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Production of Biodiesel from Cottonseed Oil over Aminated Flax Fibres Catalyst: Kinetic and Thermodynamic Behaviour and Biodiesel Properties

机译:胺化亚麻纤维催化棉籽油生产生物柴油的动力学和热力学行为及生物柴油性能

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The transesterification of cottonseed oil in the presence of methanol to fatty acid methyl ester (FAME) using flax-based fibres catalyst modified with an alkaline moiety was studied. The catalyst was prepared by radiation induced grafting (RIG) of glycidyl methacrylate (GMA) onto dignified flax fibres followed by amination with diethylamine (DEA) and treatment with NaOH solution. A maximum FAME conversion of 88.6% was obtained at 60 ° ; C with a catalyst dosage of 2.5 wt%, an oil/methanol ratio of 1:33 and a time of 2 h. The biodiesel quality was verified by nuclear magnetic resonance (1H NMR). Kinetic analysis showed a reaction activation energy of 69.33 kJ · mol ˉ ~(1) and a rate constant of 0.00349 min ˉ ~(1) indicating that the catalytic reaction was kinetically controlled. Thermodynamic analyses revealed that the reaction was reversible, non-spontaneous and endothermic with an enthalpy of 66.62 kJ · mol ˉ ~(1). The obtained biodiesel showed physical and chemical characteristics complying with ASTM D6751. It can be concluded that the alkaline biopolymer catalyst prepared in the present study is a promising green candidate for biodiesel production.
机译:研究了在甲醇存在下,棉籽油使用经碱部分改性的亚麻基纤维催化剂进行酯交换反应生成脂肪酸甲酯(FAME)。通过辐射诱导的甲基丙烯酸缩水甘油酯(GMA)接枝(DG)到高贵的亚麻纤维上,然后用二乙胺(DEA)胺化并用NaOH溶液处理来制备催化剂。 60°时最大FAME转化率为88.6%。 C的催化剂用量为2.5重量%,油/甲醇比为1:33,时间为2小时。通过核磁共振(1 H NMR)验证了生物柴油的质量。动力学分析表明反应活化能为69.33 kJ·molˉ〜(1),速率常数为0.00349 minˉ〜(1),表明催化反应是动力学控制的。热力学分析表明该反应是可逆的,非自发的和吸热的,焓为66.62 kJ·molˉ〜(1)。所获得的生物柴油表现出符合ASTM D6751的物理和化学特性。可以得出结论,在本研究中制备的碱性生物聚合物催化剂是生物柴油生产的有前途的绿色候选者。

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