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Pressurized ultrasonic production of biodiesel from Jatropha oil: optimization and energy analysis

机译:从麻疯树油加压超声生产生物柴油:优化和能量分析

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摘要

The present study deals with the development of a biodiesel production reactor based on pressurized ultrasonic cavitation technique. Transesterification of Jatropha oil takes place by passing low-frequency ultrasonic irradiation in the reaction mixture flowing at pressurized conditions in the sonochemical reactor. Reaction variables such as reaction time, molar ratio, catalyst concentration, and pressure of the reaction mixture were investigated to find the optimal parameters for biodiesel production. The energy requirement decreases with increase in pressure. Very low value of Specific Energy Consumption (0.018 kWh/kg) and significantly high value of Energy Use Index (598.83) are obtained when the pressure of reaction mixture is 15 bar. Increasing the pressure thereafter, leads to nominal gains. Ultrasonic irradiation at high-pressure condition has an additional advantage of rapid reaction and lower requirement of alcohol to oil molar ratio and catalyst concentration. Fifteen bar pressure is optimal for biodiesel production.
机译:本研究涉及基于加压超声空化技术的生物柴油生产反应器的开发。麻风树油的酯交换反应是通过在超声化学反应器中在加压条件下流动的反应混合物中通过低频超声辐射进行的。研究了反应变量,例如反应时间,摩尔比,催化剂浓度和反应混合物的压力,以找到生物柴油生产的最佳参数。能量需求随着压力的增加而降低。当反应混合物的压力为15 bar时,单位能耗的极低值(0.018 kWh / kg)和能耗指数(598.83)很高。此后增加压力会导致名义上的收益。高压条件下的超声辐照还具有反应迅速和对醇与油的摩尔比和催化剂浓度的要求较低的另一个优点。十五巴的压力是生物柴油生产的最佳选择。

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