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Process Optimization for Biodiesel Production from Waste Frying Oil over Montmorillonite Clay K-30

机译:从蒙脱石粘土k-30流煎油生物柴油生产的过程优化

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Biodiesel that mostly comes from pure renewable resources provide an alternative fuel option for future because of limited fossil fuel resources as well as environmental concerns. The transesterification of non-edible oils for biodiesel production is one of the promising process for biodiesel production to overcome this future crises of energy. The utilization of waste frying oil into biodiesel have great worth for economization of biodiesel cost as well as the conversion of waste into value added product with environmental protection. The purpose of the present work is to optimize the process of biodiesel production over a heterogeneous clay based catalyst. Particularly, the transesterification of waste frying palm oil with methanol was studied in the presence of montmorillonite clay K-30 as solid base catalyst that have both of acid and basic nature. The observed date was then optimized with the help of Design of Experiments software. The Response Surface Methodology (RSM) based on four-variable central composite design (CCD) with a (alpha) = 2 was used for this purpose. The transesterification process variables were reaction temperature, X1 (40-140°C), reaction period, x2 (60-300 min), methanol/oil ratio, x3 (6:1-18:lmol/ mol) and amount of catalyst, X4 (1-5% wt). The results showed that waste frying oil is a good feedstock for biodiesel production and high yield of 78.4% was obtained during optimization of this biodiesel process that was noted after 180 min at temperature 901, with a 12:lmolar ratio of methanol to waste frying oil and using 3%wt of montmorillonite clay K-30 catalyst.
机译:由于化石燃料资源有限和环境问题,因此,大多来自纯可再生资源的生物柴油提供了替代燃料选择。用于生物柴油生产的非食用油的酯交换是生物柴油生产的有希望的工艺之一,以克服这种未来的能量危机。将废物煎炸到生物柴油中的利用对于生物柴油成本的节能以及将废物转化为具有环保的增值产品的价值。本作作品的目的是优化在非均相粘土基催化剂上的生物柴油生产的过程。特别是,在蒙脱石粘土K-30存在下,研究了与甲醇的废物油炸棕榈油作为具有酸和碱性性质的固体碱催化剂。然后通过实验软件的设计进行了优化了观察到的日期。基于四变量中央复合设计(CCD)的响应面方法(RSM)用于该目的。酯交换过程变量是反应温度,X1(40-140℃),反应期,X2(60-300分钟),甲醇/油比,X3(6:1-18:Lmol / mol)和催化剂量, x4(1-5%wt)。结果表明,废物油油是生物柴油生产的良好原料,在优化该生物柴油过程中获得的高产78.4%,其在温度为901的180分钟后注明,12:Lmolar与甲醇的溶液与废油脂的比率。并使用3%wt的蒙脱石粘土K-30催化剂。

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