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Elucidating the impact of Ni and Co loading on the selectivity of bimetallic NiCo catalysts for dry reforming of methane

机译:阐明Ni和Co加载对甲烷干燥改性的双金属Nico催化剂的选择性

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Nickel and cobalt-based catalysts are very promising candidates for the dry reforming of methane, but their role in regulating catalyst selectivity has thus far been overlooked. Here we report the significant impact that catalyst selectivity has on the performance of Ni and Co catalysts for the dry reforming of methane. The role of Ni and Co in defining catalyst selectivity was examined via in-depth investigations into the tendency of catalysts towards the Boudouard, methane cracking and reverse water gas shift side reactions. Decoupling the side reactions demonstrated that Co deposits have a high affinity for the removal of carbon species via oxidation, while Ni is more active towards CH4 decomposition. Thereby superior catalytic performance is accessed via a combination of the high activity of Ni towards CH4 with the stabilising effect and carbon-resistance of Co. Characterisation of the materials illustrated the formation of well-dispersed NiCo alloys on the FSP-alumina, with the resulting strong bimetallic interactions fuelling enhanced catalytic performance via suppression of catalyst selectivity of Co towards the Boudouard reaction and Ni towards methane cracking.
机译:镍和钴基催化剂是甲烷干燥重整的非常有希望的候选者,但它们在调节催化剂选择性方面的作用已经被忽视。在这里,我们报告了催化剂选择性对Ni和Co催化剂的性能进行甲烷的干燥重整的显着影响。 Ni和Co在定义催化剂选择性中的作用通过深入的研究进入催化剂朝向Boudouard,甲烷裂化和反向水气移侧反应的趋势。去耦副反应证明CO沉积物通过氧化除去碳物种具有高亲和力,而Ni更加活跃于CH 4分解。由此,通过Ni的高活性与CH4的高活性的组合进行了优异的催化性能,稳定的效果和Co.的碳耐抗性材料所示的表征在FSP-氧化铝上形成了井分散的Nico合金,得到了所得的通过抑制CO朝向Boudouard反应和Ni朝向甲烷裂化的催化剂选择性,强大的双金属相互作用增强了催化性能。

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