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Biodiesel production from vegetable oil using heterogenous acid and alkali catalyst

机译:使用多相酸和碱催化剂从植物油生产生物柴油

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Zanthoxylum bungeanum seed oil (ZSO) with high free fatty acids (FFA) can be used for biodiesel production by ferric sulfate-catalyzed esterification followed by transesterification using calcium oxide (CaO) as an alkaline catalyst. Acid value of ZSO with high FFA can be reduced to less than 2 mg KOH/g by one-step esterification with methanol-to-FFA molar ratio 40.91:1, ferric sulfate 9.75% (based on the weight of FFA), reaction temperature 95 ℃ and reaction time 2 h, which satisfies transesterification using an alkaline catalyst. The response surface methodology (RSM) was used to optimize the conditions for ZSO biodiesel production using CaO as a catalyst. A quadratic polynomial equation was obtained for biodiesel conversion by multiple regression analysis and verification experiments confirmed the validity of the predicted model. The optimum combination for transesterification was methanol-to-oil molar ratio 11.69:1, catalyst amount 2.52%, and reaction time 2.45 h. At this optimum condition, the conversion to biodiesel reached above 96%. This study provided a practical method to biodiesel production from raw feedstocks with high FFA with high reaction rate, less corrosion, less toxicity, and less environmental problems.
机译:具有高游离脂肪酸(FFA)的花椒花籽油(ZSO)可通过硫酸铁催化的酯化反应,然后使用氧化钙(CaO)作为碱性催化剂进行酯交换反应,用于生物柴油生产。具有高FFA的ZSO的酸值可通过甲醇与FFA摩尔比40.91:1,硫酸铁9.75%(基于FFA的重量),一步法酯化一步降低到2 mg KOH / g以下95℃,反应时间2 h,可满足使用碱性催化剂的酯交换反应。响应面方法(RSM)用于优化使用CaO作为催化剂的ZSO生物柴油生产条件。通过多元回归分析获得了用于生物柴油转化的二次多项式方程,验证实验证实了预测模型的有效性。酯交换反应的最佳组合是甲醇与油的摩尔比为11.69:1,催化剂用量为2.52%,反应时间为2.45小时。在此最佳条件下,向生物柴油的转化率达到96%以上。该研究为从高FFA,反应速率高,腐蚀少,毒性小,环境问题小的原料生产生物柴油提供了一种实用的方法。

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