Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System

The objective of this work is to propose a reaction mechanism and develop a model for the synthesis of isoamyl acetate from isoamyl alcohol and acetate anhydride by using lipase from Candida antarctica in a solvent-free system. Ping-Pong Bi-Bi reaction mechanism with acetic anhydride and acetic a...

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Main Authors: Leong , Sim Siong, Azudin, Nurhazwani Yusoff, Shukor, Syamsul Rizal Abd
Format: Article
Language:English
Published: Taylor's University 2014
Subjects:
Online Access:http://eprints.usm.my/42730/1/JES_Vol._10_2014-Art._7-%2859-71%29.pdf
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author Leong , Sim Siong
Azudin, Nurhazwani Yusoff
Shukor, Syamsul Rizal Abd
author_facet Leong , Sim Siong
Azudin, Nurhazwani Yusoff
Shukor, Syamsul Rizal Abd
author_sort Leong , Sim Siong
collection USM
description The objective of this work is to propose a reaction mechanism and develop a model for the synthesis of isoamyl acetate from isoamyl alcohol and acetate anhydride by using lipase from Candida antarctica in a solvent-free system. Ping-Pong Bi-Bi reaction mechanism with acetic anhydride and acetic acid inhibition is found to be the mechanism which is able to describe this reaction. Unknown parameters of the model developed are obtained by minimising deviation of model prediction from experimental result and it is performed by the Solver Tool in Microsoft Excel. The model prediction is found to match the experimental data quite well (average percentage error = 8.08%)
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spelling usm.eprints-427302018-10-25T08:21:32Z http://eprints.usm.my/42730/ Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System Leong , Sim Siong Azudin, Nurhazwani Yusoff Shukor, Syamsul Rizal Abd TA1-2040 Engineering (General). Civil engineering (General) The objective of this work is to propose a reaction mechanism and develop a model for the synthesis of isoamyl acetate from isoamyl alcohol and acetate anhydride by using lipase from Candida antarctica in a solvent-free system. Ping-Pong Bi-Bi reaction mechanism with acetic anhydride and acetic acid inhibition is found to be the mechanism which is able to describe this reaction. Unknown parameters of the model developed are obtained by minimising deviation of model prediction from experimental result and it is performed by the Solver Tool in Microsoft Excel. The model prediction is found to match the experimental data quite well (average percentage error = 8.08%) Taylor's University 2014 Article PeerReviewed application/pdf en http://eprints.usm.my/42730/1/JES_Vol._10_2014-Art._7-%2859-71%29.pdf Leong , Sim Siong and Azudin, Nurhazwani Yusoff and Shukor, Syamsul Rizal Abd (2014) Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System. Journal of Engineering Science and Technology, 10. pp. 59-71. ISSN 1823-4690 http://web.usm.my/jes/10_2014/JES%20Vol.%2010%202014-Art.%207-(59-71).pdf
spellingShingle TA1-2040 Engineering (General). Civil engineering (General)
Leong , Sim Siong
Azudin, Nurhazwani Yusoff
Shukor, Syamsul Rizal Abd
Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System
title Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System
title_full Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System
title_fullStr Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System
title_full_unstemmed Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System
title_short Process Modelling of Isoamyl Acetate Synthesis Catalysed by Lipase from Candida antarctica in a Solvent-free System
title_sort process modelling of isoamyl acetate synthesis catalysed by lipase from candida antarctica in a solvent free system
topic TA1-2040 Engineering (General). Civil engineering (General)
url http://eprints.usm.my/42730/1/JES_Vol._10_2014-Art._7-%2859-71%29.pdf
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