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Synthesis of Sr-modified Pd-Rh Bimetallic Catalyst with Advanced Three-Way Catalytic Performance
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1.College of Materials and Mechatronics, Jiangxi Science and Technology Normal University, Nanchang 330013, China;2.College of Food and Bioengineering, Chengdu University, Chengdu 610064, China;3.College of Mechanical Engineering, Chengdu University, Chengdu 610064, China;4.College of Chemistry Biology and Environment, Yuxi Normal University, Yuxi 653100, China;5.College of Chemistry and Chemical Engineering, Jiangxi Science and Technology Normal University, Nanchang 330013, China

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Key Research and Development Program of Sichuan Science and Technology Department (2019YFS0513); National Natural Science Foundation of China (21962021)

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    Abstract:

    A series of SrO-modified Pd-Rh/Al2O3 catalysts were synthesized by co-impregnation technique, i.e., Sr precursor was introduced into the mixed salt solution of Pd and Rh prior to their impregnation on Al2O3 powders. The results reveal that owing to the diffusion barrier effect of SrO, the introduction of appropriate amount of SrO (1wt%~2wt%) can increase the dispersion of Pd and Rh, as well as improve the hydrothermal stability of the catalyst. After hydrothermal aging treatment, higher dispersion and more active oxidation state of Pd and Rh are maintained. Consequently, modified reduction capability and improved three-way catalytic performance can be obtained for the appropriate SrO-modified Pd-Rh/Al2O3 catalyst. However, when excessive amount of SrO is introduced, plenty of surface sites on Al2O3 support will be occupied, and new SrAl2O4 phase is generated, leading to adverse effect instead. To sum up, the catalyst modified by 2wt% SrO exhibits the best three-way catalytic performance, by which after hydrothermal aging treatment, the light-off temperatures of CO, HC and NO are 23, 15 and 27 °C lower than those by bare Pd-Rh/Al2O3 catalyst.

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[Lan Li, Xiang Junhuai, Huang Long, Huang Xin, Zhou Weiqi, Li Hongmei, Zhu Yi, Chen Shanhu. Synthesis of Sr-modified Pd-Rh Bimetallic Catalyst with Advanced Three-Way Catalytic Performance[J]. Rare Metal Materials and Engineering,2022,51(4):1231~1238.]
DOI:10.12442/j. issn.1002-185X.20210134

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History
  • Received:February 19,2021
  • Revised:March 23,2021
  • Adopted:April 16,2021
  • Online: April 28,2022
  • Published: April 28,2022