首页> 外文期刊>International journal of hydrogen energy >Catalytic decomposition of hydrogen iodide over pre-treated Ni/CeO_2 catalysts for hydrogen production in the sulfur-iodine cycle
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Catalytic decomposition of hydrogen iodide over pre-treated Ni/CeO_2 catalysts for hydrogen production in the sulfur-iodine cycle

机译:预处理的Ni / CeO_2催化剂上碘化氢催化分解,在硫碘循环中制氢

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摘要

The Ni/CeO_2 catalysts with successive oxidization, reduction and re-oxidization have been tested for hydrogen production in sulfur-iodine (SI or IS) cycle. The samples were characterized by BET, XRD, TEM, TPR and XPS. The oxidative/reductive atmosphere affected the structure and performance of the catalysts. It was suggested that a migration of Ce~(4+) from the bulk to the surface occurred during the reductive treatment. The diffusion process was reversed when the atmosphere was changed to an oxidative one. The reduced and re-oxidized samples seemed to be similar all the time and showed better catalytic activity in comparison with the as-received and oxidized samples. For the re-oxidized sample, the strongest interaction compared with other samples occurred between Ni and CeO_2 and oxygen vacancies transferred from bulk to surface, which led to form more surface sites and oxygen vacancies. The metal Ni was found only on the surface of the reduced sample. The active site of metal Ni besides the surface site and oxygen vacancy were assumed to play an important role for hydrogen production.
机译:已经测试了具有连续氧化,还原和再氧化的Ni / CeO_2催化剂在硫碘(SI或IS)循环中的产氢能力。通过BET,XRD,TEM,TPR和XPS对样品进行表征。氧化/还原气氛影响催化剂的结构和性能。提示在还原处理过程中,Ce〜(4+)从本体向表面迁移。当气氛变为氧化性时,扩散过程逆转。与原样和氧化后的样品相比,还原后和再氧化的样品似乎一直相似,并表现出更好的催化活性。对于再氧化的样品,Ni和CeO_2之间发生了与其他样品相比最强的相互作用,并且氧空位从本体转移到表面,这导致形成更多的表面位点和氧空位。仅在还原样品的表面发现金属Ni。除表面位点和氧空位外,金属镍的活性位点被认为对制氢起着重要作用。

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