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首页> 外文期刊>Journal of Catalysis >STUDIES ON THE SULFUR POISONING OF RU-RUOX/TIC2 CATALYST FOR THE ADSORPTION AND METHANATION OF CARBON MONOXIDE
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STUDIES ON THE SULFUR POISONING OF RU-RUOX/TIC2 CATALYST FOR THE ADSORPTION AND METHANATION OF CARBON MONOXIDE

机译:RU-RUOX / TIC2催化剂对硫吸附和甲烷化的硫中毒研究

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The effects of sulfur poisoning on the chemisorption and on the methanation of carbon monoxide over Ru/TiO2 catalyst were investigated by FTIR spectroscopy and volumetric gas adsorption measurements. The CS2 molecules are eta' bonded to Ru sites through one of the sulfur atoms and decompose to the constituent elements on thermal activation. Each S atom may deactivate 3 to 10 metal sites even at low coverages, the effect being more pronounced on the chemisorption of hydrogen. The deposited sulfur (and possibly carbon also) sterically hinders the formation of certain multicarbonyl and monocarbonyl species (nu CO in 2055-2140 cm(-1) region), which otherwise transform to methane via surface methylene groups in the presence of chemisorbed hydrogen and are found to play an important role in the low-temperature methanation activity of the studied catalyst. The Ru-CO species giving rise to lower-frequency vibrational bands are affected to a lesser extent. The presence of sulfur also results in the development of some new CO binding states which are weak and are identified with the CO and S coadsorbed at Ru sites of different oxidation states or of varying crystallographic nature. The CO adsorbed in these states is not reactive to hydrogen. (C) 1996 Academic Press, Inc. [References: 46]
机译:通过FTIR光谱和体积气体吸附测量,研究了硫中毒对Ru / TiO2催化剂上化学吸附和一氧化碳甲烷化的影响。 CS2分子通过硫原子之一与Ru位点键合,并在热活化时分解为组成元素。每个S原子即使在低覆盖率下也可以使3到10个金属位点失活,这种作用在氢的化学吸附上更为明显。沉积的硫(可能还有碳)在空间上阻碍某些多羰基和单羰基物质(nu CO在2055-2140 cm(-1)区域)的形成,否则它们在化学吸附的氢和氢的存在下会通过表面亚甲基转化为甲烷据发现,它们在所研究的催化剂的低温甲烷化活性中起重要作用。产生低频振动带的Ru-CO受到的影响较小。硫的存在还导致一些新的CO结合态的发展,这些结合态很弱,并且被CO和S共吸附在不同氧化态或不同晶体学性质的Ru位置上。以这些状态吸附的CO对氢不具有反应性。 (C)1996 Academic Press,Inc. [参考:46]

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