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Ni/Mg/Al anionic clay derived catalysts for the catalytic partial oxidation of methane - Residence time dependence of the reactivity features

机译:Ni / Mg / Al阴离子粘土衍生的甲烷催化部分氧化催化剂-反应时间对停留时间的影响

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The catalytic partial oxidation (CPO) of methane was investigated with four Ni-based catalysts prepared through reduction of hydrotalcite-type precursors, The calcination of the precursors, generated materials in which the Ni species were differently distributed between NiO, (Ni, Mg)Al2O4 phases and NiO-MgO periclase structures. The relative amount of the different phases depended on Ni content and affected the reactivity of the solids towards reduction and towards CPO step, Catalysts with high Ni-content required mild reduction conditions, but deactivated rapidly with time-on-stream due to carbon formation, Instead, catalysts with low Ni-content were activated only after a severe reduction treatment but showed high stability during the reaction. The effect of residence time was investigated with a particularly stabilized catalyst, in order to understand if selectivities and conversions could be kinetically controlled. Results were grouped considering three reactivity regions (tau less than or equal to 70 ms, 70< tau <150 ms, and 300< tau < 720 ms), In the shorter residence time region, large chemical composition variations and large temperature gradients were observed along the catalytic bed and relevant differences between surface and gas temperatures were determined, These differences, not observed in the other two residence time regions, are discussed and related to heat transfer limitation, occurrence of direct oxidation routes and hot spot phenomenon effects, (C) 1998 Academic Press. [References: 40]
机译:用四种水滑石型前驱体还原制备的镍基催化剂,研究了甲烷的催化部分氧化(CPO)。前驱体的煅烧产生了NiO(Ni,Mg)之间的Ni物种分布不同的材料。 Al2O4相和NiO-MgO过氧化物酶结构。不同相的相对量取决于Ni的含量,并影响固体对还原和向CPO步骤的反应性。Ni含量高的催化剂需要适度的还原条件,但由于形成碳而随时间流逝而迅速失活,相反,具有低Ni含量的催化剂仅在经过严格的还原处理后才被活化,但是在反应过程中显示出高稳定性。为了了解选择性和转化率是否可以动力学控制,用一种特别稳定的催化剂研究了停留时间的影响。考虑三个反应区域(tau小于或等于70 ms,70

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