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Synthesis of glycerol carbonate by transesterification of glycerol with dimethyl carbonate over K-zeolite derived from coal fly ash

机译:粉煤灰衍生的K-沸石上甘油与碳酸二甲酯的酯交换反应合成碳酸甘油酯

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摘要

Biodiesel industry is facing a challenging problem in managing biodiesel by-product, glycerol. Utilization of byproduct glycerol is crucial for sustainability of biodiesel industry. Conversion of glycerol to value-added chemicals increases the profitability of biodiesel manufacturing. Glycerol carbonate, a versatile compound derived from glycerol via transesterification of glycerol with dimethyl carbonate (DMC) was synthesized over K-zeolite derived from coal fly ash by hydrothermal treatment. The effect of different reaction parameters such as the molar ratio of DMC to glycerol, catalyst loading, reaction temperature and reaction time on the transesterification reaction was investigated. The obtained data showed that at DMC-glycerol molar ratio of 3:1, catalyst loading of 4 wt.% and reaction temperature of 75 °C, the glycerol conversion and glycerol carbonate yield from the process was 100 % and 96%, respectively. The obtained GC can be used in different energy related applications such as bio-based fuel additive and green electrolyte solvent in lithium batteries.
机译:生物柴油行业在管理生物柴油副产物甘油方面面临着一个充满挑战的问题。副产物甘油的利用对于生物柴油行业的可持续性至关重要。将甘油转化为增值化学品可提高生物柴油制造的利润率。在煤粉煤灰衍生的K-沸石上,通过水热处理,合成了碳酸甘油酯,碳酸甘油酯是一种通过甘油与碳酸二甲酯(DMC)的酯交换反应而衍生自甘油的通用化合物。研究了DMC与甘油的摩尔比,催化剂负载量,反应温度和反应时间等不同反应参数对酯交换反应的影响。所得数据表明,在DMC-甘油摩尔比为3∶1,催化剂负载为4重量%和反应温度为75℃的情况下,该方法的甘油转化率和碳酸甘油酯产率分别为100%和96%。所得的GC可用于不同的能源相关应用,例如生物基燃料添加剂和锂电池中的绿色电解质溶剂。

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