首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A glycerol-free process to produce biodiesel by supercritical methyl acetate technology: An optimization study via Response Surface Methodology
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A glycerol-free process to produce biodiesel by supercritical methyl acetate technology: An optimization study via Response Surface Methodology

机译:超临界乙酸甲酯技术生产生物柴油的无甘油工艺:通过响应面法进行的优化研究

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摘要

In this study, fatty acid methyl esters (FAME) have been successfully produced from transesterification reaction between triglycerides and methyl acetate, instead of alcohol. In this non-catalytic supercritical methyl acetate (SCMA) technology, triacetin which is a valuable biodiesel additive is produced as side product rather than glycerol, which has lower commercial value. Besides, the properties of the biodiesel (FAME and triacetin) were found to be superior compared to those produced from conventional catalytic reactions (FAME only). In this study, the effects of various important parameters on the yield of biodiesel were optimized by utilizing Response Surface Methodology (RSM) analysis. The mathematical model developed was found to be adequate and statistically accurate to predict the optimum yield of biodiesel. The optimum conditions were found to be 399 degrees C for reaction temperature, 30 mol/mol of methyl acetate to oil molar ratio and reaction time of 59 min to achieve 97.6% biodiesel yield.
机译:在这项研究中,通过甘油三酸酯和乙酸甲酯(而不是醇)之间的酯交换反应成功地制备了脂肪酸甲酯(FAME)。在这种非催化的超临界乙酸甲酯(SCMA)技术中,作为一种有价值的生物柴油添加剂的甘油三醋精是作为副产品而不是甘油生产的,而甘油具有较低的商业价值。此外,发现生物柴油(FAME和三醋精)的性能优于常规催化反应(仅FAME)产生的性能。在这项研究中,利用响应表面方法(RSM)分析优化了各种重要参数对生物柴油收率的影响。发现开发的数学模型是足够的,并且统计上准确,可以预测生物柴油的最佳产量。发现最佳条件是反应温度为399℃,乙酸甲酯与油的摩尔比为30mol / mol,反应时间为59分钟,以达到97.6%的生物柴油产率。

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