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Enhancement in biodiesel production using waste cooking oil and calcium diglyceroxide as a heterogeneous catalyst in presence of ultrasound

机译:在存在超声波的情况下,使用废食用油和甘油二酸钙作为多相催化剂来提高生物柴油的生产

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This work illustrates ultrasound assisted synthesis of biodiesel from waste cooking oil using calcium diglyceroxide as a heterogeneous base catalyst. The effect of different variables such as methanol to oil molar ratio, catalyst loading, reaction temperature, ultrasonic power and duty cycle on the progress of the reaction was studied. Under the optimal reaction conditions viz. methanol to oil molar ratio 9:1, catalyst loading of 1% (w/w) of waste cooking oil, temperature 60 degrees C, low intensity ultrasonic power of 120W and 50% duty cycle, a maximum biodiesel yield of 93.5% was obtained. On the other hand, a conventional stirring method showed 65.6% yield for the similar reaction time of 30 min. It has been observed that the ultrasonic method was effective in terms of mass transfer, energy efficiency (1.083 x 10(-4) g/J), biodiesel yield and time reduction. The reusability of the catalyst under the optimal reaction conditions resulted in a decrease in the biodiesel yield. The kinetic studies of transesterification reaction have been carried out at different operating temperatures. The results revealed that the reaction followed second-order kinetics and the activation energy was found to be 119.23 kJ/mole. The biodiesel synthesized from the ultrasonic method has shown superior properties as compared to conventional method and also matched with the American Society for Testing and Materials (ASTM) standards. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作说明了使用甘油二酸钙作为非均相基础催化剂从废食用油中超声辅助合成生物柴油的方法。研究了甲醇/油摩尔比,催化剂负载量,反应温度,超声功率和占空比等不同变量对反应进程的影响。在最佳反应条件下。甲醇与油的摩尔比为9:1,废食用油的催化剂负载量为1%(w / w),温度为60摄氏度,低强度超声功率为120W,占空比为50%,获得的最大生物柴油产率为93.5% 。另一方面,常规搅拌方法在类似的30分钟反应时间内显示65.6%的收率。已经观察到超声方法在传质,能量效率(1.083 x 10(-4)g / J),生物柴油收率和减少时间方面均有效。在最佳反应条件下催化剂的可重复使用性导致生物柴油收率降低。酯交换反应的动力学研究已在不同的操作温度下进行。结果表明反应遵循二级动力学,活化能为119.23 kJ / mol。与常规方法相比,由超声方法合成的生物柴油具有优越的性能,并且也符合美国材料试验协会(ASTM)的标准。 (C)2015 Elsevier Ltd.保留所有权利。

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