首页> 外文会议>AUN/SEED-Net Regional Conference on Energy Engineering >The Optimization Process of Biodiesel Production Using Multiple Feedstock (CPO And Jatropha) with Assistance of Ultrasound at 40 Khz
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The Optimization Process of Biodiesel Production Using Multiple Feedstock (CPO And Jatropha) with Assistance of Ultrasound at 40 Khz

机译:使用多种原料(CPO和Joatropha)在40 kHz的超声辅助中使用多孔的生物柴油生产优化过程

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CPO prices are unstable, therefore affecting the supply of feedstock to produce biodiesel [2]. To overcome the shortage of feedstock, it is necessary to use multiple feedstock, in this case is CPO and Jatropha [1]. This objective of this work to optimizate biodiesel production using multifeedstock (CPO and Jatropha) with assistance of ultrasound. The optimization was to find the highest yield and the least production time. Experiments was carried out using an ultrasonic bath at a frequency of 40 kHz. The ratio of CPO and Jatropha was 1: 1, 3: 1, 4: 1 while the ratio of methanol and oil was 5: 1, 6: 1, 7: 1 and the reaction time was 50, 60, and 70 minutes. KOH was used as a catalyst. The experiment data was optimized using a Response Surface Methodology [3,4]. The optimum point was at a frequency of 40 kHz obtained at a 2.8: 1 mixture of CPO - Jatropha, 6.4: 1 molar ratio of methanol-oil and 61.5 minutes of reaction time. The results of quality testing shows that the biodiesel produced meets the ASTM standard D6751 and SNI 04-7182-2006[5].
机译:CPO价格不稳定,因此影响原料供应生产生物柴油[2]。为了克服原料的短缺,有必要使用多种原料,在这种情况下是CPO和JoTropha [1]。这项目的是在超声的帮助下优化使用多蛋糕(CPO和Joatropha)的生物柴油生产。优化是找到最高产量和最少的生产时间。使用以40kHz的频率的超声波浴进行实验。 CPO和麻风树的比例为1:1,3:1,4:1,而甲醇和油的比例为5:1,6:1,7:1,反应时间为50,60和70分钟。 KOH用作催化剂。使用响应表面方法进行优化实验数据[3,4]。最佳点为40kHz的频率,在2.8:1的CPO - JATropha,6.4:1摩尔比的甲醇 - 油和61.5分钟的反应时间的混合物中获得。质量检测结果表明,生产的生物柴油符合ASTM标准D6751和SNI 04-7182-2006 [5]。

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