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Fatty acid methyl esters synthesis from non-edible vegetable oils using supercritical methanol and methyl tert-butyl ether

机译:使用超临界甲醇和甲基叔丁基醚由非食用植物油合成脂肪酸甲酯

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Fatty acid methyl esters (FAMEs) are useful as biodiesel and have environmental benefits compared to conventional diesel. In this study, these esters were synthesized non-catalytically from non-edible vegetable oils: neem oil and mahua oil with two different methylating agents: methanol and methyl tertbutyl ether (MTBE). The effects of temperature, pressure, time and molar ratio on the conversion of triglycerides were studied. The temperature was varied in the range of 523-723 K with molar ratios upto 50:1 and a reaction time of upto 150 min. Conversion of neem and mahua oil to FAMEs with Supercritical methanol was found to be 83% in 15 min and 99% in 10 min, respectively at 698 K. Further, a conversion of 46% of mahua oil and 59% of neem oil was obtained in 15 min at 723 K using supercritical MTBE. The rate constants evaluated using pseudo first order reaction kinetics were in the range of 4.7 x 10(-6) to 1.0 x 10(-3) for the investigated range of temperatures. The activation energies obtained were in the range of 62-113 kJ/mol for the reaction systems investigated. The supercritical synthesis was found to be superior to the catalytic synthesis of the corresponding FAMEs.(C) 2017 Elsevier Ltd. All rights reserved.
机译:脂肪酸甲酯(FAME)可用作生物柴油,并且与常规柴油相比具有环境益处。在这项研究中,这些酯是由非食用植物油:印em油和玛花油与两种不同的甲基化剂:甲醇和甲基叔丁基醚(MTBE)非催化合成的。研究了温度,压力,时间和摩尔比对甘油三酸酯转化率的影响。温度在523-723 K的范围内变化,摩尔比高达50:1,反应时间高达150分钟。发现在698 K下,用超临界甲醇将印em和马化油转化为FAME的转化率分别为83%和10分钟内为99%。此外,获得了46%的马化油和59%的印em油转化率。使用超临界MTBE在723 K下15分钟内完成。对于研究的温度范围,使用拟一级反应动力学评估的速率常数在4.7 x 10(-6)至1.0 x 10(-3)范围内。对于所研究的反应系统,获得的活化能在62-113kJ / mol的范围内。发现超临界合成优于相应FAME的催化合成。(C)2017 Elsevier Ltd.保留所有权利。

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