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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Investigation of the structure and the redox behavior of gadolinium doped ceria to select a suitable composition for use as catalyst support in the steam reforming of natural gas
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Investigation of the structure and the redox behavior of gadolinium doped ceria to select a suitable composition for use as catalyst support in the steam reforming of natural gas

机译:研究do掺杂二氧化铈的结构和氧化还原行为,以选择合适的组合物用作天然气蒸汽重整的催化剂载体

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摘要

Gadolinium doped cerias with a gadolinium content in the range 0≤xGd≤0.5 were synthesized using a glycine-nitrate combustion process. The resulting materials are weak agglomerates showing low specific surface area, no microporosity and are stable against sintering. While the addition of gadolinium enhances the surface reactivity and thus the dynamic oxygen exchange capacity (OEC), it depresses bulk reduction. As a result, the total oxygen storage capacity (OSC) is much lower compared to pure ceria. For small-scale hydrogen production using the steam-reforming process, these support properties are expected to be beneficial. The materials with an intermediate gadolinium content of xGd≈0.2–0.25 are determined to be especially suitable for use as catalytic support material in this application.
机译:使用硝酸甘氨酸燃烧工艺合成了content含量在0≤xGd≤0.5范围内的掺do二氧化铈。所得材料为弱附聚物,显示出低的比表面积,无微孔性并且对烧结稳定。 the的加入可以提高表面反应性,从而提高动态氧交换能力(OEC),但会抑制体积减小。结果,与纯二氧化铈相比,总储氧量(OSC)更低。对于使用蒸汽重整工艺的小规模氢气生产,这些支持特性有望带来好处。确定中等intermediate含量为xGd≈0.2-0.25的材料特别适合用作此应用中的催化载体材料。

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