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Chemical Poisoning of Ni/MgO Catalyst by Alkali Carbonate Vapor in the Steam Reforming Reaction of DIR-MCFC

机译:DIR-MCFC蒸汽重整反应中碱式碳酸盐蒸气对Ni / MgO催化剂的化学中毒

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Chemical poisoning of Ni/MgO catalyst was induced by hot alkali carbonate vapor in molten carbonate fuel cell (MCFC), and the poisoned (or contaminated) catalyst was characterized by TPR/TPO, FTIR, and XRD analysis. Carbonate electrolytes such as K and Li were transferred to the catalyst during DIR-MCFC operation at 650 ∩. The deposition of alkali species on the catalyst consequently led to physical blocking on catalytic active sites and structural deformation by chemical poisoning. TPR/TPO analysis indicated that K species enhanced the reducibility of NiO thin film over Ni as co-catalyst, and Li species lessened the reducibility of metallic Ni by chemical reaction with MgO. FTIR analysis of the poisoned catalyst did not exhibit the characteristic ヴ1(D3h) peaks (1055 cm -1 , 1085 cm -1 ) for pure crystalline carbonates, instead a new peak (1120 cm -1 ) was observed proportionally with deformed alkali carbonates. From XRD analysis, the oxidation of metallic Ni into NixMg1-xO was confirmed by the peak shift of MgO with shrinking of Ni particles. Conclusively, hot alkali species induced both chemical poisoning and physical deposition on Ni/MgO catalyst in DIR-MCFC at 650∩.
机译:Ni / MgO催化剂的化学中毒是由熔融碳酸盐燃料电池(MCFC)中的热碱金属碳酸盐蒸气引起的,中毒(或受污染)的催化剂通过TPR / TPO,FTIR和XRD分析进行表征。在DIR-MCFC操作中,在650∩下,碳酸盐电解质(例如K和Li)转移到催化剂中。因此,碱类物质在催化剂上的沉积导致了催化活性位点的物理封闭以及化学中毒导致的结构变形。 TPR / TPO分析表明,K物种提高了Ni作为助催化剂的NiO薄膜的还原能力,Li物种降低了与MgO的化学反应对金属Ni的还原能力。中毒催化剂的FTIR分析未显示纯结晶碳酸盐的特征ヴ1(D3h)峰(1055 cm -1,1085 cm -1),而是与变形的碱金属碳酸盐成比例地观察到新的峰(1120 cm -1)。 。通过XRD分析,通过Ni颗粒收缩引起的MgO的峰移动,确认了金属Ni向NixMg1-xO的氧化。结论是,热碱物种在DIR-MCFC中于650°C诱导了Ni / MgO催化剂上的化学中毒和物理沉积。

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