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Optimization of Biodiesel Production over ChickenEggshell-Derived CaO Catalystin a Continuous Centrifugal Contactor Separator

机译:鸡肉生物柴油生产的优化蛋壳衍生的CaO催化剂在连续离心接触器分离器中

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摘要

Solid calcium oxide (CaO) catalyst was prepared via the calcination of chicken eggshells as an environmentally friendly waste resource and incorporated in a continuous centrifugal contactor separator (CCCS) for intensified biodiesel synthesis. Biodiesel or fatty acid methyl esters (FAME) were produced via the transesterification of sunflower oil (containing 5 wt % tetrahydrofuran as a cosolvent) with methanol under 60 °C and separated from the glycerol and catalyst phases continuously in the CCCS. The influence of reaction parameters on biodiesel production was well modeled by response surface methodology. At an oil flow rate of 9 mL/min, an alcohol to oil molar ratio of 11:1, and a weight hourly space time (defined as the catalyst weight over the oil mass flow rate) of 0.050 h, an optimized FAME yield of 83.2% with a productivity of 638 kgFAME/(m3reactor·h) was achieved. CaO catalyst was reused without significant activity loss for at least four cycles.
机译:固体鸡蛋氧化钙(CaO)催化剂是通过煅烧鸡蛋壳作为一种环境友好的废物资源而制备的,并掺入连续离心接触分离器(CCCS)中以增强生物柴油的合成。通过在60°C下将葵花籽油(含有5 wt%的四氢呋喃作为助溶剂)与甲醇进行酯交换反应,并在CCCS中与甘油和催化剂相连续分离,来生产生物柴油或脂肪酸甲酯(FAME)。反应参数对生物柴油生产的影响通过响应面方法进行了很好的建模。在9 mL / min的油流速,11:1的醇/油摩尔比和0.050 h的时空重(定义为催化剂重量超过油质量流速)下,FAME的最佳收率为产率为83.2%,生产率为638 kgFAME /(m 3 反应器·h)。 CaO催化剂可重复使用,且不会造成至少四个循环的明显活性损失。

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