首页> 外文期刊>Catalysis Letters >Preferential Oxidation of CO in H 2-Rich Stream Over Au/CeO 2–NiO Catalysts: Effect of the Preparation Method
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Preferential Oxidation of CO in H 2-Rich Stream Over Au/CeO 2–NiO Catalysts: Effect of the Preparation Method

机译:通过Au / CeO <下标> 2 -RICH流的CO中CO的优先氧化<下标> 2 -NIO催化剂:制备方法的效果

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摘要

AbstractTwo methods, viz., the hydrothermal (HT) and co-precipitation (CP) methods, were used to prepare CeO2–NiO composite oxides; with them as the supports, Au/CeO2–NiO catalysts were prepared by the colloidal deposition method and used in the preferential oxidation (PROX) of CO in H2-rich stream. Various characterization measures such as N2sorption, XRD, TEM, H2-TPR, Raman spectroscopy and XPS were used to clarify the influence of preparation method on the structure of CeO2–NiO support and the performance of Au/CeO2–NiO catalyst. The XPS and TEM results reveal that the CeO2–NiO(HT) support prepared by hydrothermal method displays a uniform rod-like shape and exposes preferentially the (110) and (100) planes of CeO2, whereas the CeO2–NiO(CP) support prepared by co-precipitation method is composed of nanorods and irregular nanoparticles dominated by (111) facets of CeO2. After deposition of gold, both the Au/CeO2–NiO(HT) and Au/CeO2–NiO(CP) catalysts are alike in the state and size distribution of deposited Au nanoparticles. The H2-TPR results indicate that the presence of Au strongly promotes the reduction of CeO2in the Au/CeO2–NiO catalyst. Raman spectra illustrate that the incorporation of Ni ions into CeO2remarkably increases the amount of oxygen vacancies in the CeO2–NiO supports, especially in CeO2–NiO(HT) prepared by hydrothermal method, which is beneficial to the dispersion and stabilization of gold species. The structure of CeO2–NiO support and catalytic activity of Au/CeO2–NiO in CO PROX is strongly related to the preparation method; Au/CeO2–NiO(HT) exhibits much higher activity than Au/CeO2–NiO(CP). The larger fraction of (110) and (100) CeO2facets in CeO2–NiO(HT) can promote the dispersion of gold species, formation of oxygen vacancies and migration of oxygen species, which are effective to enhance the redox capacity and activity of the obtained Au/CeO2–NiO(HT) catalyst for CO PROX in H2-rich stream.Graphical AbstractAu supported on CeO2–NiO nanorods prepared by hydrothermal method exhibits much higher catalytic activity for CO PROX in H2-rich stream.
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机译:<![cdata [ <标题>抽象 ara>两种方法,viz。,水热(HT)和共沉淀(CP)方法用于制备CEO <下标> 2 -NIO复合氧化物;作为支持,通过胶体沉积方法制备Au / CeO <下标> 2 -NiO催化剂,并用于H <下标> 2 的CO的优先氧化(PROx)中溪流。各种表征措施,如N <下标> 2 吸附,XRD,TEM,H <下标> 2 -TPR,拉曼光谱和XPS用于阐明制备方法对CEO结构的影响 2 -nio支持和au / ceo 2 -nio catalyst的性能。 XPS和TEM结果表明,通过水热法制备的首席执行官<下标> 2 -NIO(HT)支持显示均匀的杆状形状,优选地暴露CEO <下标的(110)平面> 2 ,CEO <下标> 2 -NIO(CP)支持由共沉淀法制编制的支持由CEO <下标> 2的(111)小平面为主导的纳米棒和不规则的纳米粒子组成。 /下标>。在沉积金后,AU / CEO <下标> 2 -NIO(HT)和AU / CEO <下标> 2 -NIO(CP)催化剂在状态和大小分布中是相似的沉积Au纳米粒子。 H <下标> 2 -TPR结果表明,AU的存在强烈促进了AU / CEO <下标> 2 -NIO Catalyst中的CEO <下标> 2 的减少。拉曼光谱说明,NI离子进入CEO <下标> 2 ,显着增加了CEO <下标> 2 -NIO支持的氧空位量,特别是在CEO <下标> 2 -NIO(HT),这对金种的分散和稳定性有益。 CEO <下标> 2 -NIO支持和催化活动的AU / CEO <下标> 2 -NIO在CO PROX中与制备方法强烈相关; AU / CEO <下标> 2 -nio(ht)表现出比au / ceo 2 -nio(cp)的更高的活动。 CEO <下标> 2 -NIO(HT)中的(110)和(100)首席执行官<下标> 2 的大部分可以促进金种的分散,氧空缺和迁移的分散氧气种类,可有效增强所获得的Au / Ceo <下标> 2 -NiO(HT)催化剂的氧化还原能力和用于H <下标> 2 -RICH流的CO Prox的催化剂。 <标题>图形摘要 ara> au支持的CEO <下标> 2 -NIO纳米码展示了很多H <下标> 2 -RICH流中CO PROX的催化活性较高。 ara> <图类别=“标准”float =“no”id =“fima”> ]]]>

著录项

  • 来源
    《Catalysis Letters》 |2018年第1期|共13页
  • 作者单位

    The Key Laboratory for Surface Engineering and Remanufacturing in Shaanxi Province School of Chemical Engineering Xi’an University;

    College of Chemistry and Chemical Engineering Xi’an University of Science and Technology;

    The Key Laboratory for Surface Engineering and Remanufacturing in Shaanxi Province School of Chemical Engineering Xi’an University;

    The Key Laboratory for Surface Engineering and Remanufacturing in Shaanxi Province School of Chemical Engineering Xi’an University;

    State Key Laboratory of Coal Conversion Institute of Coal Chemistry Chinese Academy of Sciences;

    State Key Laboratory of Coal Conversion Institute of Coal Chemistry Chinese Academy of Sciences;

    State Key Laboratory of Coal Conversion Institute of Coal Chemistry Chinese Academy of Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 催化;
  • 关键词

    Ceria; Nickel oxide; Gold catalysts; CO oxidation; PROX;

    机译:二氧化铈;氧化镍;金催化剂;共同氧化;PROX;

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