Insights into the Electronic Structure Effect of SnMnOx Nanorod Catalysts for Low-Temperature Catalytic Combustion of o-Dichlorobenzene

被引:2
|
作者
Wang, Jie [1 ,2 ]
Dong, Fang [2 ]
Tang, Zhicheng [2 ]
Niu, Lei [1 ]
Zhao, Xia [1 ]
机构
[1] Lanzhou Univ Technol, Sch Petr & Chem, Lanzhou 730050, Peoples R China
[2] Chinese Acad Sci, Lanzhou Inst Chem Phys, Natl Engn Res Ctr Fine Petrochem Intermediates, State Key Lab Oxo Synth & Select Oxidat, R China, Lanzhou 730000, Peoples R China
基金
中国国家自然科学基金;
关键词
CVOCs; Catalytic combustion; Chlorine resistance; SnMnOx; Redox ability; SUPERIOR PERFORMANCE; ORGANIC-COMPOUNDS; TOTAL OXIDATION; OXIDES; REDUCTION; NH3-SCR; 1,2-DICHLOROBENZENE; IMPROVEMENT; METALS; PAHS;
D O I
10.1002/asia.202300413
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
For the catalytic combustion reaction of chlorinated volatile organic compounds (CVOCs), the redox properties and acid sites of the catalyst surface are key factors in determining the activity, selectivity, and chlorine-resistance stability. Herein, a series of SnMnOx catalysts for the catalytic combustion of CVOCs were prepared by the changing of Sn-doping way to regulate the electron valance state of Mn element, including reflux (R-SnMnOx), co-precipitation (C-SnMnOx) and impregnation (I-SnMnOx). It was discovered that the R-SnMnOx catalyst had better activity and chlorine resistance than the R-MnOx, C-SnMnOx and I-SnMnOx catalyst, and we discovered that the doping ways of Sn in MnOx catalyst could regulate greatly the surface acidity, active oxygen species, the chemical state of Mnn+ species, and redox ability. Especially, the R-SnMnOx catalysts exhibit excellent water resistance, and the reasons were related to the strong interaction of Snn+ and Mnn+, which could promote obviously the dispersion of active Mn species, form a large number of acid sites, provide the abundant lattice oxygen species, and own the excellent redox ability, which accelerate the rate of charge transfer between Snn+ and Mnn+ (Sn4++Mn2+& RARR;Sn2++Mn4+) to produce the abundant active species and accelerate the rapid conversion of benzene and intermediates conversion.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Electronic Structure and Optical Properties of Vertically Aligned ZnO Nanorod Arrays Grown by Low-temperature Hydrothermal Method
    Sun Ying-Lan
    Bian Ji-Ming
    Sun Jing-Chang
    Liang Hong-Wei
    Zou Chong-Wen
    Luo Ying-Min
    JOURNAL OF INORGANIC MATERIALS, 2011, 26 (03) : 332 - 336
  • [32] Bowtie-Shaped NiCo2O4 Catalysts for Low-Temperature Methane Combustion
    Dai, Yiling
    Kumar, Vanama Pavan
    Zhu, Chujie
    Wang, Haiyan
    Smith, Kevin J.
    Wolf, Michael O.
    MacLachlan, Mark J.
    ADVANCED FUNCTIONAL MATERIALS, 2019, 29 (08)
  • [33] Highly efficient catalytic combustion of o-dichlorobenzene over lattice-distorted Ru/OMS-2: The rapidly replenishing effect of surface adsorbed oxygen on lattice oxygen
    Yang, Sai
    Zhao, Haijun
    Dong, Fang
    Tang, Zhicheng
    Zha, Fei
    MOLECULAR CATALYSIS, 2019, 470 : 127 - 137
  • [34] Copper modified manganese oxide with tunnel structure as efficient catalyst for low-temperature catalytic combustion of toluene
    Luo, Mengmeng
    Cheng, Yan
    Peng, Xuzhe
    Pan, Wei
    CHEMICAL ENGINEERING JOURNAL, 2019, 369 : 758 - 765
  • [35] Study on the effect and mechanism of support structure and characteristic on Ag-based catalysts for low-temperature selective catalytic oxidation of ammonia
    Guan, Bin
    Chen, Junyan
    Zhuang, Zhongqi
    Gao, Zhan
    Ma, Zeren
    Hu, Xuehan
    Zhu, Chenyu
    Zhao, Sikai
    Shu, Kaiyou
    Dang, Hongtao
    Huang, Zhen
    FUEL, 2025, 381
  • [36] Low-Temperature O3-Catalytic Oxidation of Methane on Cobalt-Containing Zeolite Catalysts
    Bokarev, D. A.
    Paramoshin, I. V.
    Kanaev, S. A.
    Baeva, G. N.
    Rassolov, A. V.
    Stakheev, A. Yu.
    KINETICS AND CATALYSIS, 2024, 65 (04) : 417 - 420
  • [37] Preparation and catalytic performance of Co3O4 catalysts for low-temperature CO oxidation
    Yong-Zhao Wang
    Yong-Xiang Zhao
    Chun-Guang Gao
    Dian-Sheng Liu
    Catalysis Letters, 2007, 116 : 136 - 142
  • [38] Preparation and catalytic performance of Co3O4 catalysts for low-temperature CO oxidation
    Wang, Yong-Zhao
    Zhao, Yong-Xiang
    Gao, Chun-Guang
    Liu, Dian-Sheng
    CATALYSIS LETTERS, 2007, 116 (3-4) : 136 - 142
  • [39] Improved low-temperature catalytic oxidation performance of Pt-based catalysts by modulating the electronic and size effects
    Liang, Yanli
    Ding, Xinmei
    Wang, Jianli
    Zhao, Ming
    Dan, Yi
    Jiang, Long
    Chen, Yaoqiang
    NEW JOURNAL OF CHEMISTRY, 2020, 44 (25) : 10500 - 10506
  • [40] Low-Temperature Catalytic Combustion of Chlorobenzene Over CeOx-VOx/TiO2-Graphene Oxide Catalysts
    Shi, Qi
    Ding, Long
    Long, Hong-ming
    Ji, Yi-long
    CATALYSIS LETTERS, 2022, 152 (12) : 3617 - 3631