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Pilot-scale production of biodiesel from waste cooking oil using kettle limescale as a heterogeneous catalyst

机译:使用釜灰垢作为非均相催化剂从废食用油中试生产生物柴油

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This study aimed to evaluate and optimize a pilot-scale microreactor to convert waste cooking oil (WCO) into biodiesel using kettle limescale. Box-Behnken design was used to determine the optimum conditions for producing biodiesel. Effects of main variables including reaction temperature, catalyst concentration, and alcohol/oil volume ratio were evaluated at a constant residence time of 10 min. Based on the results of analysis of variance, the quadratic regression model had the best coefficient of determination (R-2 = 0.9930) and adjusted coefficient of determination (R-Adj.(2)= 0.9804). After the optimization of temperature, catalyst concentration, and methanol/oil volume ratio, the residence time was optimized to achieve the maximum purity of the produced biodiesel. At a reaction temperature of 61.7 degrees C, catalysts concentration (oil based) of 8.87 wt %, methanol to oil volume ratio of 1.7:3, and a residence time of 15 min, we observed the optimal conditions for obtaining a maximum biodiesel purity of 93.41%. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究旨在评估和优化中试规模的微反应器,以使用釜式石灰水垢将废食用油(WCO)转化为生物柴油。 Box-Behnken设计用于确定生产生物柴油的最佳条件。在恒定停留时间为10分钟的情况下评估了主要变量的影响,包括反应温度,催化剂浓度和醇/油体积比。根据方差分析的结果,二次回归模型具有最佳的确定系数(R-2 = 0.9930)和调整后的确定系数(R-Adj。(2)= 0.9804)。在优化温度,催化剂浓度和甲醇/油体积比之后,优化停留时间以实现所生产生物柴油的最大纯度。在61.7摄氏度的反应温度下,催化剂浓度(基于油)为8.87 wt%,甲醇与油的体积比为1.7:3,停留时间为15分钟,我们观察到获得最大生物柴油纯度的最佳条件。 93.41%。 (C)2019 Elsevier Ltd.保留所有权利。

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