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Highly Active and Stable Lanthanum-doped Core-Shell-structured Ni@SiO2 Catalysts for the Partial Oxidation of Methane to Syngas

机译:高活性和稳定的镧掺杂芯 - 壳结构Ni甲酸催化剂,用于将甲烷部分氧化成合成气

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摘要

The nanostructures of silica-encapsulated NiO nanoparticles (NPs) doped with La, Ce, Ba, Co, Cu, and Fe were prepared and tested as catalysts for the partial oxidation of methane to syngas. Techniques that include TEM, XRD, Brunauer-Emmett-Teller (BET), X-ray photoelectron spectroscopy (XPS), H-2 temperature-programmed reduction (TPR), and O-2 temperature-programmed oxidation (TPO) were employed to characterize the fresh and used catalysts to understand the structure-performance relationship. The La-doped Ni@SiO2 catalyst is superior to those doped with other elements. The effect of the reaction conditions on the catalyst performance over the best catalyst were also studied. The La2O3 species that were distributed uniformly throughout the NiO or Ni cores not only modify the core surfaces, but also enhance the resistance toward surface coking, which results in superior catalyst activity and durability.
机译:制备二氧化硅包封的NiO纳米颗粒(NPS)的纳米结构,并制备掺杂有LA,Ce,Ba,Co,Cu和Fe的催化剂,用于将甲烷部分氧化成合成气。 包括TEM,XRD,BRUNAUER-EMMETT-experer(BET),X射线光电子能谱(XPS),H-2温度编程的减少(TPR)和O-2温度编程氧化(TPO)的技术 表征新鲜和使用的催化剂以了解结构性能关系。 La-掺杂的Ni / SiO 2催化剂优于掺杂有其他元素的催化剂。 还研究了反应条件对最佳催化剂对催化剂性能的影响。 在整个NIO或Ni芯中均匀分布的La2O3物种不仅改变核心表面,而且还增强了对表面焦化的抗性,这导致优异的催化剂活性和耐久性。

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