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FAME production from residual materials: Optimization of the process by Box–Behnken model

机译:剩余材料的成名:Box-Behnken模型的优化过程

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摘要

In the worldwide more than 95% of biodiesel production feedstocks come from edible oils. The waste cooking oils (WCO) are an alternative feedstock for biodiesel production; its usage reduces significantly the cost of biodiesel production and has environmental benefits, e.g., a waste recovery instead of its elimination. This work aimed to optimize the process to produce fatty acid methyl esters (FAME) using the response surface methodology and a Box–Behnken experimental design from mixtures of refined palm oil (RPO) with WCO using a residual solid material as catalyst (biomass fly ashes). The influence on FAME yield of four operational variables (catalyst loading, methanol/oil molar ratio, RPO/WCO ratio and reaction temperature) was studied. The higher FAME yield achieved using the RMS method was 77.06% for: 14.63 wt% of catalyst loading, 5.42/1of methanol/oil molar ratio, 14.81 wt% of RPO in the oil mixture and 55?°C for the reaction temperature.
机译:在全世界,超过95%的生物柴油生产原料来自食用油。废物烹饪油(WCO)是生物柴油生产的替代原料;它的用法显着降低了生物柴油生产的成本,并具有环境益处,例如,废物恢复而不是其消除。这项工作旨在优化使用响应面方法和使用残余固体材料作为催化剂(生物质氟灰)的Refined Palm油(RPO)混合物生产脂肪酸甲酯(FOS-Behnken实验设计来优化生产脂肪酸甲酯(FAME)的方法)。研究了对FAME产量的影响(催化剂负载,甲醇/油摩尔比,RPO / WCO比和反应温度)的影响。使用RMS方法实现的较高的催化剂负荷为77.06%,催化剂负荷的14.63wt%,5.42 / 1甲醇/油摩尔比,油混合物中的RPO 14.81wt%,反应温度为55℃。

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