ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA HASIL PENYULINGAN METODE KUKUS
The purpose of this research is to identify the chemical components of sandalwood oil by using the Gas Chromato- graphy. The sandalwood oil was obtained by steam and water distillation of sandalwood particles which are passina and not passing through a 40 mesh scree...
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2017-08-01
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Series: | Jurnal Penelitian Hasil Hutan (Journal of Forest Products Research) |
Online Access: | http://ejournal.forda-mof.org/ejournal-litbang/index.php/JPHH/article/view/3488 |
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doaj-16011bd253004bf9b54660f54b0841fb2020-11-24T21:52:46ZindForest Product Research and Development CenterJurnal Penelitian Hasil Hutan (Journal of Forest Products Research)0216-43292442-89572017-08-011011610.20886/jphh.1992.10.1.1-62482ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA HASIL PENYULINGAN METODE KUKUSAbdul Hakim Lukman0Bambang Wiyono1pusat penelitian dan pengembangan hasil hutanpusat penelitian dan pengembangan hasil hutanThe purpose of this research is to identify the chemical components of sandalwood oil by using the Gas Chromato- graphy. The sandalwood oil was obtained by steam and water distillation of sandalwood particles which are passina and not passing through a 40 mesh screener, each for 18 and 24 hours distilling times. The identification of the peak of chemical components were done by comparing. the relatioe retention time of the peak of chemical components to that of the chemical so.lution standard, The peak area of each chemical component was calculated .by normalizaion method. The result showed that the distilling of sandalwood particles not passing 40 mesh screener for 18 and 24 hour distilling times each produced oils having as many as 26 and 28 peaks of chemical components respect wely. On the other hand, the particles passing 40 mesh screener. distilled for 18 and 24 hours exhibited as many es 28 peaks. Nevertheles. only eight chemical components could be identified from them, they are: a-pinene limonene α.santalene terpineol-4, ϐ-santalene nerolido L B-santaloL. and farnesol. Teroineo 1-4. nerolidol. B.santalol and farnesol camponents constituled the sandalwood oii: Those where usually categoried as the total santalol. The sandalwood oil distilled from the larger particles not passing 40 mesh screener for 18 and 24 hour distilling times contained the total santalol of 79. 81 a,nd 81. 45 percent, respectively. Furtheremore, the particles passing 40 mesh screener distilled for 18 and 24 hours produced oil containing 81, 74 and 80.88 percent of total santalol for each distilling time.http://ejournal.forda-mof.org/ejournal-litbang/index.php/JPHH/article/view/3488 |
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 HASIL PENYULINGAN METODE KUKUS 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 HASIL PENYULINGAN METODE KUKUS |
title_short |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA HASIL PENYULINGAN METODE KUKUS |
title_full |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA HASIL PENYULINGAN METODE KUKUS |
title_fullStr |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA HASIL PENYULINGAN METODE KUKUS |
title_full_unstemmed |
ANALISIS KOMPONEN KIMIA MINYAK KAYU CENDANA HASIL PENYULINGAN METODE KUKUS |
title_sort |
analisis komponen kimia minyak kayu cendana hasil penyulingan metode kukus |
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 the chemical components of sandalwood oil by using the Gas Chromato- graphy. The sandalwood oil was obtained by steam and water distillation of sandalwood particles which are passina and not passing through a 40 mesh screener, each for 18 and 24 hours distilling times. The identification of the peak of chemical components were done by comparing. the relatioe retention time of the peak of chemical components to that of the chemical so.lution standard, The peak area of each chemical component was calculated .by normalizaion method.
The result showed that the distilling of sandalwood particles not passing 40 mesh screener for 18 and 24 hour distilling times each produced oils having as many as 26 and 28 peaks of chemical components respect wely. On the other hand, the particles passing 40 mesh screener. distilled for 18 and 24 hours exhibited as many es 28 peaks. Nevertheles. only eight chemical components could be identified from them, they are: a-pinene limonene α.santalene terpineol-4, ϐ-santalene nerolido L B-santaloL. and farnesol. Teroineo 1-4. nerolidol. B.santalol and farnesol camponents constituled the sandalwood oii: Those where usually categoried as the total santalol. The sandalwood oil distilled from the larger particles not passing 40 mesh screener for 18 and 24 hour distilling times contained the total santalol of 79. 81 a,nd 81. 45 percent, respectively. Furtheremore, the particles passing 40 mesh screener distilled for 18 and 24 hours produced oil containing 81, 74 and 80.88 percent of total santalol for each distilling time. |
url |
http://ejournal.forda-mof.org/ejournal-litbang/index.php/JPHH/article/view/3488 |
work_keys_str_mv |
AT abdulhakimlukman analisiskomponenkimiaminyakkayucendanahasilpenyulinganmetodekukus AT bambangwiyono analisiskomponenkimiaminyakkayucendanahasilpenyulinganmetodekukus |
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