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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Predictive Modelling and Surface Analysis for Optimization of Production of Biofuel as A Renewable Energy Resource: Proposition of Artificial Neural Network Search
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Predictive Modelling and Surface Analysis for Optimization of Production of Biofuel as A Renewable Energy Resource: Proposition of Artificial Neural Network Search

机译:生物燃料生产优化的预测建模与表面分析:人工神经网络搜索主张

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The present study undertakes the research problem on the optimization of production of biodiesel as a renewable energy resource from the transesterification of soybean oil and ethanol. Predictive modelling and surface analysis techniques were applied based on the artificial neural network search algorithm to correlate the yield of ethyl ester and glycerol and the input parameters. The formulated models accurately predicted the yield of the products with a high coefficient of determination. When the reaction time is low, the ester yield decreases with an increase in temperature and the maximum yield of obtained biodiesel at a very low value of time of reaction and temperature. Plots based on parametric and sensitivity analysis reveals that the yield of ethyl ester can be maximized and that of glycerol minimized at an integrated condition with lower ethanol/oil molar ratio, higher temperature value, higher catalyst concentration value, and longer time of reaction. The global sensitivity analysis reveals that the catalyst concentration and temperature of the reaction influence the yield of ethyl ester the most. In addition, an optimal ethyl ester yield of 95% can be achieved at specific input conditions. Moreover, according to the results of global sensitivity analysis, the catalyst concentration is found to be most significant for both the glycerol and ethyl ester yield.
机译:本研究对从大豆油和乙醇的酯交换中作为可再生能源优化生物柴油的优化研究问题。基于人工神经网络搜索算法施加预测建模和表面分析技术,以将乙酯和甘油的产量与输入参数相关。配方模型精确地预测了具有高级别系数的产品的产量。当反应时间较低时,酯产率随温度的增加而降低,在反应和温度的非常低的时间值下获得的生物柴油的最大收率。基于参数和敏感性分析的图显示,乙酯的产率可以最大化,甘油在乙醇/油摩尔比的综合条件下最小化,温度值较高,催化剂浓度值和更长的反应时间。全局敏感性分析表明,反应的催化剂浓度和温度最为影响乙酯的产率。此外,在特定的输入条件下可以实现95%的最佳乙酯产率。此外,根据全局敏感性分析的结果,发现催化剂浓度对于甘油和乙酯产率最显着。

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