Total and preferential CO oxidation on low-loaded Pt-HZSM-5 zeolites modified using laser electrodispersion

被引:0
作者
M. I. Shilina
I. N. Krotova
S. V. Maksimov
K. I. Maslakov
S. A. Nikolaev
O. V. Udalova
S. A. Gurevich
D. A. Yavsin
T. N. Rostovshchikova
机构
[1] Lomonosov Moscow State University,Department of Chemistry
[2] Russian Academy of Sciences,N. N. Semenov Federal Research Center of Chemical Physics
[3] Russian Academy of Sciences,A. F. Ioffe Physical Technical Institute
来源
Russian Chemical Bulletin | 2023年 / 72卷
关键词
zeolites; platinum; nanoparticles; laser electrodispersion; catalysis; oxidation; carbon monoxide; preferential carbon monoxide oxidation in the presence of hydrogen; hydrogen; purification;
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摘要
Platinum particles of 1.7 nm size were deposited on the external surface of HZSM-5 zeolites with Si/Al = 15, 28, and 40 using laser electrodispersion (LED) method. The obtained materials with low Pt loading (0.01–0.05 wt.%) were studied by transmission electron microscopy and X-ray photoelectron spectroscopy and tested in the catalytic oxidation of CO in the absence and in the presence of hydrogen The Pt/HZSM-5 catalyst modified by chemical impregnation was used as the reference sample. The best performance was found for the catalyst prepared by deposition of 0.05 wt.% Pt on the zeolite with the intermediate Si/Al ratio of 28. The CO conversion over this catalyst in the presence of hydrogen at 130 °C was 100%. The enhanced activity and selectivity of zeolites modified with Pt using LED are caused by the high degree of dispersion of particles, the pattern of particle distribution on the support surface, and the simultaneous presence of metallic and oxidized platinum on the surface.
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页码:1518 / 1532
页数:14
相关论文
共 300 条
  • [1] Freund H-J(2011)undefined Angew. Chem., Int. Ed. 50 10064-undefined
  • [2] Meijer G(2009)undefined Chem. Phys. Lett. 469 1-undefined
  • [3] Scheffler M(2016)undefined Chin. J. Catal. 37 1805-undefined
  • [4] Schlögl R(2019)undefined J. Catal. 377 662-undefined
  • [5] Wolf M(2019)undefined J. Catal. 379 138-undefined
  • [6] McClure S M(2021)undefined Chem. Eng. J. 404 126560-undefined
  • [7] Goodman D W(2016)undefined Catal. Today 267 145-undefined
  • [8] Lin J(2018)undefined Catal. Today 307 102-undefined
  • [9] Wang X(2020)undefined Appl. Surf. Sci. 528 146964-undefined
  • [10] Zhang T(2009)undefined Catal. Today 139 280-undefined