Application of novel inorganic materials in photocatalysis and electrocatalysis

Research progress of application of molybdenum-based catalytic materials for water pollution control

  • YANG Bo ,
  • LIANG Zhiyan ,
  • LIU Wenyuan ,
  • CAO Jiazhen ,
  • LIU Xinyue ,
  • XING Mingyang
Expand
  • School of Chemical and Molecular Engineering,Institute of Fine Chemicals,East China University of Science and Technology,Shanghai 200237,China

Received date: 2023-02-28

  Online published: 2023-08-25

Abstract

The production and lifestyle of human society have resulted in severe water pollution,with organic pollutants,bacteria,and heavy metal ions causing significant harm to the ecological environment and human health,which has become one of the most pressing issues to be addressed by humanity.In recent years,molybdenum-based catalysts have garnered widespread attention in the field of water pollution control due to their unique electronic properties and morphological characteristics.The application progress of different molybdenum-based catalytic materials in the field of water pollution control was reviewed.The research progress of different molybdenum-based catalysts for the removal of organic pollutants from water,disinfection and removal of heavy metal ions by means of photocatalytic,Fenton-like and adsorption techniques was summarized.The challenges associated with the current molybdenum-based materials in water pollution control technology were also discussed.Additionally,the modification methods to improve the adsorption and catalytic performance of molybdenum-based catalysts were also discussed,which provided a feasible research direction for the design of highly efficient and stable molybdenum-based catalysts in the future.

Cite this article

YANG Bo , LIANG Zhiyan , LIU Wenyuan , CAO Jiazhen , LIU Xinyue , XING Mingyang . Research progress of application of molybdenum-based catalytic materials for water pollution control[J]. Inorganic Chemicals Industry, 2023 , 55(8) : 1 -12 . DOI: 10.19964/j.issn.1006-4990.2023-0100

References

1 WANG Qing, YANG Zhiming.Industrial water pollution,water environment treatment,and health risks in China[J].Environmental Pollution2016218:358-365.
2 WANG Chongchen, LI Jianrong, LV Xiuliang,et al.Photocatalytic organic pollutants degradation in metal?organic frameworks[J].Energy & Environmental Science20147(9):2831-2867.
3 JIAO Yue, WAN Caichao, BAO Wenhui,et al.Facile hydrothermal synthesis of Fe3O4@cellulose aerogel nanocomposite and its application in Fenton?like degradation of Rhodamine B[J].Carbohydrate Polymers2018189:371-378.
4 王祥学,李星,王佳琦,等.氮化碳基纳米复合材料在重金属去除方面研究进展[J].无机材料学报202035(3):260-270.
  WANG Xiangxue, LI Xing, WANG Jiaqi,et al.Recent advances in carbon nitride?based nanomaterials for the removal of heavy metal ions from aqueous solution[J].Journal of Inorganic Materials202035(3):260-270.
5 YAGUB M T, SEN T K, AFROZE S,et al.Dye and its removal from aqueous solution by adsorption:A review[J].Advances in Colloid and Interface Science2014209:172-184.
6 REN Wenjing, GAO Junkuo, LEI Chao,et al.Recyclable metal?organic framework/cellulose aerogels for activating peroxymonosulfate to degrade organic pollutants[J].Chemical Engineering Journal2018349:766-774.
7 MEYER J, ULBRICHT M.Poly(ethylene oxide)?block?poly(methyl methacrylate) diblock copolymers as functional additive for poly(vinylidene fluoride) ultrafiltration membranes with tailored separation performance[J].Journal of Membrane Science2018545:301-311.
8 GUO Hao, DAI Ruobin, XIE Ming,et al.Tweak in puzzle:Tailoring membrane chemistry and structure toward targeted removal of organic micropollutants for water reuse[J].Environmental Science & Technology Letters20229(4):247-257.
9 CHENG Min, ZENG Guangming, HUANG Danlian,et al.Hydroxyl radicals based advanced oxidation processes(AOPs) for remediation of soils contaminated with organic compounds:A review[J].Chemical Engineering Journal2016284:582-598.
10 BARB W G, BAXENDALE J H, GEORGE P,et al.Reactions of ferrous and ferric ions with hydrogen peroxide.Part I.—The ferrous ion reaction[J].Transactions of the Faraday Society195147:462-500.
11 WALLING C.Fenton′s reagent revisited[J].Accounts of Chemical Research19758(4):125-131.
12 王鹏毅,程月,甘嘉铭,等.羟胺/EDTA协同强化芬顿反应的机理与动力学[J].环境工程学报202216(10):3204-3212.
  WANG Pengyi, CHENG Yue, GAN Jiaming,et al.Enhanced Fenton process by a synergistic effect of EDTA and hydroxylamine:Mechanism and kinetics[J].Chinese Journal of Environmental Engineering202216(10):3204-3212.
13 LIU Xinyue, YAN Xinyi, LIU Wenyuan,et al.Switching of radical and nonradical pathways through the surface defects of Fe3O4/MoO x S y in a Fenton?like reaction[J].Science Bulletin202368(6):603-612.
14 CHEN Liwei, MA Jun, LI Xuchun,et al.Strong enhancement on Fenton oxidation by addition of hydroxylamine to accelerate the ferric and ferrous iron cycles[J].Environmental Science & Technology201145(9):3925-3930.
15 YAN Qingyun, LIAN Cheng, HUANG Kai,et al.Constructing an acidic microenvironment by MoS2 in heterogeneous Fenton reaction for pollutant control[J].Angewandte Chemie International Edition202160(31):17155-17163.
16 ZHU Lingli, JI Jiahui, LIU Jun,et al.Designing 3D-MoS2 sponge as excellent cocatalysts in advanced oxidation processes for pollutant control[J].Angewandte Chemie2020132(33):14072-14080.
17 XING Mingyang, XU Wenjing, DONG Chencheng,et al.Metal sulfides as excellent co?catalysts for H2O2 decomposition in advanced oxidation processes[J].Chem20184(6):1359-1372.
18 SHENG Bo, YANG Fei, WANG Yihao,et al.Pivotal roles of MoS2 in boosting catalytic degradation of aqueous organic pollutants by Fe(Ⅱ)/PMS[J].Chemical Engineering Journal2019375:121989.
19 SHEN Bin, DONG Chencheng, JI Jiahui,et al.Efficient Fe(Ⅲ)/Fe(Ⅱ) cycling triggered by MoO2 in Fenton reaction for the degradation of dye molecules and the reduction of Cr(VI)[J].Chinese Chemical Letters201930(12):2205-2210.
20 JI Jiahui, ALEISA R M, DUAN Huan,et al.Metallic active sites on MoO2(110) surface to catalyze advanced oxidation processes for efficient pollutant removal[J].iScience202023(2):100861.
21 YI Qiuying, JI Jiahui, SHEN Bin,et al.Singlet oxygen triggered by superoxide radicals in a molybdenum cocatalytic Fenton reaction with enhanced REDOX activity in the environment[J].Environmental Science & Technology201953(16):9725-9733.
22 SHENG Bo, ZHOU Xin, SHI Zhun,et al.Is addition of reductive metals(Mo,W) a panacea for accelerating transition metals-mediated peroxymonosulfate activation?[J].Journal of Hazardous Materials2020386:121877.
23 朱佳新,熊裕华,郭锐.二氧化钛光催化剂改性研究进展[J].无机盐工业202052(3):23-27,54.
  ZHU Jiaxin, XIONG Yuhua, GUO Rui.Research progress in modification of TiO2 photocatalyst[J].Inorganic Chemicals Industry202052(3):23-27,54.
24 吴丽娜,张向军,林清娴. γ-氧化铁/山梨酸/银-二氧化钛的制备及抗菌性能[J].无机盐工业202153(12):156-162.
  WU Lina, ZHANG Xiangjun, LIN Qingxian.Synthesis and antibacterial performance of γ-Fe2O3/sorbic acid/Ag-TiO2 [J].Inorganic Chemicals Industry202153(12):156-162.
25 LI Zizhen, MENG Xiangchao, ZHANG Zisheng.Recent development on MoS2-based photocatalysis:A review[J].Journal of Photochemistry and Photobiology C:Photochemistry Reviews201835:39-55.
26 HE Jiehong, HAN Lanfang, WANG Fayuan,et al.Photocatalytic strategy to mitigate microplastic pollution in aquatic environments:Promising catalysts,efficiencies,mechanisms,and ecological risks[J].Critical Reviews in Environmental Science and Technology202353(4):504-526.
27 RAHMAN A, JENNINGS J R, TAN Ailing,et al.Molybdenum disulfide?based nanomaterials for visible?light?induced photocatalysis[J].ACS Omega20227(26):22089-22110.
28 JI Jiahui, BAO Yan, LIU Xinyue,et al.Molybdenum?based heterogeneous catalysts for the control of environmental pollutants[J].EcoMat20213(6):e12155.
29 NAKATA K, FUJISHIMA A.TiO2 photocatalysis:Design and applications[J].Journal of Photochemistry and Photobiology C:Photochemistry Reviews201213(3):169-189.
30 MENG Xiangchao, LI Zizhen, ZENG Haoming,et al.MoS2 quantum dots?interspersed Bi2WO6 heterostructures for visible light?induced detoxification and disinfection[J].Applied Catalysis B:Environmental2017210:160-172.
31 ZOU Xue, ZHANG Jiaxing, ZHAO Xuesong,et al.MoS2/RGO composites for photocatalytic degradation of ranitidine and elimination of NDMA formation potential under visible light[J].Chemical Engineering Journal2020383:123084.
32 WU Minghong, LI Lin, XUE Yuancheng,et al.Fabrication of ternary GO/g-C3N4/MoS2 flower?like heterojunctions with enhanced photocatalytic activity for water remediation[J].Applied Catalysis B:Environmental2018228:103-112.
33 FENG Bing, WU Zhengying, LIU Jinsong,et al.Combination of ultrafast dye?sensitized?assisted electron transfer process and novel Z-scheme system:AgBr nanoparticles interspersed MoO3 nanobelts for enhancing photocatalytic performance of RhB[J].Applied Catalysis B:Environmental2017206:242-251.
34 OUYANG Chong, QUAN Xinyao, ZHANG Chunlei,et al.Direct Z-scheme ZnIn2S4@MoO3 heterojunction for efficient photodegradation of tetracycline hydrochloride under visible light irradiation[J].Chemical Engineering Journal2021424:130510.
35 LI Yuanzhi, CHEN Changzhao, CHEN Xinxin,et al.MoO3/g-C3N4 heterostructure for degradation of organic pollutants under visible light irradiation:High efficiency,general degradation and Z-scheme degradation mechanism[J].Ceramics International202147(23):33697-33708.
36 MIAO Hui, TENG Zhenyuan, WANG Chengyin,et al.Recent progress in two?dimensional antimicrobial nanomaterials[J].Che? mistry-A European Journal201925(4):929-944.
37 LIU Jun, DONG Chencheng, DENG Yuanxin,et al.Molybdenum sulfide co?catalytic Fenton reaction for rapid and efficient inactivation of Escherichia coli[J].Water Research2018145:312-320.
38 KONG Desheng, WANG Haotian, CHA J J,et al.Synthesis of MoS2 and MoSe2 films with vertically aligned layers[J].Nano Letters201313(3):1341-1347.
39 YANG Xi, LI Jie, LIANG Tao,et al.Antibacterial activity of two?dimensional MoS2 sheets[J].Nanoscale20146(17):10126-10133.
40 YIN Wenyan, YU Jie, LV Fengting,et al.Functionalized nano?MoS2 with peroxidase catalytic and near?infrared photothermal activities for safe and synergetic wound antibacterial applicatio?ns[J].ACS Nano201610(12):11000-11011.
41 SHAFAEI S, LACKNER M, VOLOSHCHUK R,et al.Innovative development in antimicrobial inorganic materials[J].Recent Patents on Materials Science20147(1):26-36.
42 TANASIC D, RATHNER A, KOLLENDER J P,et al.Silver?,calcium?,and copper molybdate compounds:Preparation,antibacterial activity,and mechanisms[J].Biointerphases201712(5):05G607.
43 ANJANEYULU R B, MOHAN B S, NAIDU G P,et al.Wastewater disinfection by insitu hydrothermal synthesis of RGO supported MoO3/Fe2O3 ternary nanocomposite[J].World Journal of Pharmaceutical Research20187(3):1260-1277.
44 GU Yue, YE Mengxiang, WANG Yongchuang,et al.Lignosulfonate functionalized g-C3N4/carbonized wood sponge for highly efficient heavy metal ion scavenging[J].Journal of Materials Chemistry A20208(25):12687-12698.
45 PRATUSH A, KUMAR A, HU Zhong.Adverse effect of heavy metals(As,Pb,Hg,and Cr) on health and their bioremediation strategies:A review[J].International Microbiology201821(3):97-106.
46 AYANGBENRO A, BABALOLA O.A new strategy for heavy metal polluted environments:A review of microbial biosorbents[J].International Journal of Environmental Research and Public Health201714(1):94.
47 CHIRIT? P.Aqueous oxidation of iron monosulfide(FeS) by molecular oxygen[J].Mineral Processing and Extractive Metallurgy Review201637(5):305-310.
48 U?AR D.Sequential precipitation of heavy metals using sulfide?laden bioreactor effluent in a pH controlled system[J].Mineral Processing and Extractive Metallurgy Review201738(3):162-167.
49 AI Kelong, RUAN Changping, SHEN Mengxia,et al.MoS2 nanosheets with widened interlayer spacing for high?efficiency removal of mercury in aquatic systems[J].Advanced Functional Materials201626(30):5542-5549.
50 WANG Zhongying,SIM A, URBAN J J,et al.Removal and recovery of heavy metal ions by two?dimensional MoS2 nanosheets:Performance and mechanisms[J].Environmental Science & Technology201852(17):9741-9748.
51 YIN Ying, HAN Jiecai, ZHANG Yumin,et al.Contributions of phase,sulfur vacancies,and edges to the hydrogen evolution reaction catalytic activity of porous molybdenum disulfide nanosheets[J].Journal of the American Chemical Society2016138(25):7965-7972.
52 WANG Zhongying, ZHANG Yinjia, LIU Muchun,et al.Oxidation suppression during hydrothermal phase reversion allows synthesis of monolayer semiconducting MoS2 in stable aqueous suspension[J].Nanoscale20179(17):5398-5403.
53 SUN Kaige, JIA Feifei, YANG Bingqiao,et al.Synergistic effect in the reduction of Cr(Ⅵ) with Ag-MoS2 as photocatalyst[J].Applied Materials Today202018:100453.
54 ZHANG Yifan, PARK S J.Facile construction of MoO3@ZIF-8 core?shell nanorods for efficient photoreduction of aqueous Cr(Ⅵ)[J].Applied Catalysis B:Environmental2019240:92- 101.
55 PRABAVATHI S L, KUMAR P S, SARAVANAKUMAR K,et al.A novel sulphur decorated 1-D MoO3 nanorods:Facile synthesis and high performance for photocatalytic reduction of hexavalent chromium[J].Journal of Photochemistry and Photobiology A:Chemistry2018356:642-651.
56 HARIKUMAR B, KOKILAVANI S, KHAN S S.Magnetically separable N/S doped Fe3O4 embedded on MoO3 nanorods for photodegradation of cefixime,Cr(Ⅵ) reduction,and its genotoxicity study[J].Chemical Engineering Journal2022446:137273.
Outlines

/