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首页> 外文期刊>Waste and biomass valorization >Viable Glycerol Carbonate Synthesis Through Direct Crude Glycerol Utilization from Biodiesel Industry
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Viable Glycerol Carbonate Synthesis Through Direct Crude Glycerol Utilization from Biodiesel Industry

机译:通过生物柴油行业直接利用粗甘油合成可行的碳酸甘油酯

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摘要

Synthesis of organic carbonates specifically glycerol carbonate has become a major concern among researchers due to its interesting chemical properties. In this study, we report the direct utilization of two different sources of crude glycerol in glycerolysis reaction with urea for the synthesis of glycerol carbonate using potassium silicate containing boiler ash as a catalyst. The level of interference of moisture and methanol content in crude glycerol was studied by mimicking conditions in pure glycerol and it was found that moisture at 10 wt% significantly effects the conversion of glycerol while methanol at 5 wt% affects the selectivity towards glycerol carbonate. However, due to the low moisture and methanol content in crude glycerol, comparable yield % of glycerol carbonate with commercial pure glycerol as starting feedstock was noted. Besides, the study also found that the potassium methylate and sodium methylate used as catalysts for the commercial production of biodiesel can be also used as an effective catalyst for the synthesis of glycerol carbonate. The current approach is a near approach for a greener environment which proposes use of both catalyst and glycerol derived from waste sources.
机译:有机碳酸酯,特别是碳酸甘油酯的合成由于其令人感兴趣的化学性质而已成为研究人员关注的主要问题。在这项研究中,我们报告了两种不同来源的粗甘油在与尿素的甘油分解反应中的直接利用,以使用含锅炉灰分的硅酸钾为催化剂合成碳酸甘油酯。通过模拟纯甘油中的条件研究了粗制甘油中水分和甲醇含量的干扰水平,发现10 wt%的水分会显着影响甘油的转化,而5 wt%的甲醇会影响对碳酸甘油酯的选择性。然而,由于粗制甘油中的水分和甲醇含量低,因此注意到与商业纯甘油作为起始原料的碳酸甘油酯的收率相当。此外,研究还发现,用作生物柴油商业化生产的催化剂的甲醇钾和甲醇钠也可以用作合成碳酸甘油酯的有效催化剂。对于绿色环境,当前的方法是一种接近的方法,该方法建议同时使用源自废物源的催化剂和甘油。

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