多相催化下废食用油酯交换制备生物柴油的研究

A. Salihu, A. Mahmood, S. Gimba, P. Nzerem, I. Okafor
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引用次数: 1

摘要

不可再生的化石柴油被认为具有潜在的致癌性,对人类健康和环境有严重的危害。本研究旨在通过废食用油(WCO)的酯交换反应生产可再生柴油-生物柴油,研究并确定了各种类型的多相催化剂(即KOH/CaCO3, KOH/CaO和KOH/K2CO3)中最合适的催化剂。对生物柴油进行了理化表征。其中,KOH/CaCO3催化剂在%产率方面表现出最好的催化性能,在密度、酸值、粘度和游离脂肪酸方面表现出较好的燃料质量。这种表现的原因可能是由于它比其他的最基本的特点。因此,选择该催化剂进行优化研究。在催化剂重量为10%、油与甲醇原料摩尔比为1:10的最佳反应条件下,甘油三酯转化率最高,为98.12%。表征结果表明,所制燃料的密度、粘度、酸值、游离脂肪酸等参数均达到生物柴油标准的严格要求,可代替汽油柴油使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of Biodiesel from Waste Cooking Oil by Transesterification Process using Heterogeneous Catalyst
Non-renewable diesel from fossil has been considered as potentially carcinogenic with serious harmful effect to human health and to the environment. This study aimed to produce a renewable diesel –biodiesel- via transesterification of waste cooking oil (WCO), investigated and determined the most suitable amongst various types of heterogenous catalysts (viz a viz KOH/CaCO3, KOH/CaO and KOH/K2CO3). The chemical and physical characterisation of the biodiesel was been carried out. Among the catalysts investigated, KOH/CaCO3 catalyst showed the best catalytic performance in terms of % yield and better fuel quality in density, acid value, viscosity and free fatty acid. The reason for this performance may be due to its most basic characteristic than the others. As a result, this catalyst was selected for the optimisation study. At the optimum reaction conditions of 10 wt% catalyst loading and 1:10 oil to methanol feed mole ratio, triglycerides conversion was highest, 98.12%. The characterisation results shows that the parameters tested (i.e. density, viscosity, acid value and free fatty acid) meet the strict requirements of the biodiesel standard and therefore, the produced fuel can be used in place of the petrol diesel.
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