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Synthesis of Biodiesel from Kapok (Ceibapentandra L.) Seed Oil through Ultrasound-Enhanced Transesterification Reaction

机译:通过超声增强的酯交换反应将籽油(Ceibapentandra L.)种子油合成生物柴油

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Biodiesel is among the prospective renewable energy due to its superior properties as fuel such as environment friendly, non-toxic, biodegradable, resulting low pollutant emission, having high energy value and high cetane number, as well as can be readily applied in diesel machine. Biodiesel is also among the priority in the Indonesian national blue print on new and renewable energy development 2005-2025. Currently, Biodiesel is commonly produced through alkaline-catalyzed transesterification of vegetable oil which is conducted in conventional batch reactor. However, this process shows several drawbacks for instance the low reaction conversion. To overcome this challenge, process intensification of biodiesel production using ultrasound-enhanced transesterification process in batch reactor was employed in this work. The feedstock used for biodiesel synthesis in this work was kapok (Ceiba pentandra L.) seed oil. The oil contains gum and high free fatty acid (FFA) as much as 8.89%. Therefore, prior to the transesterification reaction, two steps of pretreatment processes i.e. degumming process for gum removal and esterification for reducing the FFA content until it reaches the value below 2%. The main transesterification reaction was then performed by using ultrasound enhanced batch reactor which was operated at the frequency of 20 Hz and temperature of 60°C in the presence of KOH catalyst. The reaction time was fixed 60 minutes. On the other hand, the molar ratio of methanol to oil was varied at 1:4, 1:5 and 1:6, and the catalyst concentration was studied at 0.5, 1, and 1.5% w cat/ w oil. It was found that highest yield was obtained at the reaction conducted using 0.5% catalyst and the molar ratio of 1.6 with the reaction conversion of 99.82%. This result was higher than the yield resulted by the conventional process performed at the similar condition which revealed the yield of 90%. Biodiesel produced using ultrasound-enhanced reactor fulfilled the SNI standard of pro
机译:生物柴油是前瞻性可再生能源,由于其优异的性能作为环境友好,无毒,可生物降解,导致低污染物排放,具有高能量值和高十六烷值,以及可以在柴油机中容易地应用。生物柴油也是印度尼西亚国家蓝色印花的优先事项,2005 - 2015年新的和可再生能源开发。目前,通过在常规批量反应器中进行的植物油的碱催化酯交换,通常生产生物柴油。然而,该过程显示了例如低反应转换的几个缺点。为了克服这一挑战,在这项工作中采用了在分批反应器中使用超声增强酯交换过程的生物柴油生产的过程强化。在这项工作中用于生物柴油合成的原料是Kapok(Ceiba Pentandra L.)种子油。该油含有胶和高脂肪酸(FFA),高达8.89%。因此,在酯交换反应之前,预处理方法的两步是胶瘤去除和酯化以降低FFA含量,直至其达到低于2%的值。然后通过使用超声增强批量反应器进行主要酯交换反应,其在koh催化剂存在下以20Hz的频率和60℃的温度操作。反应时间固定60分钟。另一方面,甲醇与油的摩尔比在1:4,1:5和1:6中变化,并且在0.5,1和1.5%W CAT / W油中研究了催化剂浓度。发现在使用0.5%催化剂的反应中获得最高产率,摩尔比为1.6,反应转化为99.82%。该结果高于通过在类似条件下进行的常规方法产生的产率,其显示90%的产率。使用超声增强反应器生产的生物柴油实现了Pro的SNI标准

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