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Investigation of the Process Conditions for Hydrogen Production by Steam Reforming of Glycerol over Ni/Al2O3 Catalyst Using Response Surface Methodology (RSM)

机译:用响应面法研究在Ni / Al2O3催化剂上甘油蒸汽重整制氢制氢的工艺条件

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摘要

In this work; a response surface methodology (RSM) was implemented to investigate the process variables in a hydrogen production system. The effects of five independent variables; namely the temperature (X1); the flow rate (X2); the catalyst weight (X3); the catalyst loading (X4) and the glycerol-water molar ratio (X5) on the H2 yield (Y1) and the conversion of glycerol to gaseous products (Y2) were explored. Using multiple regression analysis; the experimental results of the H2 yield and the glycerol conversion to gases were fit to quadratic polynomial models. The proposed mathematical models have correlated the dependent factors well within the limits that were being examined. The best values of the process variables were a temperature of approximately 600 °C; a feed flow rate of 0.05 mL/min; a catalyst weight of 0.2 g; a catalyst loading of 20% and a glycerol-water molar ratio of approximately 12; where the H2 yield was predicted to be 57.6% and the conversion of glycerol was predicted to be 75%. To validate the proposed models; statistical analysis using a two-sample t-test was performed; and the results showed that the models could predict the responses satisfactorily within the limits of the variables that were studied.
机译:在这项工作中;实施了响应面方法(RSM)以研究制氢系统中的工艺变量。五个独立变量的影响;即温度(X1);流量(X2);催化剂重量(X3);研究了催化剂负载量(X4)和甘油-水摩尔比(X5)对H2收率(Y1)的影响,以及甘油向气态产物的转化率(Y2)。使用多元回归分析;氢气产率和甘油向气体的转化率的实验结果符合二次多项式模型。拟议的数学模型已将相关因素很好地关联到正在检查的范围内。过程变量的最佳值是大约600°C的温度。进料流速为0.05 mL / min;催化剂重量为0.2克;催化剂的负载量为20%,甘油-水的摩尔比约为12。其中氢气的产率预计为57.6%,甘油的转化率预计为75%。验证提出的模型;使用两样本t检验进行统计分析;结果表明,该模型可以在所研究变量的范围内令人满意地预测响应。

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