详细信息

Catalytic performance of Ni/CaO-Ca5Al6O14 bifunctional catalyst extrudate in sorption-enhanced steam methane reforming  ( EI收录)  

文献类型:期刊文献

英文题名:Catalytic performance of Ni/CaO-Ca5Al6O14 bifunctional catalyst extrudate in sorption-enhanced steam methane reforming

作者:Xu, Pan[1]; Zhou, Zhiming[1]; Zhao, Changjun[1]; Cheng, Zhenmin[1]

机构:[1] State Key Laboratory of Chemical Engineering, East China University of Science and Technology, Shanghai, 200237, China

年份:2016

卷号:259

起止页码:347

外文期刊名:Catalysis Today

收录:EI(收录号:20152600970074)

语种:英文

外文关键词:Methane - Nickel compounds - Carbon dioxide - Catalytic reforming - Sol-gel process - Catalyst activity - Stability - Aluminum compounds - Sol-gels - Sorption - Steam reforming

摘要:In this work, mm-sized shaped Ni/CaO-Ca5Al6O14 bifunctional catalyst extrudates were prepared by extruding sol-gel-derived Ni/CaO-Ca5Al6O14 powder, and applied to the sorption-enhanced steam methane reforming (SESMR) process. The Ca5Al6O14-stabilized bifunctional catalysts exhibited higher stability and CaO utilization efficiency than that of Ni/CaO when subjected to 50 carbonation-calcination cycles for CO2 capture, indicating the positive effect of Ca5Al6O14 incorporation. The Ni/CaO-Ca5Al6O14 extrudates possessed good activity and stability over 10 SESMR cycles, and showed advantages over the use of catalyst and sorbent mixture, including an extended prebreakthrough time and a higher catalytic activity. In particular, the Ni/CaO-Ca5Al6O14 extrudate consisting of 15 wt% (mass fraction) Ni, 61.7 wt% CaO and 23.3 wt% Ca5Al6O14 provided high activity and stability for the SESMR process, even at a low H2O/CH4 molar ratio of 2 over 20 SESMR cycles. These results clearly demonstrate that the Ni/CaO-Ca5Al6O14 extrudate is an interesting candidate for the SESMR process. ? 2015 Elsevier B.V.

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