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Doping effects of Ni-MgO on the structure and performance of carbon nanotube-supported Pt catalysts for preferential oxidation of CO in a H-2 stream
Yang, Hongwei ; Wang, Chao ; Li, Bodong ; Lin, Haiqiang ; Tanaka, Ken-ichi ; Yuan, Youzhu ; Lin HQ(林海强)
刊名http://dx.doi.org/10.1016/j.apcata.2011.06.001
2011-07-31
关键词TEMPERATURE PROX REACTION HYDROGEN-RICH STREAM ALLOY NANOPARTICLES HCOO INTERMEDIATE H-2-RICH STREAM FE GRAPHITE PLATINUM MONOXIDE DECOMPOSITION
英文摘要National Natural Science Foundation of China [20873108, 20923004]; National Basic Research Program of China [2011CBA00508]; Key Scientific Project of Fujian Province [2009HZ0002-1]; The preferential oxidation of CO (CO-PROX) in a H-2-rich stream is performed on a series of supported Pt catalysts doped with Ni-MgO. The characterizations of the catalysts by means of in situ X-ray diffraction, high resolution transmission electron microscopy, and scanning transmission electron microscopy-energy dispersive spectroscopy reveal that the nanocomposites of Pt-Ni alloys that intimately adjoined Ni-MgO solid solution are present on the surfaces of carbon nanotube (CNT). However. the Pt-Ni alloying is hardly detected when the same compositions are supported on other carriers like active carbon, graphite, TiO2. SiO2 and Al2O3 followed by identical treatment. The CNT-supported Pt0.3Ni1.0Mg2.4 (Pt0.3Ni1.0Mg2.5/CNT, the data at subscript stand for the Pt/Ni/Mg atomic ratio) catalyst with overall metal loading of 15 wt% affords 100% CO conversion and 50% O-2 selectivity in H-2 at temperatures ranging from 333 to 453 K. whereas the CNT-supported Pt catalyst and the other carriers-supported Pt0.3Ni1.0Mg2.4 ones perform very low or insufficient activities under the same reaction conditions. Further, the Pt0.3Ni1.0Mg2.4/CNT catalyst with a mean Pt-Ni particle size about 7.3 nm shows negligible drop in CO-PROX performance at 373 K for longer than 40 h on the streams either with or without H2O vapor and CO2. The deactivation of the catalyst is largely due to the accumulation of H2O/OH- species and carbonates, which can be removed by calcination and reduction to get the regeneration of the CO-PROX performance as a result. The high performance of the catalysts is ascribed to the interaction between Pt and Ni with the formation of Pt-Ni alloy which is strongly interacted with Ni-MgO solid solution. (C) 2011 Elsevier B.V. All rights reserved.
语种英语
内容类型期刊论文
源URL[http://dspace.xmu.edu.cn/handle/2288/62549]  
专题化学化工-已发表论文
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GB/T 7714
Yang, Hongwei,Wang, Chao,Li, Bodong,et al. Doping effects of Ni-MgO on the structure and performance of carbon nanotube-supported Pt catalysts for preferential oxidation of CO in a H-2 stream[J]. http://dx.doi.org/10.1016/j.apcata.2011.06.001,2011.
APA Yang, Hongwei.,Wang, Chao.,Li, Bodong.,Lin, Haiqiang.,Tanaka, Ken-ichi.,...&林海强.(2011).Doping effects of Ni-MgO on the structure and performance of carbon nanotube-supported Pt catalysts for preferential oxidation of CO in a H-2 stream.http://dx.doi.org/10.1016/j.apcata.2011.06.001.
MLA Yang, Hongwei,et al."Doping effects of Ni-MgO on the structure and performance of carbon nanotube-supported Pt catalysts for preferential oxidation of CO in a H-2 stream".http://dx.doi.org/10.1016/j.apcata.2011.06.001 (2011).
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