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Transesterification of soybean oil with nano-MgO or not in supercritical and subcritical methanol

机译:大豆油是否与纳米MgO在超临界和亚临界甲醇中进行酯交换反应

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Nano-MgO can apparently improve the transesterification reaction of soybean oil with supercritical/subcritical methanol. The variables affecting the yield of methyl ester during the transesterification reaction, such as the catalyst content, reaction temperature and the molar ratio of methanol to soybean oil were investigated and compared with those of non-catalyst. When nano-MgO was added from 0.5 wt% to 3 wt%, the transesterification rate increased evidently, while the catalyst content was further enhanced to 5 wt%, little increased in yield. It was observed that increasing the reaction temperature had a favorable influence on methyl ester yield. In addition, for molar ratios of methanol to soybean oil ranging from 6 to 36, the higher molar ratios of methanol to oil was charged, the faster transesterification rate was obtained. When the temperature was increased to 533 K, the transesterification reaction was essentially completed within 10 min with 3 wt% nano-MgO and the methanol/oil molar rate 36:1. Such high reaction rate with nano-MgO was mainly owing to the lower activation energy (75.94 kJ/mol) and the higher stirring.
机译:纳米氧化镁可以明显改善大豆油与超临界/亚临界甲醇的酯交换反应。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,反应温度和甲醇与大豆油的摩尔比,并将其与非催化剂进行比较。当从0.5wt%至3wt%添加纳米MgO时,酯交换率明显增加,而催化剂含量进一步提高至5wt%,收率几乎没有增加。观察到提高反应温度对甲酯收率具有有利的影响。另外,对于甲醇与大豆油的摩尔比为6至36,加入较高的甲醇与油的摩尔比,可获得更快的酯交换速率。当温度升高至533 K时,酯交换反应基本在10分钟内用3wt%的纳米MgO和甲醇/油的摩尔比36:1完成。与纳米MgO的如此高的反应速率主要归因于较低的活化能(75.94 kJ / mol)和较高的搅拌。

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