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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Biocatalytic esterification of palm oil fatty acids for biodiesel production using glycine-based cross-linked protein coated microcrystalline lipase
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Biocatalytic esterification of palm oil fatty acids for biodiesel production using glycine-based cross-linked protein coated microcrystalline lipase

机译:使用基于甘氨酸的交联蛋白包被的微晶脂肪酶对棕榈油脂肪酸进行生物柴油酯化反应以生产生物柴油

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摘要

Conversion of feedstocks containing high free fatty acid contents to alkyl esters is limited by the currently used alkali-catalyzed biodiesel synthesis process, in this study, esterification of palm fatty acids to ethyl esters was studied using heterogeneous cross-linked protein coated microcrystalline (CL-PCMC) lipase. Optimization of biocatalyst synthesis by variation of matrix components and organic solvents showed that highly active CL-PCMCs could be prepared from Thermomyces lanuginosus lipase with glycine as the core matrix in acetone. The optimized reaction contained 20% (w/w) glycine-based CL-PCMC-lipase, a 1:4 fatty acid molar equivalence to ethanol in the presence of an equimolar amount of tert-butanol which led to production of 87.2% and 81.4% (mol/mol) of ethyl ester from palmitic acid and industrial palm fatty acid distillate (PFAD), respectively after incubation at 50 - C for 6 h. CL-PCMC-lipase is more catalytically efficient than protein coated microcrystalline (PCMC) lipase, Novozyme~R 435 and Lipolase 100T for both free fatty acids and palm fatty acid distillate. The CL-PCMC-lipase showed high operational stability with no significant loss in product yield after 8 consecutive batch cycles. The glycine-based microcrystalline lipase is thus a promising alternative economical biocatalyst for biodiesel production from inexpensive feedstocks with high free fatty acid contents.
机译:含有高游离脂肪酸含量的原料向烷基酯的转化受到当前使用的碱催化生物柴油合成工艺的限制。在这项研究中,使用异质交联蛋白包被的微晶(CL- PCMC)脂肪酶。通过改变基质成分和有机溶剂来优化生物催化剂的合成结果表明,以甘氨酸为核心的丙酮酸羊毛霉脂肪酶可以制备高活性的CL-PCMC。优化的反应包含20%(w / w)的基于甘氨酸的CL-PCMC-脂肪酶,在等摩尔量的叔丁醇存在下,乙醇与乙醇的摩尔比为1:4,导致产生87.2%和81.4在50°C下孵育6小时后,分别从棕榈酸和工业用棕榈脂肪酸馏出物(PFAD)中得到的%(mol / mol)乙酯。对于游离脂肪酸和棕榈脂肪酸馏出物,CL-PCMC-脂肪酶比蛋白涂层微晶(PCMC)脂肪酶Novozyme-R 435和Lipolase 100T具有更高的催化效率。 CL-PCMC-脂肪酶显示出高的操作稳定性,连续8个批处理周期后产品收率没有明显损失。因此,基于甘氨酸的微晶脂肪酶是用于从廉价的具有高游离脂肪酸含量的原料生产生物柴油的有前景的替代性经济生物催化剂。

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