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Biodiesel production intensification via microwave irradiation-assisted transesterification of oil blend using nanoparticles from elephant-ear tree pod husk as a base heterogeneous catalyst

机译:生物柴油生产通过微波辐射辅助酯化的油混合物使用纳米粒子从大象 - 耳朵树荚壳作为基础异质催化剂

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摘要

This study investigated the potential of a blend of neem-rubber seed oil together with calcined husk of elephant ear tree pod as catalyst for biodiesel production via transesterification aided with microwave irradiation. The essential process parameters involved in biodiesel production were optimized using central composite rotatable design combined with response surface methodology. The free fatty acid of the blend of neem and rubber seed oils in ratio 60:40 used in this work was effectively reduced from 17.76 to 0.67% using methanol/oil blend ratio of 25:1, catalyst [Fe-2(SO4)(3)] dosage of 10 wt.%, reaction time of 120 min and reaction temperature of 65 degrees C. The E. cyclocarpum pod husk ash was calcined at 700 degrees C for 4 h and characterized. The results obtained show that the calcined ash is rich in K, Mg, Ca and Fe, which was responsible for its high catalytic activity. The optimal condition established for the microwave-assisted transesterification of the Fe-2(SO4)(3)-pretreated oil blend was methanol/oil blend molar ratio of 11.44:1, catalyst dosage of 2.96 wt.% and reaction time of 5.88 min under microwave heating power of 150 W with a corresponding biodiesel yield of 98.77 +/- 0.16 wt.%. The fuel properties of biodiesel produced were within the standard specifications.
机译:本研究研究了Neem-橡胶种子油混合物与煅烧的大象耳树瓣作为生物柴油催化剂,通过酯交援辅助微波辐射与煅烧生物胶囊生产的催化剂。使用中央复合可旋转设计优化了生物柴油生产的基本工艺参数,与响应面法相结合。使用甲醇/油混合比为25:1,催化剂(SO 4)( 3)]剂量为10重量%,反应时间120分钟,反应温度为65℃。E.循环豆荚壳壳在700℃下煅烧4小时并表征。得到的结果表明,煅烧的灰分富含K,Mg,Ca和Fe,其负责其高催化活性。用于微波辅助酯交换的Fe-2(SO4)(SO4)(3) - 丙戊烷化油混合物建立的最佳条件是甲醇/油混合摩尔比为11.44:1,催化剂剂量为2.96重量%,反应时间为5.88分钟在微波加热功率下150W,相应的生物柴油产率为98.77 +/- 0.16重量%。%。产生的生物柴油的燃料特性在标准规格范围内。

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