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首页> 外文期刊>Chemical engineering journal >The cost-effective Cu-based catalysts for the efficient removal of acetylene from ethylene: The effects of Cu valence state, surface structure and surface alloying on the selectivity and activity
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The cost-effective Cu-based catalysts for the efficient removal of acetylene from ethylene: The effects of Cu valence state, surface structure and surface alloying on the selectivity and activity

机译:具有成本效益的Cu基催化剂,用于从乙烯中有效除去乙炔:Cu贵级状态,表面结构和表面合金化对选择性和活性的影响

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摘要

Cost-effective Cu-based catalysts with high activity and selectivity towards C2H4 formation are vital for the efficient removal of C2H2 from C2H4 in industry. A comprehensive understanding about the effects of Cu-based catalyst properties, including the valence state, surface structure and surface alloying, on the selectivity and activity towards C2H4 formation is essential for developing any novel Cu-based catalysts. In this work, C2H2 hydrogenation to C2H4 over various Cu-based catalysts, including Cu(0), Cu(I), Cu(II), and alloyed MCu(M = Ni, Pd, N, Au), were systematically investigated. The results indicated that the activity and selectivity of Cu catalysts with different oxidation states towards C2H4 formation are very different. Cu(I) led to the highest selectivity, while Cu(0) led to the highest activity. Moreover, the catalytic performances of Cu(I) and Cu(0) catalysts are closely related to their surface structures, especially their defective and stable (111) surfaces. For the most stable Cu(0) catalyst in reducing atmosphere, the activity and selectivity towards C2H4 formation on M-doped Cu(111) (M = Ni, Pd, N, Au) surface are affected by the surface d-band center, PdCu(111) surface with d-band center at the middle site has the best activity and selectivity towards C2H4 formation compared to the individual Cu(111) and Pd(111) surfaces. Thus, the activity of Cu-based catalysts and the selectivity of C2H2 hydrogenation towards C2H4 formation are determined by the valence state, surface structure, and surface d-band center of Cu catalysts. The catalytic activity and selectivity of all active surfaces can be predicted by analyzing the catalyst surface characteristics. The results are considerably beneficial to the development of new generation of Cu-based catalysts in the selective hydrogenation of C2H2.
机译:具有高活性和选择性的经济高效的Cu基催化剂对于C2H4形成的选择性对于在工业中的C 2 H 4中有效除去C 2 H 2至关重要。综合了解Cu基催化剂性质的影响,包括价态,表面结构和表面合金化,在C2H4形成的选择性和活性上对于开发任何新的Cu基催化剂是必不可少的。在该作品中,系统地研究了在各种Cu基催化剂上的C2H2氢化至C2H4,包括Cu(0),Cu(I),Cu(II)和合金化MCU(M = Ni,Pd,N,Au)。结果表明,不同氧化态朝向C 2 H 4形成的Cu催化剂的活性和选择性非常不同。 Cu(i)导致最高的选择性,而Cu(0)导致最高的活动。此外,Cu(I)和Cu(0)催化剂的催化性能与其表面结构密切相关,尤其是它们的缺陷且稳定(111)表面。对于在还原气氛中的最稳定的Cu(0)催化剂中,在M掺杂Cu(111)(M = Ni,Pd,N,Au)表面上的C2H4形成的活性和选择性受到表面D波段中心的影响,与单个Cu(111)和Pd(111)表面相比,中间部位的PDCU(111)表面具有最佳的活动和选择性朝着C2H4形成。因此,Cu基催化剂的活性和C 2 H 2氢化朝向C 2 H 4的选择性由Cu催化剂的贵级状态,表面结构和表面D带中心确定。通过分析催化剂表面特性,可以预测所有活性表面的催化活性和选择性。结果对C2H2选择性氢化的新一代Cu基催化剂的发展有利有益。

著录项

  • 来源
    《Chemical engineering journal》 |2018年第2018期|共15页
  • 作者单位

    Taiyuan Univ Technol Key Lab Coal Sci &

    Technol Minist Educ &

    Shanxi Prov Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Key Lab Coal Sci &

    Technol Minist Educ &

    Shanxi Prov Taiyuan 030024 Shanxi Peoples R China;

    Columbia Univ Dept Chem Engn New York NY 10027 USA;

    Taiyuan Univ Technol Key Lab Coal Sci &

    Technol Minist Educ &

    Shanxi Prov Taiyuan 030024 Shanxi Peoples R China;

    Univ Wyoming Dept Chem Laramie WY 82071 USA;

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

    Acetylene; Ethylene; Selectivity; Activity; Cu-based catalyst;

    机译:乙炔;乙烯;选择性;活性;基于Cu的催化剂;

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