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Continuous sunflower oil methanolysis over quicklime in a packed-bed tubular reactor

机译:在填充床管式反应器中通过生石灰连续进行葵花籽油甲醇分解

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The continuous sunflower oil methanolysis catalyzed by quicklime in a packed-bed tubular reactor of 60 cm height was studied at 60 degrees C using methanol-to-oil molar ratios from 6: 1 to 18: 1 and weight hourly space velocities from 0.188 to 0.376 (kg/kg(cat) h). The main goal was to establish the effect of the process variables on the fatty acid methyl esters (FAME) synthesis. A full factorial design was used to evaluate the significance of the three process factors (methanol-to-oil molar ratio, flow rate of the reactants and bed height) statistically. Moreover, the recently reported kinetic model of methanolysis was used to describe variations of FAME and triacylglycerols (TAG) concentrations along the reactor length. The kinetic model predicted the axial concentration profiles of TAG and FAME in the reactor with acceptable accuracy. A high FAME content (98.5%) could be achieved at the two thirds of the bed of quicklime bits without loss of catalytic activity within 30 h of continuous operation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在60厘米高的填充床管式反应器中,在60厘米高的填充床管式反应器中,通过生石灰催化的连续葵花籽油甲醇分解研究使用的甲醇与油的摩尔比为6:1至18:1,重时空速为0.188至0.376 (kg / kg(猫)h)。主要目标是确定工艺变量对脂肪酸甲酯(FAME)合成的影响。采用全因子设计来统计地评估三个工艺因素(甲醇与油的摩尔比,反应物的流速和床高)的重要性。此外,最近报道的甲醇分解动力学模型用于描述沿反应堆长度方向的FAME和三酰基甘油(TAG)浓度的变化。动力学模型以可接受的精度预测了反应堆中TAG和FAME的轴向浓度分布。在连续操作的30小时内,生石灰片床的三分之二处可达到较高的FAME含量(98.5%),而不会损失催化活性。 (C)2015 Elsevier Ltd.保留所有权利。

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