首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Kinetic and optimization study of sustainable biodiesel production from waste cooking oil using novel heterogeneous solid base catalyst
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Kinetic and optimization study of sustainable biodiesel production from waste cooking oil using novel heterogeneous solid base catalyst

机译:用新型异构固体碱催化剂从废食用油生产可持续生物柴油生产的动力学和优化研究

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摘要

The novel Na-SiO2@TiO2 heterogeneous base catalyst was designed and successfully applied to the trans-esterification reaction of waste cooking oil for sustainable biodiesel production. The designed catalyst was characterized by SEM, XPS, FT-IR and BET before treatment, illustrated its suitability for the catalytic transesterification reaction. Moreover, the influence of reaction temperature, time, catalyst concentration and WCO: MeOH molar ratio on the catalytic activity were also investigated, resultant 98% biodiesel yield was achieved. The reusability test demonstrated that the Na-SiO2@TiO2 catalyst has noticeable catalytic potency up to 5 successive runs. Besides, the kinetics study explains that the reaction is kinetically controlled by pseudo 1st order. The Ea was found to be 21.65 kJ/mol. Similarly, the important thermodynamic parameters such as Delta H-#, Delta S-# and Delta G(#) were estimated to be 18.52 kJ.mol(-1), -219.17 J.mol 1K(-1) and 92.59 kJ.mol(-1) respectively.
机译:这本小说叫《安娜》-SiO2@TiO2设计了多相碱催化剂,并将其成功应用于废食用油的反式酯化反应中,实现了生物柴油的可持续生产。用SEM、XPS、FT-IR和BET对所设计的催化剂进行了表征,说明其适合催化酯交换反应。此外,还考察了反应温度、时间、催化剂浓度和WCO:MeOH摩尔比对催化活性的影响,得到了98%的生物柴油产率。可重用性测试表明,Na-SiO2@TiO2催化剂具有明显的催化效力,可连续运行5次。此外,动力学研究解释了反应的动力学控制为伪一级反应。Ea被发现为21.65 kJ/mol。类似地,重要的热力学参数,如δH-#,δS-#和δG(#)被估计为18.52 kJ。摩尔(-1),-219.17 J.mol 1K(-1)和92.59 kJ。mol(-1)。

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