Photocatalytic strategy to mitigate microplastic pollution in aquatic environments: Promising catalysts, efficiencies, mechanisms, and ecological risks

被引:35
作者
He, Jiehong [1 ,2 ]
Han, Lanfang [1 ,2 ]
Wang, Fayuan [3 ]
Ma, Chuanxin [1 ,2 ]
Cai, Yanpeng [1 ,2 ]
Ma, Weiwei [1 ,2 ]
Xu, Elvis Genbo [4 ]
Xing, Baoshan [5 ]
Yang, Zhifeng [1 ,2 ]
机构
[1] Guangdong Univ Technol, Sch Ecol Environm & Resources, Key Lab City Cluster Environm Safety & Green Dev, Minist Educ, Guangzhou 510006, Peoples R China
[2] Southern Marine Sci & Engn Guangdong Lab Guangzho, Guangzhou, Peoples R China
[3] Qingdao Univ Sci & Technol, Coll Environm & Safety Engn, Qingdao, Peoples R China
[4] Univ Southern Denmark, Dept Biol, Odense, Denmark
[5] Univ Massachusetts, Stockbridge Sch Agr, Amherst, MA USA
基金
中国国家自然科学基金;
关键词
Ecological risk; emerging pollutant; microplastics; MPs degradation; photocatalysis; Dan Tsang and Lena Ma; BROMINATED FLAME RETARDANTS; WATER TREATMENT PLANTS; FRESH-WATER; POLYPROPYLENE MICROPLASTICS; POLYSTYRENE NANOPLASTICS; BISPHENOL-A; ZINC-OXIDE; DEGRADATION; TOXICITY; POLYETHYLENE;
D O I
10.1080/10643389.2022.2072658
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As a type of emerging pollutants, microplastics (MPs) are widely detected in aquatic environments and attract increasing ecological concern worldwide. The mitigation strategy of MPs pollution in aquatic environments has thus become a research priority. Photocatalysis has recently received wide attention largely due to its high potential for MPs degradation. However, to gain an in-depth and comprehensive understanding of photocatalysis in MPs mitigation, we reviewed the up-to-date advancements regarding the key parameters for evaluating the photodegradation, promising photocatalysts, and key mechanisms; possible synergistic reactions were also illustrated. Especially, the modification of photocatalyst was analyzed and interpreted for improving the performance including doping metal, decorating functional group, etc. The relationship between the reactive oxygen species generation and the material structure was elucidated. Moreover, the ecological risks induced by photocatalysis were discussed. To take it a step further of today's photocatalysis in MPs degradation, future research should focus on (1) designing realistic photocatalytic materials to improve the efficiency of MPs degradation; (2) detailing the degradation mechanisms and synergistic reactions to better utilize the advantages of photocatalysis; and (3) quantitatively evaluating the ecological risks posed by the degradation intermediates and further developing recycling approaches.
引用
收藏
页码:504 / 526
页数:23
相关论文
共 144 条
[1]   Bio- and oxo-degradable plastics: Insights on facts and challenges [J].
Abdelmoez, Wael ;
Dahab, Islam ;
Ragab, Esraa M. ;
Abdelsalam, Omnia A. ;
Mustafa, Ahmad .
POLYMERS FOR ADVANCED TECHNOLOGIES, 2021, 32 (05) :1981-1996
[2]  
Ali Saba Sadaqat, 2016, Environmental Nanotechnology, Monitoring and Management, V5, P44, DOI 10.1016/j.enmm.2016.01.001
[3]   Efficient photocatalytic mineralization of polymethylmethacrylate and polystyrene nanoplastics by TiO2/β-SiC alveolar foams [J].
Alle, Paul Henri ;
Garcia-Munoz, Patricia ;
Adouby, Kopoin ;
Keller, Nicolas ;
Robert, Didier .
ENVIRONMENTAL CHEMISTRY LETTERS, 2021, 19 (02) :1803-1808
[4]   Determination of the carbonyl index of polyethylene and polypropylene using specified area under band methodology with ATR-FTIR spectroscopy [J].
Almond, Jasmine ;
Sugumaar, Piriya ;
Wenzel, Margot N. ;
Hill, Gavin ;
Wallis, Christopher .
E-POLYMERS, 2020, 20 (01) :369-381
[5]   Abiotic thermo-oxidative degradation of high density polyethylene: Effect of manganese stearate concentration [J].
Antunes, Marcela C. ;
Agnelli, Jose A. M. ;
Babetto, Alex S. ;
Bonse, Baltus C. ;
Bettini, Silvia H. P. .
POLYMER DEGRADATION AND STABILITY, 2017, 143 :95-103
[6]   Mechanisms and the Engineering Approaches for the Degradation of Microplastics [J].
Bacha, Aziz-Ur-Rahim ;
Nabi, Iqra ;
Zhang, Liwu .
ACS ES&T ENGINEERING, 2021, 1 (11) :1481-1501
[7]   Toxicity of leachate from weathering plastics: An exploratory screening study with Nitocra spinipes [J].
Bejgarn, Sofia ;
MacLeod, Matthew ;
Bogdal, Christian ;
Breitholtz, Magnus .
CHEMOSPHERE, 2015, 132 :114-119
[8]   A Maze in Plastic Wastes: Autonomous Motile Photocatalytic Microrobots against Microplastics [J].
Beladi-Mousavi, Seyyed Mohsen ;
Hermanova, Sona ;
Ying, Yulong ;
Plutnar, Jan ;
Pumera, Martin .
ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (21) :25102-25110
[9]   Quantifying ecological risks of aquatic micro- and nanoplastic [J].
Besseling, Ellen ;
Redondo-Hasselerharm, Paula ;
Foekema, Edwin M. ;
Koelmans, Albert A. .
CRITICAL REVIEWS IN ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2019, 49 (01) :32-80
[10]   A Systematic Study on the Degradation Products Generated from Artificially Aged Microplastics [J].
Biale, Greta ;
La Nasa, Jacopo ;
Mattonai, Marco ;
Corti, Andrea ;
Vinciguerra, Virginia ;
Castelvetro, Valter ;
Modugno, Francesca .
POLYMERS, 2021, 13 (12)