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Optimization of Conversion of High Free Fatty AcidJatropha curcasOil to Biodiesel Using Response Surface Methodology

机译:响应面法优化高游离脂肪酸麻疯树油向生物柴油的转化

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摘要

A five-level-four-factor central composite design (CCD) with 54 assays was employed to study the effect of catalyst concentration (NaOH), reaction temperature, reaction time, and methanol/oil molar ratio on the methyl esters yield fromJatropha curcasoil (JCO) during its transesterification. Using response surface methodology (RSM), a quadratic polynomial equation was obtained forJatropha curcasbiodiesel (JCB) yield by regression analysis. Verification experiments confirmed the validity of the predicted model. The high free fatty acids (FFAs) (14.6%) of JCO could be reduced to 0.34% by acid-catalyzed esterification and a JCB yield of 98.3% was obtained with methanol/oil ratio (11 : 1) using NaOH as catalyst (1% w/w) in 110 min time at 55°C temperature. The predicted value of JCB yield is found to be in good agreement with the experimental value at the optimum level of input parameters. The properties of the biodiesel, thus, produced conform to the ASTM and IS specifications, making it an ideal alternative fuel for diesel engines. The model can be effectively used in oil industry to maximize the biodiesel yield from given oil.
机译:采用五级四因素中心复合设计(CCD)和54种分析方法,研究了催化剂浓度(NaOH),反应温度,反应时间和甲醇/油摩尔比对麻疯树油甲酯产率的影响( JCO)。使用响应面方法(RSM),通过回归分析获得了麻疯树生物柴油(JCB)产量的二次多项式方程。验证实验证实了预测模型的有效性。酸催化酯化可以将JCO的高游离脂肪酸(FFAs)(14.6%)降低至0.34%,并且使用NaOH作为催化剂,甲醇/油比(11(:methanol1)时JCB收率达到98.3%。在55°C温度下以110 min的时间(%w / w)。在最佳输入参数水平下,发现JCB产量的预测值与实验值非常吻合。因此,所生产的生物柴油的特性符合ASTM和IS规范,使其成为柴油发动机的理想替代燃料。该模型可以有效地用于石油工业,以使给定石油的生物柴油产量最大化。

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