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Process Optimization of Ethyl Ester Biodiesel Production from Used Vegetable Oil under Sodium Methoxide Catalyst and its Purification by Ion Exchange Resin

机译:用甲醇钠催化剂下使用植物油的乙酯生物柴油生产的过程优化及离子交换树脂纯化

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Production of ethyl ester biodiesel from a tranesterification reaction of used vegetable oil and ethanol was carried out using a sodium methoxide catalyst. Response surface methodology (RSM) was applied to investigate the effect of experimental factors on the fatty acid ethyl ester (FAEE) conversion. The design of the experiment involved a 5-level-4-factor central composite design and 30 runs were used to achieve the optimum percentage FAEE conversion that was determined by ~1H-NMR. The coefficient of determination (R2) for the regression equation was 86.49% and the probability value (p<0.05) demonstrated a very good fit for the regression model. The optimum conditions obtained from RSM were 4% v/v of catalyst, 35.61% v/v of ethanol-to-oil, at 43.70°C reaction temperature, and 75.45 min of reaction time. The produced ethyl ester biodiesel was further purified by wet washing compared with dry washing using ion exchange resin. The result showed that the purified biodiesel by wet washing met the EN standard but the dry washing out put did not but only for the acid value. The blending of 10% v/v of purified biodiesel obtained from dry washing with 90% v/v of petrodiesel could decrease the acid value to meet the EN standard.
机译:使用甲醇氧化钠催化剂进行从二手植物油和乙醇的疏丙酯生物柴油的生产。应用响应面方法(RSM)探讨了实验因素对脂肪酸乙酯(茯苓)转化的影响。实验的设计涉及5级 - 4因素中央复合设计和30次运行用于达到由〜1H-NMR确定的最佳百分比转化率。回归方程的测定系数(R2)为86.49%,概率值(P <0.05)证明了回归模型的非常合适。从RSM获得的最佳条件为4%V / V催化剂,35.61%V / V的乙醇 - 油,在43.70℃反应温度下,反应时间为75.45分钟。与使用离子交换树脂的干洗相比,通过湿式洗涤进一步纯化所产生的乙酯生物柴油。结果表明,湿洗的纯净的生物柴油达到了ZH标准,但干洗掉的液体不仅仅是酸值。从干洗中获得的10%v / v纯化的生物柴油的混合可以降低酸值,以满足符合EN标准的酸值。

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