Microplastics in Freshwater and Drinking Water: Sources, Impacts, Detection, and Removal Strategies

被引:0
作者
Saidur Rahman Chowdhury
Shaikh Abdur Razzak
Ikrema Hassan
S. M. Zakir Hossain
Mohammad Mozahar Hossain
机构
[1] Prince Mohammad Bin Fahd University,Department of Civil Engineering, College of Engineering
[2] King Fahd University of Petroleum & Minerals,Department of Chemical Engineering
[3] King Fahd University of Petroleum & Minerals,Interdisciplinary Research Center for Refining and Advanced Chemicals
[4] University of New Brunswick,Department of Engineering
[5] University of Bahrain,Department of Chemical Engineering, College of Engineering
来源
Water, Air, & Soil Pollution | 2023年 / 234卷
关键词
Microplastic removal; Drinking water; Treatment; Regulation; Adsorption; Filtration;
D O I
暂无
中图分类号
学科分类号
摘要
The discovery of microplastics in freshwater and drinking water sources has raised concerns about the effectiveness of drinking water treatment facilities in protecting the public from exposure to these potentially harmful particles. Microplastics present in drinking water pose a risk to human health, and there is currently a lack of scientific knowledge about their existence and removal in drinking water treatment plants (DWTPs). It is crucial to understand the fate of microplastics in DWTPs as they act as a barrier preventing them from accessing drinking water. The manuscript focuses on the increasing concern of microplastics in freshwater environments, their sources, occurrence, and potential impacts on human health and aquatic ecosystems. The article discusses various techniques used for the detection, characterization, and quantification of microplastics in water. The text also covers the potential negative impacts of microplastics on the environment and human health, and the processes that drinking water treatment plants can use to eliminate microplastics from water. It emphasizes the importance of considering various parameters while implementing treatment strategies and highlights the effectiveness of ozone and UV treatments in speeding up the removal of microplastics. The paper also mentions the use of machine learning techniques for identifying and quantifying the environmental risks of microplastics and aiding in the development of new removal techniques. The article concludes by highlighting the need for regulations for the disposal and usage of microplastics and the importance of developing effective waste management strategies to reduce plastic consumption.
引用
收藏
相关论文
共 444 条
[1]  
Ahmed MB(2021)Microplastic particles in the aquatic environment: A systematic review Science of The Total Environment 775 145793-231
[2]  
Rahman MS(2019)Microplastics in the environment: A critical review of current understanding and identification of future research needs Environmental Pollution 254 113011-1605
[3]  
Alom J(2017)Microplastic contamination in Lake Winnipeg, Canada Environmental Pollution 225 223-10385
[4]  
Hasan MS(2011)Microplastics in the marine environment Marine Pollution Bulletin 62 1596-584
[5]  
Johir MAH(2016)Plastic debris in 29 Great Lakes tributaries: Relations to watershed attributes and hydrology Environmental Science & Technology 50 10377-548
[6]  
Mondal MIH(2018)Occurrence of microplastics in commercial fish from a natural estuarine environment Marine Pollution Bulletin 128 575-90
[7]  
Akdogan Z(2017)Fate of nano- and microplastic in freshwater systems: A modeling study Environmental Pollution 220 540-395
[8]  
Guven B(2022)The estuarine plastics budget: A conceptual model and meta-analysis of microplastic abundance in estuarine systems Estuarine, Coastal and Shelf Science 275 107963-106
[9]  
Anderson PJ(2020)A detailed review study on potential effects of microplastics and additives of concern on human health International Journal of Environmental Research and Public Health 17 1212-7074
[10]  
Warrack S(2017)Lipase from Candida antarctica (CALB) and cutinase from Humicola insolens act synergistically for PET hydrolysis to terephthalic acid Process Biochemistry 59 84-13733