KOH和NaOH催化瓜子油制备生物柴油的研究

A. Ayoola, R. Babalola, M. Ojewumi, O. Fayomi
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引用次数: 2

摘要

本研究对KOH和NaOH催化剂(分别使用和等比例组合)在瓜子油反式酯化反应中的作用进行了对比分析。考察了甲醇/油摩尔比、催化剂浓度、反应温度和反应时间对生物柴油收率的主要影响及其相互作用。结果表明,在相同的实验条件下,KOH催化的反式酯化反应产率最高,其次是NaOH催化的反式酯化反应,然后是两种催化剂混合(比例相等)的反式酯化反应。KOH催化工艺的最佳条件为甲醇/油摩尔比为6.11,KOH浓度为1.20 w/w%油,反应温度为50℃,反应时间为83 min,最佳产率为80.7%。NaOH催化工艺的最佳条件为甲醇/油摩尔比为6.20,NaOH浓度为1.19 w/w%油,反应温度为52℃,反应时间为83 min,最佳收率为77.9%。两种催化剂混合反应的最佳工艺条件为甲醇/油摩尔比为6.08,催化剂浓度为1.05 w/w%油,反应温度为56℃,反应时间为85 min,收率为76.2%。对这三类分析进行的物质平衡有利于KOH反式酯化过程,这三类生物柴油产率模型的R2值分别为0.9489、0.9631和0.9605,具有较高的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of KOH and NaOH Catalysed Biodiesel from Melon Seed Oil
In this study, the comparative analysis of KOH and NaOH catalysts (used separately and combined in equal proportion) during the trans-esterification of melon seed oil was investigated. The major effects and interactions of four variables (methanol/oil mole ratio, catalyst concentration, reaction temperature and reaction time) on the yield of biodiesel were studied. The results showed that, under the same experimental conditions, KOH catalyzed trans-esterification produced the highest biodiesel yield, followed by NaOH catalyzed process and then trans-esterification process involving a mixture of the two catalysts (in equal proportion). KOH catalysed process gave optimum conditions of 6.11 methanol/oil mole ratio, KOH concentration of 1.20 w/w% Oil, reaction temperature of 50 _C, reaction time of 83 minutes and optimum yield of 80.7%. NaOH catalysed process gave optimum conditions of 6.20 methanol/oil mole ratio, NaOH concentration of 1.19 w/w% Oil, reaction temperature of 52 _C, reaction time of 83 minutes and optimum yield of 77.9%. While the process involving the mixture of the two catalysts gave optimum conditions of 6.08 methanol/oil mole ratio, catalyst concentration of 1.05 w/w% Oil, reaction temperature of 56 _C, reaction time of 85 minutes and optimum yield of 76.2%. Material balance carried out on the three categories of analysis favoured KOH trans-esterification process and the suitability of the biodiesel yield models obtained in these three categories was justified by high R2 values of 0.9489, 0.9631 and 0.9605 respectively.
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