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Activity promotion of anti-sintering Au■MgGa_2O_4 using ceria in the water gas shift reaction and catalytic combustion reactions

Activity promotion of anti-sintering Au■MgGa_2O_4 using ceria in the water gas shift reaction and catalytic combustion reactions

作     者:Guo-Qing Ren Guang-Xian Pei Jing-Cai Zhang Wei-Zhen Li 任国庆;裴广贤;张景才;李为臻

作者机构:Dalian Institute of Chemical PhysicsChinese Academy of SciencesDalian 116023LiaoningChina University of Chinese Academy of SciencesBeijing 100049China Dalian National Laboratory for Clean EnergyCASDalian 116023LiaoningChina 

基  金:supported by the National Key R&D Program of China(2016YFA0202801) the National Natural Science Foundation of China(21403213,21673226) the"Transformational Technologies for Clean Energy and Demonstration"Strategic Priority Research Program of the Chinese Academy of Sciences(XDA21040200) the "Hundred Talents Programme" of the Chinese Academy of Sciences 

出 版 物:《Chinese Journal of Catalysis》 (催化学报(英文))

年 卷 期:2019年第40卷第4期

页      码:600-608,M0006页

摘      要:Heterogeneous gold nanocatalysts have both inspired researchers with their unique catalytic performance and frustrated them due to the contradictions observed in their activities and stabilities.A recent breakthrough has shown that gold nanoparticles(NPs)can retain their catalytically active size over a MgGa2O4 spinel support upon sintering at high ***,we report the catalytic activity of anti-sintering AuGMgGa2O4 for use in water gas shift reaction(WGSR)and catalytic combustion reactions,and the promoting effect of *** adding ceria to 800℃-aged AuGMgGa2O4,the CO conversion in the WGSR was increased from ~1.5% to ~34.0% at 450 ℃,and the “light-off” temperatures(T50)for methane combustion and CO oxidation were decreased by ~80 and ~100 ℃,*** using XRD,HAADF-STEM,EDS mapping,H2-TPR,XPS,and DRIFTs confirmed the proximate contact of Au with ceria and their significant synergistic effect,which thereby combined the benefits of ceria toward the dissociation of H2O or O2 and the Au NPs toward activating CO or *** results show that this stepwise stabilization-activation strategy is efficient for rationally constructing stable and active gold nanocatalysts,which may open up possibilities for the wide application of gold nanocatalysts at elevated temperatures.

主 题 词:Gold nanocatalyst CeO2 promoter Magnesium gallate spinel Water gas shift Catalytic combustion 

学科分类:081705[081705] 08[工学] 0817[工学-轻工类] 080502[080502] 0805[工学-能源动力学] 

核心收录:

D O I:10.1016/S1872-2067(19)63295-X

馆 藏 号:203571754...

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