首页> 外文期刊>International journal of hydrogen energy >Bismuth effect on the Co-Mn/Ce_(0.85)Zr_(0.15)O_2 nanoparticulate for CO preferential oxidation in simulated syngas
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Bismuth effect on the Co-Mn/Ce_(0.85)Zr_(0.15)O_2 nanoparticulate for CO preferential oxidation in simulated syngas

机译:铋对模拟合成气中CO优先氧化的Co-Mn / Ce_(0.85)Zr_(0.15)O_2纳米颗粒的影响

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摘要

The novel and efficient bismuth modified supported Co-Mn catalysts were prepared and employed to catalyze the preferential oxidation of CO (CO PROX) in simulated syngas. The effects of introducing-methods and loadings of bismuth on both catalytic performance and catalyst nature were investigated. The N_2 adsorption/desorption measurement, X-ray diffraction (XRD) and H_2-temperature programmed reduction (H_2-TPR), and O_2-TPD (O_2-temperature programmed desorption) characterization techniques were performed to reveal the relationship between the catalytic properties and the nature of the catalysts. Results demonstrate that the as-prepared Bi modified supported Co-Mn catalyst exhibits excellent catalytic performance, depending on the introducing method and loadings of Bi. The enhancement of Bi addition into supported Co-Mn catalyst in the catalytic performance for CO PROX reaction is mainly ascribed to the dramatically improved reducibility of the Bi modified sample. Moreover, the decrease in hydrogen transformation over the Bi modified samples can be observed, suggesting the introduction of Bi can compress the catalytic activity for hydrogen oxidation. This study definitely demonstrates the existence of synergistic effect between the added bismuth and Co-Mn/Ce_(0.85)Zr_(0.15)O_2 in the Bi modified supported Co-Mn catalyst for CO PROX reaction. The developed Co_3O_4-MnO_x/Ce_(0.85)Zr_(0.15)O_2-Bi_2O_3 catalyst with bismuth content of 4.2 wt.% presents the outstanding catalytic activity, selectivity, and durability for CO PROX reaction in the simulated syngas, and it can be considered as a promising candidate for highly efficient CO elimination from H_2-rich stream.
机译:制备了新型高效的铋改性负载型Co-Mn催化剂,并用于催化模拟合成气中CO的优先氧化(CO PROX)。研究了铋的引入方法和负载量对催化性能和催化剂性质的影响。进行了N_2吸附/脱附测量,X射线衍射(XRD)和H_2-温度程序还原(H_2-TPR)以及O_2-TPD(O_2-温度程序解吸)表征技术,以揭示催化性能与催化剂的性质。结果表明,根据Bi的引入方法和负载量,所制备的Bi改性的负载型Co-Mn催化剂表现出优异的催化性能。负载型Co-Mn催化剂中Bi的添加对CO PROX反应催化性能的提高主要归因于Bi改性样品的还原性大大提高。此外,可以观察到在Bi改性样品上氢转化的减少,这表明Bi的引入可以压缩氢氧化的催化活性。这项研究明确地证明了在Bi改性负载型Co-Mn催化剂中,添加的铋与Co-Mn / Ce_(0.85)Zr_(0.15)O_2之间存在协同作用。铋含量为4.2 wt。%的已开发Co_3O_4-MnO_x / Ce_(0.85)Zr_(0.15)O_2-Bi_2O_3催化剂在模拟合成气中具有出色的催化活性,选择性和对CO PROX反应的持久性,可以认为是作为从富H_2物流中高效去除CO的有希望的候选者。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第4期|1873-1882|共10页
  • 作者单位

    State Key Laboratory of Fine Chemicals, Department of Catalysis Chemistry and Engineering, School of Chemical Engineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China ,Key Laboratory of Oil & Gas Fine Chemicals, Ministry of Education & Xinjiang Uyghur Autonomous Region, Xinjiang University, Urumqi,Xinjiang 830046, China;

    State Key Laboratory of Fine Chemicals, Department of Catalysis Chemistry and Engineering, School of Chemical Engineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China;

    State Key Laboratory of Fine Chemicals, Department of Catalysis Chemistry and Engineering, School of Chemical Engineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China;

    State Key Laboratory of Fine Chemicals, Department of Catalysis Chemistry and Engineering, School of Chemical Engineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China;

    State Key Laboratory of Fine Chemicals, Department of Catalysis Chemistry and Engineering, School of Chemical Engineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China;

    Key Laboratory of Oil & Gas Fine Chemicals, Ministry of Education & Xinjiang Uyghur Autonomous Region, Xinjiang University, Urumqi,Xinjiang 830046, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bismuth modification; supported Co-Mn catalyst on ceria-zirconia; CO preferential oxidation; H_2O and CO_2 tolerance; hydrogen;

    机译:铋改性;二氧化铈-氧化锆负载Co-Mn催化剂;CO优先氧化;H_2O和CO_2耐受性;氢;

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