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Optimization of Euphorbia rigida fast pyrolysis conditions by using response surface methodology

机译:响应面法优化一品红快速热解条件

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The objective of this study was to optimize the experimental conditions for obtaining the highest bio-oil yield from Euphorbia rigida (E. rigida) by fast pyrolysis using response surface methodology (RSM) based on central composite design (CCD). Experimental design was applied to optimize the reaction temperature, heating rate, and nitrogen gas flow rate which are the important parameters effecting the pyrolysis process. From the analysis of variance (ANOVA), the most influential factor of each experimental design response was identified and an empirical model in terms of factors was derived. The optimum conditions were found to be at reaction temperature of 600℃, heating rate of 200℃/min, and nitrogen flow rate of 100 mL/min. Maximum bio-oil yield was obtained as 35.3% under optimum conditions. Second-order polynomial equation for bio-oil yield was developed to correlate the parameters. A three-factorial design proved to be an effective model in studying the influence of the pyrolysis parameters.
机译:这项研究的目的是通过基于中央复合设计(CCD)的响应表面方法(RSM)通过快速热解来优化从大戟(E.phora)的最大生物油产量的实验条件。实验设计用于优化反应温度,加热速率和氮气流速,这是影响热解过程的重要参数。通过方差分析(ANOVA),可以确定每个实验设计响应中最有影响力的因素,并得出有关因素的经验模型。最佳条件为反应温度为600℃,加热速率为200℃/ min,氮气流速为100mL / min。在最佳条件下,最大生物油产率为35.3%。建立了生物油产量的二阶多项式方程,以关联参数。三因素设计被证明是研究热解参数影响的有效模型。

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