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Elucidation of behavior of sulfur on nickel-based hot gas cleaning catalysts

机译:阐明硫在镍基热气清洁催化剂上的行为

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A closed-loop gas-recirculation system was used to measure the isosteric heat of sulfur chemisorption on supported nickel catalysts in hot gas cleaning conditions of gasification gas. During sulfur adsorption, reconstruction of the catalysts occurred. In addition, probably the enormous increase in surface diffusion due to sulfur adsorption on some nickel catalysts with high flow rates resulted in melt formation of adsorbed species on the surfaces of catalyst particles. Heat of sulfur adsorption on nickel decreased when sulfur coverage was increased. However, the enthalpy of adsorption decreased even below the heat of formation of bulk Ni_3S_2, indicating most likely multi-layer or subsurface sulfur formation on catalyst surfaces. The structural properties of the catalysts had a great influence on sulfur adsorption behavior. The effect of sulfur on ammonia decomposition in synthetic gasification gas tests was explained by the change of heat of sulfur chemisorption on nickel.
机译:在气化气的热气净化条件下,使用闭环气体再循环系统测量负载型镍催化剂上硫化学吸附的等排热。在硫吸附过程中,发生了催化剂的重建。此外,由于硫以高流速吸附在某些镍催化剂上,表面扩散可能会大大增加,导致在催化剂颗粒表面上熔融形成吸附物质。当硫覆盖率增加时,镍上的硫吸附热降低。然而,甚至在低于本体Ni_3S_2的形成热以下时,吸附焓也降低了,表明催化剂表面上最有可能形成多层或地下硫。催化剂的结构性质对硫的吸附行为有很大的影响。硫对合成气化气测试中氨分解的影响是通过硫对镍的化学吸附热的变化来解释的。

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