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Enhanced carbon tolerance of Ir alloyed Ni-Based metal for methane partial oxidation

机译:铱合金镍基金属用于甲烷部分氧化的碳耐受性增强

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摘要

Carbon plugging of active catalytic sites significantly degrades the performance of the hydrocarbon reformers. In this study, we show that small amount of Ir alloyed to Ni/CeO2 nanoparticle exhibit promising improvements to the carbon tolerance properties. XRD analysis indicates that the synthesized nanoparticles are comprised of independent NiO and CeO2 particulates and that the added Ir atoms tend to stay on the surface consistent with the theoretical calculation results of the proposed Ir-Ni alloy. The Ir rich samples show higher methane cracking rate and better carbon removal characteristics. Also, the CO selectivity result shows that adding Ir can prolong the lifetime of the Ni active sites despite a slight drop in the initial partial oxidization reforming rate. Our findings highlight the enhancement effects of Ir on the Ni-based metal carbon tolerance properties and bring us one step closer to finding a solution for the carbon plugging problem.
机译:活性催化位点的碳堵塞显着降低了烃重整器的性能。在这项研究中,我们表明与Ni / CeO2纳米颗粒合金化的少量Ir表现出对碳耐受性的改善。 XRD分析表明,合成的纳米粒子由独立的NiO和CeO2颗粒组成,并且所添加的Ir原子倾向于停留在表面上,与所提出的Ir-Ni合金的理论计算结果一致。富含Ir的样品显示出更高的甲烷裂解速率和更好的除碳特性。另外,CO的选择性结果表明,尽管初始部分氧化重整速率略有下降,但是添加Ir可以延长Ni活性位的寿命。我们的发现凸显了Ir对Ni基金属碳耐受性的增强作用,使我们离寻找解决碳堵塞问题的方法更近了一步。

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