Electrochemical degradation of nanoplastics in water: Analysis of the role of reactive oxygen species

被引:36
|
作者
Kiendrebeogo, Marthe [1 ]
Estahbanati, M. R. Karimi [1 ]
Ouarda, Yassine [1 ]
Drogui, Patrick [1 ]
Tyagi, R. D. [2 ,3 ]
机构
[1] Inst Natl Rech Sci INRS, Ctr Environm ETE, 490 Rue Courone, Quebec City, PQ G1K 9A9, Canada
[2] Huzhou Univ, Huzhou, Peoples R China
[3] BOSK Bioprod, Quebec City, PQ, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Nanoplastic; Polystyrene; Water treatment; Electromddation; H2O2; electrogeneration; Degradation; POLYCYCLIC AROMATIC-HYDROCARBONS; ADVANCED OXIDATION PROCESS; PILOT-PLANT-SCALE; 3-DIMENSIONAL EXCITATION; HYDROGEN-PEROXIDE; ELECTRO-FENTON; MEMBRANE BIOREACTOR; PEROXODISULFATE ION; ORGANIC POLLUTANTS; HYDROXYL RADICALS;
D O I
10.1016/j.scitotenv.2021.151897
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Microplastics and nanoplastics (NPs) are emerging water contaminants which have recently gained lots of attention because of their effects on the aquatic systems and human life. Most of the previous works on the treatment of plastic pollution in water have been focused on microplastics and a very limited study has been performed on the NPs treatmenL In this work, the role of main reactive oxygen species (ROSs) in the electrooxidation (EO) and electro-peroxidation(EO-H2O2) of NPs in water is investigated. In-situ generation of hydroxyl radicals ((OH)-O-center dot), persulfates (S2O82-), and hydrogen peroxide (H2O2) were performed using boron-doped diamond (BDD) as the anode, whereas titanium (in EO process) and carbon felt (CF, in EO-H2O2 process) were used as cathode. In the EO process, NPs were mainly oxidized by two types of ROSs on the BDD surface (i) (OH)-O-center dot from water discharge and (ii) SO4 center dot- via S2O82- reaction with (OH)-O-center dot. In EO-H2O2 process, NPs were additionally degraded by (OH)-O-center dot formed from H2O2 decomposition as well as SO4 center dot- generated from direct or indirect reactions with H2O2. Analysis of the degradation of NPs showed that EO-H2O2 process was around 2.6 times more effective than EO process. The optimum amount of NPs degradation efficiency of 86.8% was obtained using EO-H2O2 process at the current density of 36 mA.Cm-2, 0.03 M Na2SO4, pH of 2, and 40 min reaction time. In addition, 3D EEM fluorescence analysis confinned the degradation of NPs. Finally, the economic analysis showed the treatment of NPs using EO-H(2)O(2 )process had an operating cost of 2.3 $US.m(-3), which was around 10 times less than the EO process. This study demonstrated that the in-situ generation of ROSs can significantly enhance the degradation of NPs in water.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Role of reactive oxygen species in myelodysplastic syndromes
    Jing, Qiangan
    Zhou, Chaoting
    Zhang, Junyu
    Zhang, Ping
    Wu, Yunyi
    Zhou, Junyu
    Tong, Xiangmin
    Li, Yanchun
    Du, Jing
    Wang, Ying
    CELLULAR & MOLECULAR BIOLOGY LETTERS, 2024, 29 (01)
  • [42] A survey of reactive oxygen species and their role in dermatology
    Maccarrone, M
    Catani, MV
    Iraci, S
    Melino, G
    Agro, AF
    JOURNAL OF THE EUROPEAN ACADEMY OF DERMATOLOGY AND VENEREOLOGY, 1997, 8 (03) : 185 - 202
  • [43] Degradation of lyophilized lipid/DNA complexes during storage: The role of lipid and reactive oxygen species
    Molina, Marion D. C.
    Anchordoquy, Thomas J.
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2008, 1778 (10): : 2119 - 2126
  • [44] Manganese neurotoxicity and the role of reactive oxygen species
    Martinez-Finley, Ebany J.
    Gavin, Claire E.
    Aschner, Michael
    Gunter, Thomas E.
    FREE RADICAL BIOLOGY AND MEDICINE, 2013, 62 : 65 - 75
  • [45] Role of reactive oxygen species in the renal fibrosis
    NIE Jing and HOU Fanfan Division of NephrologyNanfang HospitalSouthern Medical UniversityResearch Institute of Nephrology of Guangdong ProvinceKey Laboratory for Organ Failure ResearchMinistry of EducationGuangzhouGuangdong China
    中华医学杂志(英文版), 2012, (14) : 2598 - 2602
  • [46] The multifaceted role of reactive oxygen species in tumorigenesis
    Kirtonia, Anuradha
    Sethi, Gautam
    Garg, Manoj
    CELLULAR AND MOLECULAR LIFE SCIENCES, 2020, 77 (22) : 4459 - 4483
  • [47] The Role of Reactive Oxygen Species in Microvascular Remodeling
    Staiculescu, Marius C.
    Foote, Christopher
    Meininger, Gerald A.
    Martinez-Lemus, Luis A.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2014, 15 (12): : 23792 - 23835
  • [48] Role of reactive oxygen species in the renal fibrosis
    Nie Jing
    Hou Fan-fan
    CHINESE MEDICAL JOURNAL, 2012, 125 (14) : 2598 - 2602
  • [49] Role of Reactive Oxygen Species in Inflammation: A Minireview
    Chelombitko M.A.
    Moscow University Biological Sciences Bulletin, 2018, 73 (4) : 199 - 202
  • [50] Role of reactive oxygen species in male infertility
    Sharma, RK
    Agarwal, A
    UROLOGY, 1996, 48 (06) : 835 - 850