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Biodiesel from soybean oil in supercritical methanol with co-solvent

机译:豆油在超临界甲醇中与助溶剂制得的生物柴油

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摘要

Biodiesel synthesis from soybean oil using methanol was investigated at supercritical and subcritical conditions of methanol in a high pressure vessel of 250 cm~3 volume. Under the supercritical conditions, the maximum methyl ester yield exceeded 98% when the molar ratio of methanol to oil was 42:1 and the reaction temperature ranged from 260℃ to 350 ℃. In order to decrease the operational temperature and pressures and increase the conversion efficiency of methanol, a novel idea was presented in which a co-solvent (hexane, carbon dioxide, K.OH) was added to the reactants. The results indicated that the yield of methyl ester was improved when hexane or CO_2 was added. With CO_2 or hexane as co-solvent in the reaction system at 300℃, there was a significant increase of the methyl esters yield. With the optimal reaction temperature of 160 ℃ and methanol to oil ratio of 24, a 98% yield of methyl esters was observed in 20 min at the subcritical condition with 0.1 wt% potassium hydroxide (KOH).
机译:在250 cm〜3的高压容器中,在甲醇的超临界和亚临界条件下,研究了使用甲醇从大豆油中合成生物柴油。在超临界条件下,甲醇与油的摩尔比为42:1,反应温度为260℃至350℃,最大甲酯产率超过98%。为了降低操作温度和压力并提高甲醇的转化效率,提出了一种新的想法,其中将助溶剂(己烷,二氧化碳,K.OH)添加到反应物中。结果表明,加入己烷或CO_2可以提高甲酯的收率。在300℃反应体系中以CO_2或己烷为助溶剂,甲酯收率明显提高。在160℃的最佳反应温度和甲醇/油比为24的条件下,在亚临界条件下用0.1 wt%的氢氧化钾(KOH)在20分钟内观察到98%的甲酯收率。

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