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Biodiesel from sunflower oil in supercritical methanol with calcium oxide

机译:葵花籽油在超临界甲醇和氧化钙中的生物柴油

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In this study, sunflower seed oil was subjected to the transesterification reaction with calcium oxide (CaO) in supercritical methanol for obtaining biodiesel. Methanol is used most frequently as the alcohol in the transesterification process. Calcium oxide (CaO) can considerably improve the transesterification reaction of sunflower seed oil in supercritical methanol. The variables affecting the methyl ester yield during the transesterification reaction, such as the catalyst content, reaction temperature and the molar ratio of soybean oil to alcohol, were investigated and compared with those of non-catalyst runs. The catalytic transesterification ability of CaO is quite weak under ambient temperature. At a temperature of 335 K, the yield of methyl ester is only about 5% in 3 h. When CaO was added from 1.0% to 3.0%, the transesterification speed increased evidently, while when the catalyst content was further enhanced to 5%, the yield of methyl ester slowly reached to a plateau. It was observed that increasing the reaction temperature had a favorable influence on the methyl ester yield. In addition, for molar ratios ranging from 1 to 41, as the higher molar ratios of methanol to oil were charged, the greater transesterification speed was obtained. When the temperature was increased to 525 K, the transesterification reaction was essentially completed within 6 min with 3 wt% CaO and 41:1 methanol/oil molar ratio.
机译:在这项研究中,葵花籽油与超临界甲醇中的氧化钙(CaO)进行酯交换反应,从而获得生物柴油。在酯交换过程中,甲醇最常用作醇。氧化钙(CaO)可以大大改善葵花籽油在超临界甲醇中的酯交换反应。研究了影响酯交换反应过程中甲酯收率的变量,例如催化剂含量,反应温度和豆油与醇的摩尔比,并将其与非催化剂运行进行比较。 CaO在环境温度下的催化酯交换能力很弱。在335 K的温度下,甲酯的收率在3小时内仅为约5%。当CaO从1.0%加入到3.0%时,酯交换速度明显增加,而当催化剂含量进一步增加到5%时,甲酯的收率缓慢达到平稳。观察到提高反应温度对甲酯收率具有有利的影响。另外,对于1至41的摩尔比,随着加入的甲醇与油的摩尔比越高,获得的酯交换速度越大。当温度升至525 K时,酯交换反应基本上在6分钟内用3wt%的CaO和41:1的甲醇/油摩尔比完成。

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