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Production of Biodiesel and Triacetin by Interesterification of Rapeseed Oil

机译:利用油菜籽油的生物柴油和三循环素的生产

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Interesterification of vegetable oils is one of the methods which has been considered for biodiesel production. Average yield of fatty acid methyl esters (FAME)/triacetin (TA) containing product mixture obtained under developed optimal rapeseed oil (RO) interesterification reaction conditions reached 117.2%. Treatment of FAME/TA mixture with three different commercial ion exchange resins (Amberlyst-A26 (OH"), Amberlyst-15 (H~+), Lewatit GF 202 (Na~+)) and water was investigated to improve fuel properties or extract FAME and TA as two separate marketable products. Fuel properties of obtained product mixtures were relatively close to biodiesel obtained from RO by transesterification reaction with methanol. The highest influence on chemical composition of product mixture was showed by water as treatment agent. Water can be successfully used as extraction agent for separation of TA and other glycerol (G) acetates from fatty acid moiety containing compounds. Two separate product mixtures were obtained after treatment of FAME/TA containing mixture with water. G (~5 wt%), DAG (~33 wt%) and TA (~61 wt%) mixture extracted with water using the developed method has high potential for application in different industrial areas. Rest of product mixture with high content of FAME (~77 wt%) could be used as renewable fuel for diesel engine exploitation.
机译:植物油的植物油是用于生物柴油生产的方法之一。在发育最佳菜籽油(RO)的含有产品混合物的含脂肪酸甲酯(SAME)/三乙酰蛋白(TA)的平均产率达到了117.2%的产品混合物。研究了与三种不同的商业离子交换树脂(Amberlyst-A26(OH)),amberlyst-15(H〜+),Lewatit GF 202(Na +))和水进行了处理,改善燃料性能或提取物作为两种单独的销售产品。通过酯交换反应与甲醇的酯交换反应相对靠近从RO获得的产品混合物的燃料特性。用水作为处理剂,用水显示产物混合物的化学成分的最高影响。水可以成功用作从含脂肪酸部分的含脂肪酸部分分离的Ta和其他甘油(g)乙酸酯的萃取剂。在用水处理含有混合物后,得到两种单独的产物混合物。G(〜5wt%),DAG(〜使用该方法用水萃取的33wt%)和Ta(〜61wt%)混合物在不同工业区的应用中具有很大的应用潜力。可以使用高含量(约77wt%)的产物混合物的其余产物混合物用于柴油机开发的S可再生燃料。

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