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首页> 外文期刊>International journal of hydrogen energy >Hydrogen production employing Cu(BDC) metal-organic framework support in methanol steam reforming process within monolithic micro-reactors
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Hydrogen production employing Cu(BDC) metal-organic framework support in methanol steam reforming process within monolithic micro-reactors

机译:用Cu(BDC)金属有机骨架支持在整体微反应器中甲醇蒸汽重整过程中的金属 - 有机骨架支持

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Cu(BDC) metaleorganic framework (MOF) was used as a support for the copper (Cu) catalyst applied in the methanol steam reforming (MSR) process at low temperatures (130-250 degrees C) with a feed WHSV = 9.2 h(-1) within the monolithic reactor. Also, the effects of diverse promoters were examined on the catalytic activities of the Cu/X-Cu(BDC) (X = Ce, Zn, Gd, Sm, La, Y, Pr) catalysts. Results showed that the Ce/Sm-Cu(BDC) supports exhibited highest activities, lowest reduction temperatures and largest specific surface areas, which caused highest distributions of the active copper metal nanoparticles on the supports. The reactor tests displayed that the activities of Cu/X-Cu(BDC) (X = Ce, Zn, Gd, Sm, La, Y, Pr) catalysts followed the order X = Ce Sm Y La Pr Cu(BDC) Zn Gd. The highest activities of Ce and Sm containing catalysts were attributed to the presence of CeO2 and Sm2O3 caused the oxygen vacancies on the catalyst surface which had positive effects on the methanol reforming process. The time-on-stream stability tests showed the highest resistance of the Cu/Ce-Cu(BDC) catalyst to the carbon formation during 32 h. Consequently, the Cu/Ce-Cu(BDC) with the highest stability, methanol conversion and carbon monoxide selectivity could be used in practical industrial applications. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:将金属有机框架(MOF)用作在低温(130〜250℃)的甲醇蒸汽重整(MSR)过程中施用的铜(Cu)催化剂的载体用进料WHSV = 9.2小时( - 1)在整体反应器中。此外,对Cu / X-Cu(BDC)(X = Ce,Zn,Gd,Sm,La,Y,Pr)催化剂的催化活性检查了各种启动子的效果。结果表明,CE / SM-Cu(BDC)支撑件表现出最高的活性,最低减少温度和最大的特定表面积,这引起了活性铜金属纳米粒子对支撑件的最佳分布。反应器试验显示Cu / X-Cu(BDC)(X = Ce,Zn,Gd,Sm,La,Y,Pr)催化剂的活性X = Ce> Sm> Y (BDC)> Zn> Gd。 Ce和SM含催化剂的最高活性归因于CEO2和SM2O3的存在使催化剂表面上的氧空位对甲醇重整过程产生阳性作用。在32小时期间,在线上稳定性试验显示Cu / Ce-Cu(BDC)催化剂在碳形成中的最高电阻。因此,具有最高稳定性,甲醇转化和一氧化碳选择性的Cu / Ce-Cu(BDC)可用于实际工业应用中。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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