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Optimization of supercritical dimethyl carbonate method for biodiesel production

机译:超临界碳酸二甲酯生产生物柴油的方法优化

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摘要

Biodiesel could be produced from triglycerides and dimethyl carbonate, instead of the conventional methanol, in this non-catalytic supercritical dimethyl carbonate method. It was demonstrated that, supercritical dimethyl carbonate method successfully converted triglycerides as well as fatty acids to fatty acid methyl esters (FAME) with glycerol carbonate, a higher value by-product compared to the conventional glycerol. The FAME are high in yield, comparable with supercritical methanol method, and satisfy the international standard for use as biodiesel fuel. In this study, therefore, optimization of supercritical dimethyl carbonate method was discussed to include all important key parameters such as reaction temperature, pressure, time, molar ratio of dimethyl carbonate to oil, the FAME yield, thermal decomposition, degree of denaturation, tocopherol content, oxidation stability and fuel properties. The optimum condition for supercritical dimethyl carbonate method was determined at 300 °C/20 MPa/20 min/42:1 molar ratio of dimethyl carbonate to oil to have satisfactory yield of FAME at 97.4 wt%. Conclusively, this study showed the importance to address all those key parameters in order to produce high quality biodiesel from supercritical dimethyl carbonate method.
机译:在这种非催化的超临界碳酸二甲酯方法中,可以由甘油三酸酯和碳酸二甲酯代替传统的甲醇生产生物柴油。结果表明,超临界碳酸二甲酯法成功地将甘油三酸酯以及脂肪酸与碳酸甘油酯转化为脂肪酸甲酯(FAME),与常规甘油相比,副产物的价值更高。 FAME的收率高,可与超临界甲醇法相比,并满足用作生物柴油燃料的国际标准。因此,在这项研究中,讨论了超临界碳酸二甲酯方法的优化,包括所有重要的关键参数,例如反应温度,压力,时间,碳酸二甲酯与油的摩尔比,FAME收率,热分解,变性程度,生育酚含量,氧化稳定性和燃料特性。确定超临界碳酸二甲酯方法的最佳条件为:碳酸二甲酯与油的摩尔比为300°C / 20 MPa / 20 min / 42:1,以使FAME的收率令人满意,达到97.4 wt%。最终,这项研究表明解决所有这些关键参数的重要性,以便通过超临界碳酸二甲酯方法生产出高质量的生物柴油。

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  • 作者

    Ilham Zul; Saka Shiro;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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