Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization

Long-chain monounsaturated fatty acid ethyl esters (LMFAEE) and fatty alcohol acetates (LMFAA) are important functional compounds in industry, and new sources are needed. In this study, jojoba oil was interesterified with ethyl acetate (EA) for the combined production of LMFAEE and LMFAA. Lipozyme R...

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Main Authors: Lei, Qiong, Li, Tianhu
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2015
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Online Access:https://hdl.handle.net/10356/95819
http://hdl.handle.net/10220/25648
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-958192020-03-07T12:37:21Z Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization Lei, Qiong Li, Tianhu School of Physical and Mathematical Sciences DRNTU::Science::Chemistry::Physical chemistry::Reactions and kinetics Long-chain monounsaturated fatty acid ethyl esters (LMFAEE) and fatty alcohol acetates (LMFAA) are important functional compounds in industry, and new sources are needed. In this study, jojoba oil was interesterified with ethyl acetate (EA) for the combined production of LMFAEE and LMFAA. Lipozyme RM IM and Novozym 435 were employed as the biocatalyst and their efficiencies were compared. Aliquot removal and subsequent 1H NMR analysis were used to monitor reaction progress and determine the interesterification yield (IY, %). Optimization of this reaction was conducted for both lipases with respect to four experimental parameters: temperature, EA content, immobilized lipase load, and reaction time. The highest IY in the presence of Novozym 435 was 97%, which was achieved after 9 hours of reaction at 37°C with 75 wt% EA and 5.00 wt% lipase load at 300 rpm, whereas the IY was 76% in the case of Lipozyme RM IM. The interesterified product was purified by preparative TLC and characterized by 1H NMR, FT-IR and GC-MS, indicating the main components are ethyl cis-11-eicosenoate (44%), cis-11-eicosenyl acetate (25%) and cis-13-docosenyl acetate (22%). Novozym 435 exhibited excellent operational stability over 17 interesterification cycles with ca. 12% IY decrease. Practical applications: Conversion of the rare LMF-acid/alcohol source from jojoba oil to LMFAEE and LMFAA was realized in a one step interesterification reaction. The obtained jojobyl LMFAEE and LMFAA, in mixture or purified form, can serve as functional ingredients in various upmarket products, such as functional lipids, fragrances, cosmetics, pharmaceuticals and lubricants. Cis-11-eicosenyl acetate and cis-13-docosenyl acetate are also important insect pheromones in biological study. Additionally, the lipase reuse can help reduce cost significantly, making jojoba oil more economically attractive for industrial application. 2015-05-22T03:58:25Z 2019-12-06T19:22:01Z 2015-05-22T03:58:25Z 2019-12-06T19:22:01Z 2015 2015 Journal Article Lei, Q., & Li, T. (2015). Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization. European journal of lipid science and technology, 117(5), 630-636. 1438-7697 https://hdl.handle.net/10356/95819 http://hdl.handle.net/10220/25648 10.1002/ejlt.201400458 en European journal of lipid science and technology © 2015 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Science::Chemistry::Physical chemistry::Reactions and kinetics
spellingShingle DRNTU::Science::Chemistry::Physical chemistry::Reactions and kinetics
Lei, Qiong
Li, Tianhu
Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization
description Long-chain monounsaturated fatty acid ethyl esters (LMFAEE) and fatty alcohol acetates (LMFAA) are important functional compounds in industry, and new sources are needed. In this study, jojoba oil was interesterified with ethyl acetate (EA) for the combined production of LMFAEE and LMFAA. Lipozyme RM IM and Novozym 435 were employed as the biocatalyst and their efficiencies were compared. Aliquot removal and subsequent 1H NMR analysis were used to monitor reaction progress and determine the interesterification yield (IY, %). Optimization of this reaction was conducted for both lipases with respect to four experimental parameters: temperature, EA content, immobilized lipase load, and reaction time. The highest IY in the presence of Novozym 435 was 97%, which was achieved after 9 hours of reaction at 37°C with 75 wt% EA and 5.00 wt% lipase load at 300 rpm, whereas the IY was 76% in the case of Lipozyme RM IM. The interesterified product was purified by preparative TLC and characterized by 1H NMR, FT-IR and GC-MS, indicating the main components are ethyl cis-11-eicosenoate (44%), cis-11-eicosenyl acetate (25%) and cis-13-docosenyl acetate (22%). Novozym 435 exhibited excellent operational stability over 17 interesterification cycles with ca. 12% IY decrease. Practical applications: Conversion of the rare LMF-acid/alcohol source from jojoba oil to LMFAEE and LMFAA was realized in a one step interesterification reaction. The obtained jojobyl LMFAEE and LMFAA, in mixture or purified form, can serve as functional ingredients in various upmarket products, such as functional lipids, fragrances, cosmetics, pharmaceuticals and lubricants. Cis-11-eicosenyl acetate and cis-13-docosenyl acetate are also important insect pheromones in biological study. Additionally, the lipase reuse can help reduce cost significantly, making jojoba oil more economically attractive for industrial application.
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Lei, Qiong
Li, Tianhu
format Article
author Lei, Qiong
Li, Tianhu
author_sort Lei, Qiong
title Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization
title_short Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization
title_full Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization
title_fullStr Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization
title_full_unstemmed Functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization
title_sort functional monoesters of jojoba oil can be produced by enzymatic interesterification : reaction analysis and structural characterization
publishDate 2015
url https://hdl.handle.net/10356/95819
http://hdl.handle.net/10220/25648
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