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Triethanolamine as an efficient cosolvent for biodiesel production by CaO-catalyzed sunflower oil ethanolysis: An optimization study

机译:三乙醇胺作为CaO催化葵花籽油乙醇化生产生物柴油的有效助溶剂:一项优化研究

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Triethanolamine was applied as an efficient ?green“ cosolvent for biodiesel production by CaO-catalyzed ethanolysis of sunflower oil. The reaction was conducted in a batch stirred reactor and optimized with respect to the reaction temperature (61.6-78.4°C), the ethanol-to-oil molar ratio (7:1-17:1) and the cosolvent loading (3-36 % of the oil weight) by using a rotatable central composite design (RCCD) combined with the response surface methodology (RSM). The optimal reaction conditions were found to be: the ethanol-to-oil molar ratio of 9:1, the reaction temperature of 75°C and the cosolvent loading of 30 % to oil weight, which resulted in the predicted and actual fatty acid ethyl ester (FAEE) contents of 98.8 % and 97.9±1.3 %, respectively, achieved within only 20 min of the reaction. Also, high FAEE contents were obtained with expired sunflower oil, hempseed oil and waste lard. X-ray diffraction analysis (XRD) was used to understand the changes in the CaO phase. The CaO catalyst can be used without any treatment in two consecutive cycles. Due to the calcium leaching into the product, an additional purification stage must be included in the overall process.
机译:三乙醇胺被用作通过CaO催化葵花籽油的乙醇分解生产生物柴油的有效“绿色”助溶剂。反应在间歇搅拌反应器中进行,并针对反应温度(61.6-78.4°C),乙醇与油的摩尔比(7:1-17:1)和助溶剂负载量(3-36)进行了优化通过使用可旋转的中央复合设计(RCCD)和响应面方法(RSM)结合使用。发现最佳反应条件为:乙醇与油的摩尔比为9:1,反应温度为75°C,助溶剂负载率为30%(按油重计),从而得出了预测的和实际的脂肪酸乙酯仅在反应的20分钟内,酯的含量(FAEE)分别达到98.8%和97.9±1.3%。另外,用过期的葵花籽油,麻油和废猪油也能获得高FAEE含量。 X射线衍射分析(XRD)用于了解CaO相的变化。 CaO催化剂可以在两个连续的循环中未经任何处理地使用。由于钙浸出到产品中,因此在整个过程中必须包括一个额外的纯化步骤。

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