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Hydrogen production with a low carbon monoxide content via methanol steam reforming over CuxCeyMgz/Al2O3 catalysts: Optimization and stability

机译:在CuxCeyMgz / Al2O3催化剂上通过甲醇蒸汽重整生产低一氧化碳的制氢工艺:优化和稳定性

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Catalytic activities of Ce-Mg promoted Cu/Al2O3 catalysts via methanol steam reforming was investigated in terms of the methanol conversion level, carbon monoxide selectivity and hydrogen yield. The factors chosen were the reaction temperature, copper content, Mg/(Ce + Mg) weight-percentage and steam to carbon ratios. The catalysts were prepared by co-precipitation and characterized by means of XRD, BET, H-2-TPR, and FESEM. The Ce Mg bi-promoter catalysts gave higher performance due to magnesium penetration into the cerium structure causing oxygen vacancy defects on the ceria. A response-surface model was then designed to optimize the condition at a 95% confidence interval for complete methanol conversion to a high H-2 yield with a low CO content, and revealed an optimal copper level of 46-50 wt%, Mg/(Ce + Mg) of 16.2-18.0%, temperature of 245-250 degrees C and S/C ratio of 1.74-1.80. No deactivation of the Cu0.5Ce0.25Mg0.05/Al catalyst was observed during a 72-h stability test. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:从甲醇转化率,一氧化碳选择性和氢气产率等方面研究了Ce-Mg促进的Cu / Al2O3催化剂通过甲醇蒸汽重整的催化活性。选择的因素是反应温度,铜含量,Mg /(Ce + Mg)重量百分比和水蒸气与碳的比率。通过共沉淀制备催化剂,并通过XRD,BET,H-2-TPR和FESEM对其进行表征。 Ce Mg双助催化剂具有较高的性能,这是由于镁渗透到铈结构中,导致二氧化铈上的氧空位缺陷。然后设计了一个响应面模型,以在95%的置信区间内优化条件,以将甲醇完全转化为具有低CO含量的高H-2收率,并揭示了46-50 wt%,Mg / (Ce + Mg)为16.2-18.0%,温度为245-250摄氏度,信噪比为1.74-1.80。在72小时的稳定性测试过程中未观察到Cu0.5Ce0.25Mg0.05 / Al催化剂失活。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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