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首页> 外文期刊>ChemCatChem >Role of Iron on the Structure and Stability of Ni3.2Fe/Al2O3 during Dynamic CO2 Methanation for P2X Applications
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Role of Iron on the Structure and Stability of Ni3.2Fe/Al2O3 during Dynamic CO2 Methanation for P2X Applications

机译:铁对P2X应用动态CO2甲烷化期间Ni3.2Fe / Al2O3结构和稳定性的作用

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摘要

An energy scenario, mainly based on renewables, requires efficient and flexible Power-to-X (P2X) storage technologies, including the methanation of CO2. As active Ni-0 surface sites of monometallic nickel-based catalysts are prone to surface oxidation under hydrogen-deficient conditions, we investigated iron as "protective" dopant. A combined operando X-ray absorption spectroscopy and X-ray diffraction setup with quantitative on-line product analysis was used to unravel the structure of Ni and Fe in an alloyed Ni-Fe/Al2O3 catalyst during dynamically driven methanation of CO2. We observed that Fe protects Ni from oxidation and is itself more dynamic in the oxidation and reduction process. Hence, such "sacrificial" or "protective" dopants added in order to preserve the catalytic activity under dynamic reaction conditions may not only be of high relevance with respect to fine-tuning of catalysts for future industrial P2X applications but certainly also of general interest.
机译:能源场景主要基于可再生能源,需要高效且灵活的功率到X(P2X)存储技术,包括CO2的甲烷化。 由于缺乏缺乏的条件下,单金属镍基催化剂的活性Ni-0表面位点容易发生表面氧化,我们将铁作为“保护性”掺杂剂。 使用定量在线产品分析的组合的Operando X射线吸收光谱和X射线衍射设置用于在CO 2的动态驱动的甲烷化过程中解开合金Ni-Fe / Al2O3催化剂中的Ni和Fe的结构。 我们观察到Fe保护Ni免受氧化,并且在氧化和还原过程中本身更为动态。 因此,添加了这种“牺牲”或“保护性”掺杂剂,以便在动态反应条件下保持催化活性可能不仅具有与未来工业P2X应用的催化剂微调的高相关性,但肯定也是一般兴趣。

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