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通过脂肪酸提取和酶促酯化从植物油和微藻生产生物柴油。

Production of biodiesel from vegetable oil and microalgae by fatty acid extraction and enzymatic esterification.

作者信息

Castillo López Beatriz, Esteban Cerdán Luis, Robles Medina Alfonso, Navarro López Elvira, Martín Valverde Lorena, Hita Peña Estrella, González Moreno Pedro A, Molina Grima Emilio

机构信息

Area of Chemical Engineering, University of Almería, 04120, Almería, Spain.

出版信息

J Biosci Bioeng. 2015 Jun;119(6):706-11. doi: 10.1016/j.jbiosc.2014.11.002. Epub 2015 Jan 6.

DOI:10.1016/j.jbiosc.2014.11.002
PMID:25575971
Abstract

The aim of this work was to obtain biodiesel (methyl esters) from the saponifiable lipids (SLs) fraction of the microalga Nannochloropsis gaditana, whose biomass dry weight contains 12.1 wt% of these lipids. SLs were extracted from the microalga as free fatty acids (FFAs) for subsequent transformation to methyl esters (biodiesel) by enzymatic esterification. Extraction as FFAs rather than as SLs allows them to be obtained with higher purity. Microalgal FFAs were obtained by direct saponification of lipids in the biomass and subsequent extraction-purification with hexane. Esterification of FFAs with methanol was catalysed by lipase Novozym 435 from Candida antarctica. Stability studies of this lipase in the operational conditions showed that the esterification degree (ED) attained with the same batch of lipase remained constant over six reaction cycles (36 h total reaction time). The optimal conditions attained for 4 g of FFAs were 25°C, 200 rpm, methanol/FFA molar ratio of 1.5:1, Novozym 435/FFA ratio of 0.025:1 w/w and 4 h reaction time. In these conditions the ED attained was 92.6%, producing a biodiesel with 83 wt% purity from microalgal FFAs. Several experimental scales were tested (from 4 to 40 g FFAs), and in all cases similar EDs were obtained.

摘要

这项工作的目的是从微藻加的斯拟微绿球藻的可皂化脂质(SLs)部分中获取生物柴油(甲酯),该微藻的生物质干重中含有12.1 wt%的这些脂质。将SLs从微藻中以游离脂肪酸(FFAs)的形式提取出来,随后通过酶促酯化反应将其转化为甲酯(生物柴油)。以FFAs而非SLs的形式进行提取可使其获得更高的纯度。微藻FFAs通过对生物质中的脂质进行直接皂化,随后用己烷进行提取-纯化来获得。FFAs与甲醇的酯化反应由来自南极假丝酵母的脂肪酶诺维信435催化。该脂肪酶在操作条件下的稳定性研究表明,同一批脂肪酶所达到的酯化程度(ED)在六个反应循环(总反应时间36小时)内保持恒定。4克FFAs的最佳条件为25°C、200转/分钟、甲醇/FFA摩尔比为1.5:1、诺维信435/FFA比例为0.025:1 w/w以及反应时间4小时。在这些条件下所达到的ED为92.6%,从微藻FFAs中生产出纯度为83 wt%的生物柴油。测试了几个实验规模(从4克到40克FFAs),在所有情况下都获得了相似的ED。

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