乳灌木籽油多相和均相催化生产生物柴油的产量响应

O. Ogunkunle, O. O. Oniya, Ademola Oyejide Adebayo
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引用次数: 41

摘要

传统的生物柴油生产采用碱性催化剂,因为碱性催化剂价格便宜,腐蚀性小,而且与其他酸性催化剂相比,它们消耗的能量最少。多相催化剂因其易于回收和重复使用,在生物柴油生产中也显示出显著的效果。以蜗牛壳为催化剂,对温度、时间和醇油摩尔比三个反应变量进行了优化。催化剂是通过在900℃的电炉中煅烧巨型非洲蜗牛废料3.5小时制备的。同时,以氢氧化钾(KOH)为催化剂,进行了对照酯交换实验。焙烧螺壳(CSS)和KOH的催化剂浓度为3.0 wt %,用于油的酯交换反应。用CSS作为催化剂生产生物柴油的响应面分析表明,所有的反应变量都是显著的。实验结果表明,温度为65℃,反应时间为2 h,醇油比为9:1时,生物柴油收率最高,为81%。在相同的反应条件下,以KOH为催化剂,平均收率为94.33%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Yield Response of Biodiesel Production from Heterogeneous and Homogeneous Catalysis of Milk Bush Seed (Thevetia peruviana) Oil
ABSTRACT Conventional production of biodiesel employs the use of alkaline catalysts because they are cheaper and less corrosive, and they use minimal energy when compared to other acidic catalysts. Heterogeneous catalysts have also shown significant effects on biodiesel production with its ease of recovery and reusability. Three reaction variables—temperature, time, and molar ratio of alcohol to oil—were optimized for biodiesel production from milk bush oil using snail shell as a catalyst. The catalyst was prepared by calcinating waste giant African land snail in an electric oven for 3.5 hours at 900°C. Also, a control transesterification experiment was carried out using potassium hydroxide (KOH) as a catalyst. Catalyst concentrations of 3.0 wt % of calcined snail shell (CSS) and KOH were used for the transesterification of the oil. A response surface analysis of biodiesel production using CSS as a catalyst showed that all reaction variables were significant. Biodiesel yield of 81% was recorded experimentally as the highest yield when temperature, reaction time, and alcohol-to-oil ratio were 65°C, 2 hours, and 9:1, respectively. An average yield of 94.33% was obtained at these same reaction conditions when KOH was used as a catalyst.
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