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An improvement and optimization study of biodiesel production from linseed via in-situ transesterification using a co-solvent

机译:亚麻籽经助溶剂原位酯交换反应生产生物柴油的改进和优化研究

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The objective of this study was to investigate in-situ transesterification study of linseed with methanol in the presence of potassium hydroxide (KOH) for the production of biodiesel. The influence of tetrahydrofuran (THF) as a co-solvent was also investigated. The effect of solvent to solid ratio or solvent and co-solvent to solid ratio (SSR) (1-15 (v/w)), co-solvent to solvent (C-S/S) ratio (0.25-2.25 (v/v)), catalyst concentration (1-13 wt% oil content (w/w)), agitation rate (600-900 rpm), reaction temperature (40 -60 degrees C) and reaction time (90-150 min) was examined to obtain the optimum biodiesel yield and biodiesel quality. The SSR, C-S/S ratio and catalyst concentration were investigated by a set of experiments that designed by "Design Expert" software in responsive surface central composite design (CCD) method with duplication of each test to improve confidence limits. The maximum methyl ester content with using the THF as a co-solvent was 93.15% when: 6.8 wt% as catalyst KOH, 10 as solvent and co-solvent to solid ratio, 0.3 as C-S/S ratio, 40 degrees C as the reaction temperature, 90 min as the reaction time and 700 rpm as the agitation rate were used. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是研究亚麻籽与甲醇在氢氧化钾(KOH)存在下用于生物柴油生产的原位酯交换反应研究。还研究了四氢呋喃(THF)作为助溶剂的影响。溶剂与固体之比或溶剂与助溶剂与固体之比(SSR)(1-15(v / w)),助溶剂与溶剂(CS / S)之比(0.25-2.25(v / v) ),催化剂浓度(1-13 wt%油含量(w / w)),搅拌速率(600-900 rpm),反应温度(40 -60摄氏度)和反应时间(90-150分钟)进行了测试最佳的生物柴油产量和生物柴油质量。 SSR,C-S / S比和催化剂浓度通过“ Design Expert”软件在响应表面中心复合设计(CCD)方法中设计的一组实验进行研究,每个实验重复一次以提高置信度。当以THF为助溶剂时,最大甲酯含量为93.15%,当:6.8 wt%作为催化剂KOH,10作为溶剂和助溶剂与固体的比例,0.3作为CS / S比,40摄氏度作为反应温度为90分钟,反应时间为700rpm,搅拌速度为700rpm。 (C)2017 Elsevier Ltd.保留所有权利。

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