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Biodiesel production from high acid value waste frying oil catalyzed by superacid heteropolyacid

机译:超酸杂多酸催化高酸值废煎炸油生产生物柴油

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Transesterification of waste cooking oil with high acid value and high water contents using heteropolyacid H3PW12O40 center dot 6H(2)O (PW12) as catalyst was investigated. The hexahydrate form Of PW12 was found to be the most promising catalyst which exhibited highest ester yield 87% for transesterification of waste cooking oil and ester yield 97% for esterification of long-chain palmitic acid, respectively. The PW`12 acid catalyst shows higher activity under the optimized reaction conditions compared with conventional homogeneous catalyst sulfuric acid, and can easily be separated from the products by distillation of the excess methanol and can be reused more times. The most important feature of this catalyst is that the catalytic activity is not affected by the content of free fatty acids (FFAs) and the content of water in the waste cooking oil and the transesterification can occur at a lower temperature (65 degrees C, a lower methanol oil ratio (70:1) and be finished within a shorter time. The results illustrate that PW12 acid is an excellent water-tolerant and environmentally benign acid catalyst for production of biodiesel from waste cooking oil. Biotechnol. Bioeng. 2008;101: 93-100. (C) 2008 Wiley Periodicals, Inc.
机译:研究了以杂多酸H3PW12O40中心点6H(2)O(PW12)为催化剂对高酸值和高含水量的废食用油进行酯交换反应。已发现六水合物形式的PW12是最有希望的催化剂,其对废食用油的酯交换反应的酯收率最高,为87%,对于长链棕榈酸的酯化反应的酯收率最高,为97%。与常规的均相催化剂硫酸相比,PW`12酸催化剂在优化的反应条件下表现出更高的活性,并且可以通过蒸馏过量的甲醇轻松从产物中分离出来,并且可以重复使用多次。该催化剂的最重要特征是催化活性不受游离脂肪酸(FFA)含量的影响,而废食用油中的水含量也可以在较低温度(65摄氏度,较低的甲醇油比(70:​​1)并在更短的时间内完成,结果表明PW12酸是一种出色的耐水和环境友好的酸催化剂,可用于从废食用油中生产生物柴油。Biotechnol。Bioeng。2008; 101 :93-100。(C)2008 Wiley Periodicals,Inc.

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