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两步法在多相催化剂存在下利用可持续原料通过空化辅助合成脂肪酸甲酯。

Cavitation assisted synthesis of fatty acid methyl esters from sustainable feedstock in presence of heterogeneous catalyst using two step process.

机构信息

Chemical Engineering Department, Institute of Chemical Technology, Matunga, Mumbai 40019, India.

Chemical Engineering Department, AISSMS College of Engineering, Pune 411 001, India.

出版信息

Ultrason Sonochem. 2015 Mar;23:165-73. doi: 10.1016/j.ultsonch.2014.08.019. Epub 2014 Sep 4.

Abstract

The present work reports the intensification aspects for the synthesis of fatty acid methyl esters (FAME) from a non-edible high acid value Nagchampa oil (31 mg of KOH/g of oil) using two stage acid esterification (catalyzed by H₂SO₄) followed by transesterification in the presence of heterogeneous catalyst (CaO). Intensification aspects of both stages have been investigated using sonochemical reactors and the obtained degree of intensification has been established by comparison with the conventional approach based on mechanical agitation. It has been observed that reaction temperature for esterification reduced from 65 to 40 °C for the ultrasonic approach whereas there was a significant reduction in the optimum reaction time for transesterification from 4h for the conventional approach to 2.5h for the ultrasound assisted approach. Also the reaction temperature reduced marginally from 65 to 60 °C and yield increased from 76% to 79% for the ultrasound assisted approach. Energy requirement and activation energy for both esterification and transesterification was lower for the ultrasound based approach as compared to the conventional approach. The present work has clearly established the intensification obtained due to the use of ultrasound and also illustrated the two step approach for the synthesis of FAME from high acid value feedstock based on the use of heterogeneous catalyst for the transesterification step.

摘要

本工作报道了使用两段酸酯化(硫酸催化),然后在非食用高酸值纳加香(31mg KOH/g 油)存在下使用多相催化剂(CaO)进行酯交换,从而强化脂肪酸甲酯(FAME)合成的方法。通过超声反应器研究了两个阶段的强化方面,并通过与基于机械搅拌的常规方法进行比较,确定了获得的强化程度。观察到,超声法的酯化反应温度从 65°C 降低到 40°C,而传统方法的最佳酯交换反应时间从 4 小时显著缩短到超声辅助法的 2.5 小时。此外,超声辅助法的反应温度略有降低,从 65°C 降低到 60°C,产率从 76%提高到 79%。与传统方法相比,超声法的酯化和酯交换的能量需求和活化能都较低。本工作清楚地证实了超声法带来的强化效果,并说明了基于多相催化剂用于酯交换步骤的两步法从高酸值原料合成 FAME。

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