 % of α-pinene; 0.0065, 0.0034, and 0.0027 % of limonene; 0.9147, 0.7799, and 1.0393 % of α-santalene; 2.4375,1.9802, and 2.3474 % of terpineol 4; 1.2184, 0.7922, and 0. 7921 % of β-santalene; 5. 7263, 3.8800, and 3.9335 % of nerolidol; 48.0481, 51.1802. and 50.3507 % of β-santalol; 22.4367, 24.7127, and 24,2864 % of (arnesol, Unidentified component in each distilling time were 19.1727,15.6443, and 17.2166 %. respectively. The β -santalol component occupies the mayor component of sandalwood oil. The amount of this component at each treating condition was 48.0481 % for 18 hours; 51.1802 % for 24 hours; and 50.3507 % for 30 hours. Terpineol-4, nerolidol, β-santalol. and farnesol components constitute the sandalwood oil and is usually calculated as the total santalol.http://ejournal.forda-mof.org/ejournal-litbang/index.php/JPHH/article/view/3399 |
collection |
DOAJ |
language |
Indonesian |
format |
Article |
sources |
DOAJ |
author |
Abdul Hakim Lukman Bambang Wiyono |
spellingShingle |
Abdul Hakim Lukman Bambang Wiyono ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GAS Jurnal Penelitian Hasil Hutan (Journal of Forest Products Research) |
author_facet |
Abdul Hakim Lukman Bambang Wiyono |
author_sort |
Abdul Hakim Lukman |
title |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GAS |
title_short |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GAS |
title_full |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GAS |
title_fullStr |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GAS |
title_full_unstemmed |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA DENGAN KROMATOGRAFI GAS |
title_sort |
analisis komponen kimia minyak kayu cendana dengan kromatografi gas |
publisher |
Forest Product Research and Development Center |
series |
Jurnal Penelitian Hasil Hutan (Journal of Forest Products Research) |
issn |
0216-4329 2442-8957 |
publishDate |
2017-08-01 |
description |
The purpose of this research is to identify chemical components of sandalwood oil by using the gas chromatography method. This sandalwood oil was obtained by steam and water distillation for 18, 24, and 30 hours distilling times. The condition of the gas chromatography employed was adjusted to : injector temperature 200° C. detector temperature 0° C, initial column temperature 140° C, final temperature column 200° C, speed temperature column 5° C/min, with nitrogen gas as carrier, and the using the flame ionization detector system. The identification of the peak components was done by comparing the relative retention time of the peak component with the peak retention time chemical solution standard. The peak area of each components was calculated by normalization method.
The results indicated that chemical components of sandalwood oil, which was produced by the steam and water distillation for 18, 24, and 30 hours, include 0.0391, 0.0271, and 0.0313 % of α-pinene; 0.0065, 0.0034, and 0.0027 % of limonene; 0.9147, 0.7799, and 1.0393 % of α-santalene; 2.4375,1.9802, and 2.3474 % of terpineol 4; 1.2184, 0.7922, and 0. 7921 % of β-santalene; 5. 7263, 3.8800, and 3.9335 % of nerolidol; 48.0481, 51.1802. and 50.3507 % of β-santalol; 22.4367, 24.7127, and 24,2864 % of (arnesol, Unidentified component in each distilling time were 19.1727,15.6443, and 17.2166 %. respectively. The β -santalol component occupies the mayor component of sandalwood oil. The amount of this component at each treating condition was 48.0481 % for 18 hours; 51.1802 % for 24 hours; and 50.3507 % for 30 hours. Terpineol-4, nerolidol, β-santalol. and farnesol components constitute the sandalwood oil and is usually calculated as the total santalol. |
url |
http://ejournal.forda-mof.org/ejournal-litbang/index.php/JPHH/article/view/3399 |
work_keys_str_mv |
AT abdulhakimlukman analisiskomponenkimiaminyakkayucendanadengankromatografigas AT bambangwiyono analisiskomponenkimiaminyakkayucendanadengankromatografigas |
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1725247042039578624 |