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One-pot synthesis of biodiesel from high FFA shea butter in an optimisation study using response surface methodology

机译:用响应表面方法优化研究中从高FFA乳木乳的生物柴油一锅合成

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摘要

Optimisation of biodiesel production from high free fatty acids (FFA) of 6.86% shea butter (SB) using a base catalyst, potassium hydroxide, was studied. Response surface methodology (RSM) was employed as a model for the optimisation of the process by varying temperature, agitation speed, mole ratio and catalyst loading in the range of 40-60 degrees C, 200-1400 rpm, 8:1-12:1 (w/w) and 1-2% (w/w) respectively. The significance of the variables in both linear and nonlinear forms of the model was analysed by analysis of variance (ANOVA). The ANOVA results showed that the temperature, agitation speed, mole ratio and catalyst loading had a significant effect on the shea biodiesel yield with ap-value of 0.0001 for each of the variables, adjusted R(2)of 0.9517 and predicted R(2)of 0.8625. The maximum %yield of shea biodiesel obtained was 90.83% at optimal operating temperature of 50 degrees C, agitation speed of 800 rpm, mole ratio of 12:1 (w/w) and catalyst loading of 1% (w/w). This showed that the RSM optimised the one-pot synthesis of biodiesel from high FFA SB, an indication that it can be adopted successfully in the industry to maximise the yield of biodiesel from high FFA SB.
机译:研究了使用碱催化剂,氢氧化钾的6.86%乳木果油(SB)的高自由脂肪酸(FFA)的生物柴油生产优化。响应表面方法(RSM)用作通过不同温度,搅拌速度,摩尔比和催化剂负载在40-60℃,200-1400rpm,8:1-12的范围内进行优化过程的模型,以便在40-60℃,8:1-12: 1(w / w)和1-2%(w / w)。通过分析方差(ANOVA)分析模型的线性和非线性形式中变量的意义。 ANOVA结果表明,对于每种变量,温度,搅拌速度,摩尔比和催化剂负载对乳酸生物柴油产率的显着影响<0.0001的AP值,调节的R(2)为0.9517并预测R(2 )0.8625。在最佳工作温度为50℃的最佳工作温度下,获得的乳酸生物柴油的最大产率为90.83%,搅拌速度为800rpm,摩尔比为12:1(w / w),催化剂负载量为1%(w / w)。这表明RSM优化了来自高FFA SB的生物柴油的单罐合成,这表明它可以在行业中成功采用,以最大化来自高FFA SB的生物柴油产量。

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