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使用搅拌槽式反应器(STR)通过脂肪酶催化生产和纯化棕榈酸酯。

Lipase-catalyzed Production and Purification of Palm Esters Using Stirred Tank Reactors (STR).

作者信息

Basri Mahiran, Rahman Nur Fariza Abdul, Kassim Mohd Azlan, Shahruzzaman Raja Mohd Hafriz Raja, Mokles Mohd Shukri Nor

机构信息

Department of Chemistry, Faculty of Science, Universiti Putra Malaysia.

Institute of Bioscience, Universiti Putra Malaysia.

出版信息

J Oleo Sci. 2019 Apr 1;68(4):329-337. doi: 10.5650/jos.ess18197. Epub 2019 Mar 13.

Abstract

Lipase-catalyzed production of palm esters was performed via alcoholysis of palm oil and oleyl alcohol in solvent and solvent-free systems using a 2 L stirred tank reactor (STR). Two immobilized lipases were tested and Lipozyme RM IM exhibited superior performance in both reaction systems. Reusability studies of the enzymes in a solvent-free system also demonstrated the high stability of Lipozyme RM IM as shown by its ability to yield more than 70% palm esters with up to 19 cycles of reusing the same enzymes. Modification of the enzyme washing process improved the stability of Lipozyme TL IM in a solvent system as demonstrated by maintaining 65% yield after 5 times of repeated enzyme use. The scale up process for both lipases was conducted in the presence of solvents by using the impeller tip speed approach. Lipozyme RM IM-catalyzed reaction in a 15 L STR produced 85.7% yield and there was a significant drop to 60.7% in the 300 L STR, whereas Lipozyme TL IM had a lower yield (65%) when the reaction volume was increased to 15 L. The low yields could be due to the accumulation of enzymes at the bottom of the vessel. Purification of palm esters via solvent-solvent extraction revealed that more than 90% of oleyl alcohol was extracted after the third extraction cycle at 150 rpm impeller speed with reduced palm esters: ethanol ratio (v/v) from 1:4 to 1:3.

摘要

在有溶剂和无溶剂体系中,使用2升搅拌釜式反应器(STR)通过棕榈油与油醇的醇解反应,进行脂肪酶催化生产棕榈酸酯。测试了两种固定化脂肪酶,结果表明Lipozyme RM IM在两个反应体系中均表现出优异性能。无溶剂体系中酶的重复使用性研究也证明了Lipozyme RM IM具有很高的稳定性,在重复使用相同酶多达19个循环时,其仍能产生超过70%的棕榈酸酯。改进酶的洗涤工艺提高了Lipozyme TL IM在溶剂体系中的稳定性,在重复使用酶5次后仍能保持65%的产率。通过采用叶轮尖速方法,在有溶剂存在的情况下对两种脂肪酶进行了放大生产。在15升搅拌釜式反应器中,Lipozyme RM IM催化的反应产率为85.7%,而在300升搅拌釜式反应器中显著降至60.7%;当反应体积增加到15升时,Lipozyme TL IM的产率较低(65%)。产率低可能是由于酶在容器底部积累所致。通过溶剂 - 溶剂萃取法纯化棕榈酸酯的结果表明,在150转/分钟的叶轮转速下,经过第三个萃取循环后,超过90%的油醇被萃取出来,同时棕榈酸酯与乙醇的比例(体积/体积)从1:4降至1:3。

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