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A novel inspection of mechanisms in conversion of refined palm oil to biodiesel with alkaline catalyst

机译:碱性催化剂将精制棕榈油转化为生物柴油的机理的新颖检验

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摘要

The aim of this work was to investigate the two-phase system in alkaline catalyzed methanol transesterification. An alkoxide-methanol solution was gradually added dropwise to 50 degrees C refined palm oil (RPO), and the solution was imaged periodically using an LCD digital microscope until the alcohol phase was in large excess. Vice versa, RPO was dropwise added to an alkoxide-methanol solution. A concave glass slide was used as a microreactor and the methanolysis was also observed with a microscope and photographed at desired time points. Varying the alkoxide concentration in transesterification of refined palm oil and methanol was investigated experimentally. After 10 min of reaction, the solution settled to ester and glycerol phases; each phase was weighted and soap, alkoxide and glycerol contents were determined. The results show that transesterification takes place in a two-phase system and the reaction takes place in the film zone of liquid triglyceride. The concentration of alkoxide is a key factor determining the rate of reaction. The 0.133 M ratio of catalyst to oil gives a final ester content of 97.31%. Novel mechanisms in transesterification are also proposed.
机译:这项工作的目的是研究碱性催化甲醇酯交换反应的两相系统。将醇盐-甲醇溶液逐渐滴加到50摄氏度的精制棕榈油(RPO)中,并使用LCD数字显微镜对该溶液进行定期成像,直到醇相大量过量为止。反之亦然,将RPO逐滴添加至醇盐-甲醇溶液中。使用凹面载玻片作为微反应器,并且还通过显微镜观察甲醇分解并在所需时间点拍照。实验研究了精制棕榈油和甲醇酯交换反应中醇盐浓度的变化。反应10分钟后,溶液沉降至酯相和甘油相;称重每个相并测定肥皂,醇盐和甘油的含量。结果表明,酯交换反应发生在两相体系中,反应发生在液态甘油三酸酯的膜区。醇盐的浓度是决定反应速率的关键因素。催化剂与油的比例为0.133 M,最终酯含量为97.31%。还提出了酯交换的新机制。

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