Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex

, . Study on synthesis of sorbitol oleiate ester biosurfactan using Carica papaya latex immobilized-hpase as catalyst was caned out using oleic acid as a raw material. In the first step, process optimization for biosurfactan production was done with Carica papaya latex immobilized-lipase as acatalys...

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Main Author: Perpustakaan UGM, i-lib
Format: Article
Published: [Yogyakarta] : Universitas Gadjah Mada 2006
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author Perpustakaan UGM, i-lib
author_facet Perpustakaan UGM, i-lib
author_sort Perpustakaan UGM, i-lib
collection UGM
description , . Study on synthesis of sorbitol oleiate ester biosurfactan using Carica papaya latex immobilized-hpase as catalyst was caned out using oleic acid as a raw material. In the first step, process optimization for biosurfactan production was done with Carica papaya latex immobilized-lipase as acatalyst using a semi continuous methods. Lipase from Carica papaya latex was extracted using phosphate buffer pH 7.3 containing NaCI 0.1M then precipitated with addition of ammonium sulphate. Furthermore, the precipitated enzyme was solubilized in phosphate buffer pH 7.3, immobilized on Na-alginat (3%) and dried in freeze drier. Some variables for reaction were studied consisting of water concentration (20, 40, 60%), silica gel (0, 60, 120%) and reaction time (24,48,72 hours) with lipase concentration of 10%, and incubated at 45°C for those determined times and the acid value was monitored. In the second step, production of biosurfactant was also carried out using the semi-continuous methods, oleic acid and sorbitol were used as reactans and immobilzed-lipase of Carica papaya latex as a catalyst. Product fungsional properties were also determined including hydroxyl value, refraction index, melting point, fatty acid composition and HLB ( hydrophylic-lipophylic balance) value, surface tension and emulsifier characteristics. Result showed that : semi continuous production of sorbitol fatty acid ester with feed rate 0.1 ml per minute, temperature 45°C, 10% immobilized-lipse of Carica papaya latex, water: sorbitol ratio (40.16%), silica gel: water ratio (63.66%), sorbitol : oleic acid ratio (1:3 mol), incubation time 41.37 hours, resulted 54.96% product. The product characteristics were as follows : sorbitol oleiate acid ester content 70%, rendement 60%, hydroxil value 57 mg KOH/g, melting point 165°C, refractive index 1.4590, HLB value 7.5, surface tension 31.83 dyne/cm, capacity to keep emulsion (W/O) stability 140 minutes. Key words : Biosurfactan, sorbitol oleiate ester, immobilized lipase of Carica papaya latex .
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spelling oai:generic.eprints.org:207562014-06-18T00:26:13Z https://repository.ugm.ac.id/20756/ Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex Perpustakaan UGM, i-lib Jurnal i-lib UGM , . Study on synthesis of sorbitol oleiate ester biosurfactan using Carica papaya latex immobilized-hpase as catalyst was caned out using oleic acid as a raw material. In the first step, process optimization for biosurfactan production was done with Carica papaya latex immobilized-lipase as acatalyst using a semi continuous methods. Lipase from Carica papaya latex was extracted using phosphate buffer pH 7.3 containing NaCI 0.1M then precipitated with addition of ammonium sulphate. Furthermore, the precipitated enzyme was solubilized in phosphate buffer pH 7.3, immobilized on Na-alginat (3%) and dried in freeze drier. Some variables for reaction were studied consisting of water concentration (20, 40, 60%), silica gel (0, 60, 120%) and reaction time (24,48,72 hours) with lipase concentration of 10%, and incubated at 45°C for those determined times and the acid value was monitored. In the second step, production of biosurfactant was also carried out using the semi-continuous methods, oleic acid and sorbitol were used as reactans and immobilzed-lipase of Carica papaya latex as a catalyst. Product fungsional properties were also determined including hydroxyl value, refraction index, melting point, fatty acid composition and HLB ( hydrophylic-lipophylic balance) value, surface tension and emulsifier characteristics. Result showed that : semi continuous production of sorbitol fatty acid ester with feed rate 0.1 ml per minute, temperature 45°C, 10% immobilized-lipse of Carica papaya latex, water: sorbitol ratio (40.16%), silica gel: water ratio (63.66%), sorbitol : oleic acid ratio (1:3 mol), incubation time 41.37 hours, resulted 54.96% product. The product characteristics were as follows : sorbitol oleiate acid ester content 70%, rendement 60%, hydroxil value 57 mg KOH/g, melting point 165°C, refractive index 1.4590, HLB value 7.5, surface tension 31.83 dyne/cm, capacity to keep emulsion (W/O) stability 140 minutes. Key words : Biosurfactan, sorbitol oleiate ester, immobilized lipase of Carica papaya latex . [Yogyakarta] : Universitas Gadjah Mada 2006 Article NonPeerReviewed Perpustakaan UGM, i-lib (2006) Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex. Jurnal i-lib UGM. http://i-lib.ugm.ac.id/jurnal/download.php?dataId=3612
spellingShingle Jurnal i-lib UGM
Perpustakaan UGM, i-lib
Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex
title Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex
title_full Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex
title_fullStr Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex
title_full_unstemmed Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex
title_short Sintesis secara semi kontinyu biosurfaktan ester sorbitol Oleat menggunakan lipase getah pepaya Iimobil =Semi-continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of Carica papaya latex
title_sort sintesis secara semi kontinyu biosurfaktan ester sorbitol oleat menggunakan lipase getah pepaya iimobil semi continuous synthesis of sorbitol oleiate ester biosurfactan using immobilized lipase of carica papaya latex
topic Jurnal i-lib UGM
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