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Characterization of NiAl and NiCuAl catalysts prepared by different methods for hydrogen production by thermo catalytic decomposition of methane

机译:通过甲烷热催化分解制氢不同方法制备的NiAl和NiCuAl催化剂的表征

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NiAl and NiCuAl catalysts have been prepared by co-precipitation,fusion and impregnation methods to promote the Ni formation,as active phase,in different degrees of dispersion and crystal domain sizes as evidenced through the characterization study of fresh catalysts.Performance tests show that the hydrogen production was not highly dependent on the preparation method used but the presence of Cu as a dopant in NiCuAl catalysts enhanced the catalytic activity substantially.The catalyst deactivation was never reached at the fixed times used in the reactivity tests.The Ni properties,mostly derived from thermal sintering and chemical-induced faceting were substantially altered during the process of methane decomposition,and the properties of the deposited carbon were highly dependent on the presence of Cu as a dopant in NiCuAl catalysts.NiCuAl catalysts enhances the formation of a well-ordered graphitic carbon while NiAl catalysts promote the deposition of a turbostratic carbon suitable as catalytic supports or hydrogen storage.
机译:通过共沉淀,熔融和浸渍方法制备了NiAl和NiCuAl催化剂,以促进Ni的形成,该Ni是活性相,在不同的分散度和晶畴尺寸下均呈活性状态,通过新鲜催化剂的表征研究证明。氢气的产生并不高度依赖于所用的制备方法,但是NiCuAl催化剂中铜作为掺杂剂的存在大大提高了催化活性。在反应性测试所用的固定时间从未达到催化剂失活的作用。在甲烷分解过程中,热烧结和化学诱导的刻面产生的碳原子发生了很大变化,并且沉积的碳的性能高度依赖于NiCuAl催化剂中作为掺杂剂的Cu的存在。NiCuAl催化剂增强了有序碳的形成石墨碳,而NiAl催化剂促进了适合催化载体或储氢。

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