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Optimization of &i&Jatropha&/i& Biodiesel Production by Response Surface Methodology

机译:优化& i& Jatropha& / i&生物柴油生产通过响应表面方法

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Cost of biodiesel is primarily because of factors such as the feedstock, production process and materials. Apparently, the final biodiesel product is a bit expensive compared to fossil diesel fuel. While non-food feedstock of high oil content such as Jatropha curcas has been proposed to reduce the cost due to the feedstock, a promising two-step approach of hydro-esterification can possibly offset the production cost for oil resource with high free fatty acids. Most importantly, optimization of the materials and process is expected to reduce wastage, enhance product purity and generate less wastewater. However, optimizing product generation has been dauntingly elusive because several parameters are needed to be considered holistically. In this study, Response Surface Methodology (RSM) was employed to optimize the yield and conversion of Jatropha biodiesel from J . curcas hydrolysate. An optimum Yield and conversion of 96% was achieved for both responses with an optimum temperature value of 60 ° C, 4 wt% for catalyst loading for 6 hrs reaction time. Findings imply that optimization study of Jatropha curcas hydrolysate for yield and conversion of fatty acid methyl esters using face centered central composite design of Design Expert 6.0.8 can ensure purity of product, conserve energy and reduce waste generation providing a significant frontier in biodiesel pricing.
机译:生物柴油的成本主要是因为原料,生产过程和材料等因素。显然,与化石柴油燃料相比,最终的生物柴油产品有点昂贵。虽然已经提出了高油含量的非食品原料,如 JoTropha Curcas,但已经提出了由于原料由于原料而降低成本,但是对水性酯化的有希望的两步方法可能会抵消石油资源的生产成本用高脂肪酸。最重要的是,预计材料和过程的优化将减少浪费,增强产品纯度并产生较少的废水。然而,优化产品生成一直令人生意地难以捉摸,因为需要几种参数来全面地考虑。在该研究中,采用响应面方法(RSM)来优化来自 J的 Joatropha生物柴油的产率和转化。 Curcas水解物。对于催化剂负载的最佳温度值为60℃,4wt%的两个反应,对两个反应进行6小时的反应时间,实现了最佳产率和转化率为96%。结果暗示 JoTropha Curcas的优化研究使用设计专家的面对中心复合设计的脂肪酸甲酯的产率和转化物的水解方法6.0.8可以保证产品的纯度,节约能量,减少废物产生提供重要的边境生物柴油定价。

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