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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Combining enzymatic esterification with conventional alkaline transesterification in an integrated biodiesel process
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Combining enzymatic esterification with conventional alkaline transesterification in an integrated biodiesel process

机译:在集成的生物柴油工艺中将酶促酯化与常规碱性酯交换反应相结合

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摘要

An integrated biodiesel process that combines enzymatic esterification and alkaline transesterification is suggested. With focus on the enzymatic step, the paper provides proof of concept and suggestions for further process development. Hence, palm fatty acid distillate (PFAD) has been enzymatically converted to fatty acid methyl esters in a two-step process using the immobilized lipase Novozym 435 in packed-bed columns. With only a small excess of methanol, the first reaction stage could reduce the free fatty acid (FFA) content from 85% to 5%. After removal of water by simple phase separation, it was possible to lower the FFA content to 2.5% in a second reaction stage. Both reaction stages are relatively fast with suggested reaction times of 15 min in column 1 (productivity 10 kg/kg/h) and 30 min in column 2 (productivity 5 kg/kg/h), resulting in 15% FFA after column 1 and 5% FFA after column 2. A lifetime study indicated that approximately 3,500 kg PFAD/kg Novozym 435 can be treated in the first reaction stage before the enzyme has become fully inactivated. With further optimization, the enzymatic process could be a real alternative to today's sulfuric acid catalyzed process.
机译:建议结合酶促酯化和碱性酯交换反应的生物柴油综合工艺。本文着重于酶促步骤,为进一步的工艺开发提供了概念证明和建议。因此,在固定床色谱柱中使用固定化脂肪酶Novozym 435的两步过程已将棕榈脂肪酸馏出物(PFAD)酶解为脂肪酸甲酯。仅需少量过量的甲醇,第一反应阶段就可以将游离脂肪酸(FFA)的含量从85%降低至5%。通过简单的相分离除去水后,可以在第二反应阶段将FFA含量降低至2.5%。两个反应阶段都相对较快,建议的反应时间在第1列中为15分钟(生产率10 kg / kg / h),在第2列中为30分钟(生产率5 kg / kg / h),在第1列和第2列之后得到15%的FFA在第2栏后添加5%FFA。一项寿命研究表明,在酶完全失活之前的第一个反应阶段,可以处理约3500 kg PFAD / kg Novozym 435。通过进一步优化,酶促工艺可以替代当今的硫酸催化工艺。

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