Source Jouranl of CSCD
Source Journal of Chinese Scientific and Technical Papers
Included as T2 Level in the High-Quality Science and Technology Journals in the Field of Environmental Science
Core Journal of RCCSE
Included in the CAS Content Collection
Included in the JST China
Indexed in World Journal Clout Index (WJCI) Report
Volume 43 Issue 10
Oct.  2025
Turn off MathJax
Article Contents
ZHOU Qiang, YUAN Qiaosen, ZHU Pengfei, SHI Weijiang, LI Na, HU Zhaoxia, CHEN Shouwen. Preparation of a novel series of Mn-Cr-Zr catalysts and their catalytic combustion performance for chlorobenzene[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(10): 255-263. doi: 10.13205/j.hjgc.202510028
Citation: ZHOU Qiang, YUAN Qiaosen, ZHU Pengfei, SHI Weijiang, LI Na, HU Zhaoxia, CHEN Shouwen. Preparation of a novel series of Mn-Cr-Zr catalysts and their catalytic combustion performance for chlorobenzene[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(10): 255-263. doi: 10.13205/j.hjgc.202510028

Preparation of a novel series of Mn-Cr-Zr catalysts and their catalytic combustion performance for chlorobenzene

doi: 10.13205/j.hjgc.202510028
  • Received Date: 2024-07-30
  • Accepted Date: 2024-09-26
  • Rev Recd Date: 2024-08-25
  • Available Online: 2025-12-03
  • Publish Date: 2025-10-01
  • Highly harmful chlorinated volatile organic pollutants (CVOCs) are often generated during industrial production and waste incineration processes. The catalyst poisoning in the catalytic combustion treatment process of CVOCs has always been a bottleneck problem. Taking chlorobenzene-based CVOCs as the research object, a novel series of Mn-Cr-Zr catalysts were prepared by wet impregnation using Zr-based metal organic framework (UiO-66) as a carrier. The catalytic combustion performance of chlorobenzene and the catalytic structure-activity relationship of the catalyst were investigated in detail. The structure and morphology of the catalyst were characterized and analyzed by XRD, SEM, N2 adsorption-desorption isotherms, and XPS. The surface acidity and redox performance of the catalyst were evaluated by NH3-TPD and H2-TPR. The prepared catalysts effectively solved the problem of generating multiple chlorine by-products during the catalytic oxidation of CVOCs using Mn-based and Cr-based catalysts. The results showed that the catalytic combustion activity of catalyst 40Mn7Cr3-Zr was the best. When the space velocity was 20000 mL/(g·h) and the concentration of chlorobenzene was 1000 mg/m3, the conversion of chlorobenzene reached 90% at 293 ℃. In the long-term stability test at 300 ℃, chlorobenzene was completely converted to CO2, and there was no CO and polychlorinated by-products detected in the product, indicating its good catalytic performance.
  • loading
  • [1]
    HUANG B,LEI C,WEI C H,et al. Chlorinated volatile organic compounds(Cl-VOCs)in environment-sources,potential human health impacts,and current remediation technologies[J]. Environment International,2014,71:118-138.
    [2]
    ZHAO X,XU D,WANG Y,et al. Electric field assisted benzene oxidation over Pt-Ce-Zr nano-catalysts at low temperature[J]. Journal of Hazardous Materials,2021,407:124349.
    [3]
    DAI C,ZHOU Y,PENG H,et al. Current progress in remediation of chlorinated volatile organic compounds:a review[J]. Journal of Industrial and Engineering Chemistry,2018,62:106-119.
    [4]
    LEE J E,OK Y S,TSANG D C W,et al. Recent advances in volatile organic compounds abatement by catalysis and catalytic hybrid processes:a critical review[J]. Science of the Total Environment,2020,719:137405.
    [5]
    LI Z D,WAN JQ,LIU Y,et al. α-MnO2/β-MnO2 catalysts synthesized by one-pot method and their catalytic performance for the oxidation of toluene[J]. CIESC Journal,2022,73(8):3615-3624. 李治东,万佳琪,刘莹,等. 一步法合成α-MnO2/β-MnO2催化剂及其对甲苯催化氧化的性能研究[J]. 化工学报,2022,73(8):3615-3624.
    [6]
    LIN F,XIANG L,ZHANG Z,et al. Comprehensive review on catalytic degradation of Cl-VOCs under the practical application conditions[J]. Critical Reviews in Environmental Science and Technology,2020,1-45.
    [7]
    WU P,JIN X,QIU Y,et al. Recent progress of thermocatalytic and photo/thermocatalytic oxidation for VOCs purification over manganese-based oxide catalysts[J]. Environmental Science & Technology,2021,55:4268-4286.
    [8]
    YE N,LI Y,YANG Z,et al. Rare earth modified kaolin-based Cr2O3 catalysts for catalytic combustion of chlorobenzene[J]. Applied Catalysis A:General,2019,579:44-51.
    [9]
    SI H,TAO T,YANG B,et al. Preparation of La-M-Co-O/cordierite catalysts and their application in catalytic oxidation of chlorobenzene[J]. China Environmental Science,2020,40(10):4314-4322. 司涵,陶涛,杨波,等. La-M-Co-O/堇青石催化剂的制备及催化氧化氯苯[J]. 中国环境科学,2020,40(10):4314-4322.
    [10]
    WANG Y,WANG G,DENG W,et al. Study on the structure-activity relationship of Fe-Mn oxide catalysts for chlorobenzene catalytic combustion[J]. Chemical Engineering Journal,2020,395:125172.
    [11]
    SUN W,GONG B,PAN J,et al. Catalytic combustion of CVOCs over Cr-Ti oxide catalysts[J]. Journal of Catalysis,2020,391:132-144.
    [12]
    LONG G,CHEN M,LI Y,et al. One-pot synthesis of monolithic Mn-Ce-Zr ternary mixed oxides catalyst for the catalytic combustion of chlorobenzene[J]. Chemical Engineering Journal,2019,360:964-973.
    [13]
    CHAI S,LI S,LI W,et al. Fabrication of high loading V2O5/TiO2 catalysts derived from metal-organic framework with excellent activity for chlorobenzene decomposition[J]. Applied Surface Science,2022,572:151511.
    [14]
    FU J,WU Y N. A showcase of green chemistry:sustainable synthetic approach of zirconium-based MOF materials[J]. Chemistry,2021,27(39):9967-9987.
    [15]
    LIU L,ZHOU B,LIU Y,et al. In-situ regulation of acid sites on Mn-based perovskite@mullite composite for promoting catalytic oxidation of chlorobenzene[J]. J Colloid Interface Sci,2022,606:1866-1873.
    [16]
    HU Z,CHEN J,YAN D,et al. Enhanced catalytic activities of MnOx/Co3O4 nanocomposites prepared via MOFs-templated approach for chlorobenzene oxidation[J]. Applied Surface Science,2021,551:149453.
    [17]
    ZUO S,DING M,TONG J,et al. Study on the preparation and characterization of a titanium-pillared clay-supported CrCe catalyst and its application to the degradation of a low concentration of chlorobenzene[J]. Applied Clay Science,2015,105:118-123.
    [18]
    WU L,HE F,LUO J,et al. Synthesis of three-dimensional ordered mesoporous MnOx/CeO2 bimetal oxides for the catalytic combustion of chlorobenzene[J]. RSC Advances,2017,7(43):26952-26959.
    [19]
    QIU J,PENG Y,TANG M,et al. Catalytic activity,selectivity,and stability of co-precipitation synthesized Mn-Ce mixed oxides for the oxidation of 1,2-dichlorobenzene[J]. Environ Sci Pollut Res Int,2021,28(46):65416-65427.
    [20]
    HU P,LIANG X,YASEEN M,et al. Preparation of highly-hydrophobic novel N-coordinated UiO-66(Zr)with dopamine via fast mechano-chemical method for(CHO-/Cl-)-VOCs competitive adsorption in humid environment[J]. Chemical Engineering Journal,2018,332:608-618.
    [21]
    CHEN G,CAI Y,ZHANG H,et al. Pt and Mo co-decorated MnO2 nanorods with superior resistance to H2O,sintering,and HCl for catalytic oxidation of chlorobenzene[J]. Environ Sci Technol,2021,55(20):14204-14214.
    [22]
    YING Q,LIU Y,LI H,et al. A comparative study of the dichloromethane catalytic combustion over ruthenium-based catalysts:Unveiling the roles of acid types in dissociative adsorption and by-products formation[J]. J Colloid Interface Sci,2022,605:537-546.
    [23]
    ZHANG X,LIU Y,DENG J,et al. Effect of transition metal oxide doping on catalytic activity of titania for the oxidation of 1,2-dichloroethane[J]. Catalysis Today,2021,375:623-634.
    [24]
    LIANG W,ZHU Y,REN S,et al. Catalytic combustion of chlorobenzene at low temperature over Ru-Ce/TiO2:high activity and high selectivity[J]. Applied Catalysis A:General,2021,623:118257.
    [25]
    SOPHIANA I C,TOPANDI A,ISKANDAR F,et al. Catalytic oxidation of benzene at low temperature over novel combination of metal oxide based catalysts:CuO,MnO2,NiO with Ce0.75Zr0.25O2 as support[J]. Materials Today Chemistry,2020,17:100305.
    [26]
    WENG X,MENG Q,LIU J,et al. Catalytic oxidation of chlorinated organics over lanthanide perovskites:effects of phosphoric acid etching and water vapor on chlorine desorption behavior[J]. Environ Sci Technol,2019,53(2):884-893.
    [27]
    XU S,ZHANG K,MA Y,et al. Catalytic oxidation of dichloromethane over CrFeO mixed oxides:improved activity and stability by sulfuric acid treatment[J]. Applied Catalysis A:General,2022,636:118573.
    [28]
    GAO N,ZHOU Y,FAN M,et al. Promoting effect and role of alkaline earth metal added to ZrO2-TiO2-supported CeO2 for dichloromethane oxidation[J]. Chemical Engineering Journal,2020,396:125193.
    [29]
    HUANG Y,FANG S,TIAN M,et al. Chlorine-resistant hollow nanosphere-like VOx/CeO2 catalysts for highly selective and stable destruction of 1,2-dichloroethane:byproduct inhibition and reaction mechanism[J]. Processes,2021,9:119.
    [30]
    HUANG Q,SI H,YU S,et al. Fabrication of MnOx-CeO2/cordierite catalysts doped with FeOx and CuO for preferable catalytic oxidation of chlorobenzene[J]. Environmental Technology,2018,41(13):1664-1676.
    [31]
    WU M,WANG X,DAI Q,et al. Catalytic combustion of chlorobenzene over Mn-Ce/Al2O3 catalyst promoted by Mg[J]. Catalysis Communications,2010,11:1022-1025.
    [32]
    CHEN J,CHEN X,CHEN X,et al. Homogeneous introduction of CeOy into MnOx-based catalyst for oxidation of aromatic VOCs[J]. Applied Catalysis B:Environmental,2018,224:825-835.
    [33]
    WU M,WANG X,DAI Q,et al. Low temperature catalytic combustion of chlorobenzene over Mn-Ce-O/Al2O3 mixed oxides catalyst[J]. Catalysis Today,2010,158:336-342.
    [34]
    XU G D,SI H,HUANG Q,et al. Study on the performance of Cr-Ce-O catalysts doped with transition metal oxides in catalytic oxidation of chlorobenzene[J]. China Environmental Science,2021,41(7):3184-3192. 徐功达,司涵,黄琼,等. 过渡金属氧化物掺杂的Cr-Ce-O催化剂催化氧化氯苯性能研究[J]. 中国环境科学,2021,41(7):3184-3192.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (6) PDF downloads(0) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return