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Synthesis of biodiesel from waste cooking oil using heterogeneous CaO catalyst: Effect of stirring speed

机译:非均相CAO催化剂从废料烹饪油中合成生物柴油:搅拌速度的影响

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Synthesis of biodiesel from waste cooking oil (WCO) using calcium oxide as heterogeneous catalyst which focusing on the effect of stirring speed was investigated. WCO can be utilized as biodiesel's raw material to reduce both biodiesel production as well as waste treatment cost. As WCO contained of solid and other impurities that need to be separated, a series of pre-treatment processes were applied. Subsequently, esterification process was done to decrease free fatty acid (FFA) content of WCO. As WCO contained low FFA content, trans-esterification was conducted to produce methyl ester. Transesterification process used CaO as heterogeneous base catalyst, so stirring speed is the important factor to produce high quality biodiesel. In this study, the effect of stirring speed on transesterification process using CaO were investigated in different stirring speeds for 4 hours with temperature of 60°C and loading catalyst CaO 1 wt% constantly. Biodiesel was characterized by FTIR, GC-FID, viscometer, pycnometer, and GC-MS. The yield and maximum methyl ester content were approximately 80% and 98.9%, respectively, under optimal operating stirring speed of 500 rpm. Biodiesel produced has already meet the specification in accordance to Indonesia Standard National (SNI) Biodiesel number 7182:2015.
机译:研究了使用氧化钙作为氧化钙的废物烹饪油(WCO)的生物柴油,作为聚焦搅拌速度效果的异质催化剂。 WCO可用作生物柴油的原料,以减少生物柴油生产以及废物处理成本。作为需要分离的固体和其他杂质的WCO,应用了一系列预处理过程。随后,进行酯化过程以减少WCO的游离脂肪酸(FFA)含量。随着WCO含有低FFA含量,进行反式酯化以产生甲酯。酯交换过程使用CAO作为异质碱催化剂,因此搅拌速度是生产高质量生物柴油的重要因素。在该研究中,在不同的搅拌速度下研究了使用CaO的酯交换过程对酯交换过程的效果4小时,温度温度为60℃并不断加载催化剂CaO 1wt%。生物柴油的特点是FTIR,GC-FID,粘度计,Pycnometer和GC-MS。在最佳操作搅拌速度为500rpm的最佳操作搅拌速度下,产量和最大甲酯含量分别为约80%和98.9%。生物柴油已经符合印度尼西亚标准国家(SNI)生物柴油7182:2015的规范。

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