首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Steam reforming of bio-ethanol on alkali-doped Ni/MgO catalysts:hydrogen production for MC fuel cell
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Steam reforming of bio-ethanol on alkali-doped Ni/MgO catalysts:hydrogen production for MC fuel cell

机译:碱掺杂Ni / MgO催化剂上生物乙醇的蒸汽重整:MC燃料电池的制氢

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摘要

The effects of alkali addition (e.g.Li,Na,K) on the behavior of Ni/MgO catalyst in the bio-ethanol steam reforming have been investigated.Li and Na promote the NiO reduction but negatively affect the dispersion of the Ni/MgO catalyst,whereas K does not significantly affect either morphology or dispersion.Li and K enhance the stability of Ni/MgO mainly by depressing Ni sintering.Coke formation on bare and doped catalysts occurs but with orders of magnitude lower rates than those claimed for Ni supported on an acidic carrier.The peculiar influence of the mean Ni particle size on the turnover frequency (TOF s~(-1)) has been explained by invoking a structure-sensitive character of the ethanol dehydrogenation reaction considered as being the first step of the reaction which evolves according to the following mechanism:ethanol hydrogenation ->acetaldehyde decomposition->steam reforming of methane and water gas shift reactions.
机译:研究了碱添加(如Li,Na,K)对Ni / MgO催化剂在生物乙醇蒸汽重整中的行为的影响.Li和Na促进NiO的还原,但对Ni / MgO催化剂的分散性有负面影响Li和K主要通过抑制Ni烧结来提高Ni / MgO的稳定性。在裸露和掺杂的催化剂上会形成焦炭,但速率比负载在Ni上的Ni要求的低几个数量级。平均镍粒径对周转频率(TOF s〜(-1))的特殊影响已通过调用被认为是反应第一步的乙醇脱氢反应的结构敏感特性进行了解释其反应机理如下:乙醇加氢->乙醛分解->甲烷蒸汽重整和水煤气变换反应。

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