The Effect of CaO Catalyst Mass from Golden Snail Shell (Pomacea Canaliculata Lamarck) on Transesterification Reaction

F. Rahman, S. Rodiah
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引用次数: 1

Abstract

Biodiesel derived from waste encourages the development of environment-friendly alternative energy. One of the wastes that can be used as biodiesel is waste cooking oil. Biodiesel from waste cooking oil has some advantages such as non-toxic, less Carbon monoxide (CO), and environment-friendly. The produce of biodiesel from waste cooking oil was through transesterification reaction using CaO catalyst derived from golden snail shell. This study aimed to determine the optimum amount of catalyst that produced the highest yield. In this study, methanol was used as solvent by the molar ratio of methanol/waste cooking oil of 30:1, reaction temperature of 65˚C, reaction time for 2 hour, and variations of amount catalyst 3%, 5% and 7% by weight waste cooking oil. Biodiesel was analyzed by Gas Chromatography-Mass Spectroscopy showed that the highest yield achieved using 7% catalyst amounts was 93.28%.
金螺壳中CaO催化剂质量对酯交换反应的影响
从废物中提取的生物柴油鼓励了环保替代能源的发展。其中一种可以用作生物柴油的废物是废弃的食用油。废食用油生物柴油具有无毒、一氧化碳含量低、环境友好等优点。以金螺壳为原料,以CaO为催化剂,通过酯交换反应制备生物柴油。本研究旨在确定产生最高收率的最佳催化剂用量。以甲醇为溶剂,甲醇与废食用油的摩尔比为30:1,反应温度为65℃,反应时间为2 h,催化剂用量为废食用油重量的3%、5%和7%。气相色谱-质谱分析表明,在催化剂用量为7%的情况下,生物柴油的收率最高可达93.28%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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