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首页> 外文期刊>International Journal of Energy and Power Engineering >Development of Transesterification System with Acid and Base Homogeneous Catalysts For Mangifera Indica Seed Oil to Mangifera Indica Methyl Ester (MOME Biodiesel)
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Development of Transesterification System with Acid and Base Homogeneous Catalysts For Mangifera Indica Seed Oil to Mangifera Indica Methyl Ester (MOME Biodiesel)

机译:酸和碱均相催化剂用于芒果种子油到芒果甲基酯(MOME生物柴油)酯交换系统的开发

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摘要

The depletion of resources, increased cost of fossil fuel and increased environmental awareness reaching the critical condition. Development of viable alternative fuels from renewable resources is gaining the international attention and acceptance. The vegetable oils have the potential of alternative fuel for compression ignition engines by converting it into biodiesel. The mangifera indica oil is a nonedible vegetable oil, available in large quantities in mangifera indica cultivating countries including India. Very little research has been done on utilization of oil in general and optimization of transesterification process for biodiesel production. However, direct base catalyzed transesterification produced no biodiesel due to the high Free Fatty Acid ( FFA) value of the oil. Hence, acid pretreatment was preferred prior to base transesterification which afforded a significant reduction of the FFA value from 3.3% to 0.9% . Various input parameters like oil-to-methanol molar ratio (1:08, 1:12 and 1:16), catalyst type (NaOH, KOH and NaOCH3), catalyst concentration (0.5, 1 and 1.5 wt %) and reaction temperature (59, 64 and 69°C) were studied. The optimum conditions for transesterification process are: 1:12 oil-to-methanol molar ratio, 1.0 wt.% catalyst concentration, KOH catalyst, & 64°C reaction temperature. The optimum yield of MOME was 89.8%. The biodiesel produced (MOME) is within the limits prescribed by EN-14214 standard.
机译:资源枯竭,化石燃料成本增加以及达到临界条件的环保意识增强。利用可再生资源开发可行的代用燃料正受到国际关注和接受。通过将植物油转化为生物柴油,植物油具有替代燃料的潜力,可用于压燃式发动机。芒果in油是不可食用的植物油,可在包括印度在内的芒果栽培国大量使用。总体上对石油的利用以及用于生物柴油生产的酯交换反应过程的优化的研究很少。但是,由于该油的高游离脂肪酸(FFA)值,直接碱催化的酯交换反应没有产生生物柴油。因此,酸预处理在碱酯交换之前是优选的,其使FFA值从3.3%显着降低到0.9%。各种输入参数,例如油与甲醇的摩尔比(1:08、1:12和1:16),催化剂类型(NaOH,KOH和NaOCH3),催化剂浓度(0.5、1和1.5 wt%)和反应温度( 59、64和69°C)。酯交换过程的最佳条件是:油与甲醇的摩尔比为1:12,催化剂浓度为1.0 wt。%,KOH催化剂和64°C反应温度。 MOME的最佳收率为89.8%。生产的生物柴油(MOME)在EN-14214标准规定的范围内。

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