Efficient Removal of Sulfamethoxazole in Electro-Oxidation System with Boron-Doped Diamond Anode and Electrolyte NaCl: Degradation Mechanisms

被引:0
作者
Du, Xinghui [1 ]
Xie, Wenxi [1 ]
Long, Xianhu [1 ]
Li, Dazhen [1 ]
Huang, Weixiong [2 ]
Zhang, Igor Ying [3 ]
Huang, Rongfu [1 ]
机构
[1] Sichuan Univ, Sichuan Prov Key Lab Univ Environm Sci & Engn, Coll Architecture & Environm, MOE Key Lab Deep Earth Sci & Engn, Chengdu 610065, Peoples R China
[2] China Univ Geosci, Sch Environm Studies, MOE Key Lab Groundwater Qual & Hlth, Wuhan 430078, Peoples R China
[3] Fudan Univ, Collaborat Innovat Ctr Chem Energy Mat, Dept Chem, Shanghai Key Lab Mol Catalysis & Innovat Mat,MOE L, Shanghai 200433, Peoples R China
来源
MOLECULES | 2025年 / 30卷 / 05期
关键词
electro-oxidation; boron-doped diamond anode; oxidation mechanism; sulfamethoxazole; ELECTROCHEMICALLY ACTIVATED PERSULFATE; ADVANCED OXIDATION PROCESSES; PULSE-RADIOLYSIS; BDD ANODE; ANTIBIOTICS; OPTIMIZATION; FUNCTIONALS; ADSORPTION; RADICALS; CHLORINE;
D O I
10.3390/molecules30051056
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In recent years, the pollutant sulfamethoxazole (SMX) that is widely used in medical therapy has been frequently detected in different water systems. Thereby, it is necessary to develop green and effective advanced oxidation strategies, especially the electro-oxidation process. In this study, an electro-oxidation system featuring a boron-doped diamond (BDD) anode and NaCl as the supporting electrolyte was implemented to effectively remove sulfamethoxazole (SMX) without the addition of external oxidants. The operational parameters were optimized using the response surface methodology with a pH 7.5, current density of 4.44 mA/cm2, and NaCl concentration of 20 mmol/L. The optimization significantly enhanced the degradation efficiency of SMX to obtain 100% removal in 5 min. Results of scavenging and chemical probe experiments indicated the presence of hydroxyl radicals (center dot OH) and chlorine radicals (Cl center dot), with the latter primarily forming between the reaction of Cl- and center dot OH. A competition experiment further revealed the relative oxidative contribution of Cl center dot of 38.6%, highlighting its significant role in the degradation process. Additionally, ion chromatography analysis confirmed the presence of Cl center dot without the formation of harmful by-products such as ClO4-, affirming the environmentally friendly nature of the system. The toxicity of the degradation by-products was also assessed. The application of current was investigated to explore the influence of coexistence ions as well as repeatability. Overall, this work highlighted the effectiveness of the electro-oxidation system for the degradation of organic pollutants in saline wastewater, demonstrating the significance of optimization of operational parameters for efficient and sustainable environmental remediation.
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页数:16
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共 59 条
  • [21] Insight into chloride effect on the UV/peroxymonosulfate process
    Guan, Ying-Hong
    Ma, Jun
    Liu, Deng-Ke
    Ou, Zhao-Fan
    Zhang, Weiqiu
    Gong, Xing-Long
    Fu, Qiang
    Crittenden, John C.
    [J]. CHEMICAL ENGINEERING JOURNAL, 2018, 352 : 477 - 489
  • [22] Promoted elimination of antibiotic sulfamethoxazole in water using sodium percarbonate activated by ozone: Mechanism, degradation pathway and toxicity assessment
    Guo, He
    Li, Dongsheng
    Li, Zhen
    Lin, Siying
    Wang, Yawen
    Pan, Shijia
    Han, Jiangang
    [J]. SEPARATION AND PURIFICATION TECHNOLOGY, 2021, 266
  • [23] Photo-assisted electrochemical degradation of sulfamethoxazole using a Ti/Ru0.3Ti0.7O2 anode: Mechanistic and kinetic features of the process
    Hussain, Sajjad
    Steter, Juliana R.
    Gul, Saima
    Motheo, Artur J.
    [J]. JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2017, 201 : 153 - 162
  • [24] Continuous ozonation of urban wastewater: Removal of antibiotics, antibiotic-resistant Escherichia coli and antibiotic resistance genes and phytotoxicity
    Iakovides, I. C.
    Michael-Kordatou, I.
    Moreira, N. F. F.
    Ribeiro, A. R.
    Fernandes, T.
    Pereira, M. F. R.
    Nunes, O. C.
    Manaia, C. M.
    Silva, A. M. T.
    Fatta-Kassinos, D.
    [J]. WATER RESEARCH, 2019, 159 : 333 - 347
  • [25] Statistical optimization of electrochemical oxidation of ethylene glycol using response surface methodology
    Jardak, Karama
    Dirany, Ahmad
    Drogui, Patrick
    El Khakani, My Ali
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2017, 105 : 12 - 20
  • [26] Biodegradation and metabolic pathway of sulfamethoxazole by Pseudomonas psychrophila HA-4, a newly isolated cold-adapted sulfamethoxazole-degrading bacterium
    Jiang, Benchao
    Li, Ang
    Cui, Di
    Cai, Rui
    Ma, Fang
    Wang, Yingning
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2014, 98 (10) : 4671 - 4681
  • [27] PULSE-RADIOLYSIS STUDY OF CONCENTRATED SULFURIC-ACID-SOLUTIONS - FORMATION MECHANISM, YIELD AND REACTIVITY OF SULFATE RADICALS
    JIANG, PY
    KATSUMURA, Y
    NAGAISHI, R
    DOMAE, M
    ISHIKAWA, K
    ISHIGURE, K
    YOSHIDA, Y
    [J]. JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS, 1992, 88 (12): : 1653 - 1658
  • [28] Roles of endogenous ascorbate and glutathione in the cellular reduction and cytotoxicity of sulfamethoxazole-nitroso
    Lavergne, Sidonie N.
    Kurian, Joseph R.
    Bajad, Sunil U.
    Maki, Jennifer E.
    Yoder, Andrea R.
    Guzinski, Margaret V.
    Graziano, Frank M.
    Trepanier, Lauren A.
    [J]. TOXICOLOGY, 2006, 222 (1-2) : 25 - 36
  • [29] Occurrence, spatial distribution and ecological risks of antibiotics in soil in urban agglomeration
    Li, Min
    Yang, Lei
    Yen, Haw
    Zhao, Fangkai
    Wang, Xinmiao
    Zhou, Tianhui
    Feng, Qingyu
    Chen, Liding
    [J]. JOURNAL OF ENVIRONMENTAL SCIENCES, 2023, 125 : 678 - 690
  • [30] Electrochemical mineralization of sulfamethoxazole by Ti/SnO2-Sb/Ce-PbO2 anode: Kinetics, reaction pathways, and energy cost evolution
    Lin, Hui
    Niu, Junfeng
    Xu, Jiale
    Li, Yang
    Pan, Yuhang
    [J]. ELECTROCHIMICA ACTA, 2013, 97 : 167 - 174