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A bimetallic PdPt catalyst on CeZrO2/H-ZSM-5 dual support with exceptional activity in low temperature methane oxidation

Son, N.T. and Le Manh, T. and Van Hoang, N. and Thi Lanh, P. and Trung, D.D. and Van Hieu, N. (2023) A bimetallic PdPt catalyst on CeZrO2/H-ZSM-5 dual support with exceptional activity in low temperature methane oxidation. Advances in Natural Sciences: Nanoscience and Nanotechnology, 14 (3): 035012. ISSN 20436262

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Abstract

Various techniques were employed to prepare a dual support system of CeZrO2 and H-ZSM-5 (80) including physically mixing, co-precipitation and sonochemical methods, which were followed by the deposition of bimetallic Pd and Pt via wet impregnation to obtain the final catalysts. The catalysts were tested in the total methane oxidation between 200 and 500 °C and the most active is the material derived from sonochemical synthesis. This catalyst achieved a remarkable methane conversion of 84 at a low temperature of 300 °C and high Gas Hourly Space Velocity (GHSV) of 100000 ml g−1 h−1. Characterisation using x-ray diffraction (XRD), Brunauer-Emmett-Teller (BET), scanning electron microscope (SEM), scanning transmission electron microscope (STEM), Energy-dispersive x-ray spectroscopy (EDS), temperature-programmed reduction (TPR) and x-ray absorption fine structure (XAFS) techniques revealed the intimate distribution of catalyst components and facile redox behaviour of both Pd and CeZrO2 components. The catalysts based on sonochemical CeZrO2 was proven to be relatively stable with only 7 methane conversion loss after 50 h continuously on stream at 300 °C compared to the corresponding 14 witnessed with the commercial TiO2-based material. © 2023 Vietnam Academy of Science & Technology

Item Type: Article
Divisions: Faculties > Faculty of Mechanical Engineering
Identification Number: 10.1088/2043-6262/ace713
Uncontrolled Keywords: Binary alloys; Catalysts; Cerium oxide; Energy dispersive spectroscopy; Methane; Oxidation; Palladium; Platinum; Scanning electron microscopy; Sonochemistry; Temperature; Titanium dioxide; Transmission electron microscopy; X ray absorption; Zirconia, Bimetallic Pd-Pt catalysts; Ceria-zirconia; Coprecipitation method; H-ZSM-5; Lows-temperatures; Methane conversions; Methane oxidation; Sonochemical method; Support systems; ]+ catalyst, Zeolites
URI: http://eprints.lqdtu.edu.vn/id/eprint/10895

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