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Application of Taguchi and Response Surface Methodology for Biodiesel Production from Alkali Catalysed Transesterification of Waste Cooking Oil

机译:玉米碱催化剂生产碱催化剂酯化的碱性柴油生产的响应和响应表面方法的应用

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摘要

Biodiesel is a potential renewable fuel, chemically transformed from a variety of vegetable oils, animal tallows and waste cooking oils. Biodiesel is rapidly gaining impetus in India as an alternative fuel source to reduce its dependence on foreign fuel for diesel engines. This paper discusses the use of Taguchi and response surface methodology for maximizing the biodiesel yield from alkali catalysed transesterification of waste cooking oil. The experiments have been conducted using Taguchi's L_9 orthogonal array in the design of experiments technique. The process parameters used are reaction temperature, reaction time, amount of Methanol and amount of catalyst, each with three levels. The optimum process parameters for maximizing the biodiesel yield are determined using signal to noise (S/N) ratio. A second order response surface model has been established between the process parameters and biodiesel yield using response surface methodology. The adequacy of the developed model is verified using coefficient of determination (R). It was found that the R~2 value is 1. The predicted and measured values are fairly close, which indicates that the developed model can be effectively used to predict the biodiesel yield from alkali catalysed transestefification of waste cooling oil.
机译:生物柴油是一种潜在的可再生燃料,从各种植物油,动物脂肪和废物油化学转化。生物柴油正在迅速在印度迅速获得动力作为替代燃料源,以减少其对柴油发动机外国燃料的依赖。本文讨论了Taguchi和响应面方法的使用,以最大化来自废物烹饪油的碱催化剂晶体的生物柴油产量。在实验技术设计中使用Taguchi的L_9正交阵列进行了实验。所用的工艺参数是反应温度,反应时间,甲醇的量和催化剂的量,每种催化剂有三个水平。用于最大化生物柴油产率的最佳过程参数使用信号与噪声(S / N)比率确定。使用响应表面方法在工艺参数和生物柴油产量之间建立了二阶响应表面模型。使用确定系数(R)验证开发模型的充分性。发现R〜2值为1.预测和测量值相当接近,这表明可以有效地使用开发的模型来预测废物冷却油的碱催化转发生物柴油产量。

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