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Response Surface Methodological Approach for Optimization of Free Fatty Acid Removal in Feedstock

机译:响应面法优化原料中游离脂肪酸的去除方法

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Fatty acid methyl esters, also referred to as biodiesel, have been determined to have a great deal of potential as substitutes for petro-diesel. In order to optimize conversion yield in the biodiesel production process, feedstocks were previously recommended to be anhydrous, with a free fatty acid content of less than 0.5%. In this study, we removed free fatty acid from feedstock through the use of solid catalysts and response surface methodology. In order to optimize free fatty acid removal, response surface methodology was applied to delineate the effects of five-level-four-factors and their reciprocal interactions on free fatty acid removal. A total of 30 individual experiments were conducted, each of which was designed to study reaction temperature, reaction time, catalyst amounts, or methanol amounts. A statistical model was used to estimate that the optimal free fatty acid removal yield would be 100%, under the following optimized reaction conditions: a reaction temperature of 66.96°C, a catalyst amount of 12.66% (w/v), and a reaction time of 37.65 min. Using these optimal factor values under experimental conditions in three independent replicates, an average conversion yield was well achieved within the values predicted by the model.
机译:脂肪酸甲酯,也称为生物柴油,已被确定具有很大的潜力替代石油柴油。为了在生物柴油生产过程中优化转化率,以前建议原料是无水的,其游离脂肪酸含量小于0.5%。在这项研究中,我们通过使用固体催化剂和响应面方法从原料中去除了游离脂肪酸。为了优化游离脂肪酸的去除,应用响应面方法描述了五级四因子及其相互影响对游离脂肪酸去除的影响。总共进行了30个单独的实验,每个实验都旨在研究反应温度,反应时间,催化剂量或甲醇量。在以下优化的反应条件下,使用统计模型估计最佳游离脂肪酸去除率将为100%:反应温度为66.96°C,催化剂量为12.66%(w / v),反应时间37.65分钟。使用这些最佳因子值在实验条件下进行三个独立的重复实验,可以在模型预测的值范围内很好地实现平均转化率。

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