Leaching of organic matters and formation of disinfection by-product as a result of presence of microplastics in natural freshwaters

氯仿 化学 溶解有机碳 环境化学 浸出(土壤学) 微塑料 吸附 有机质 次氯酸钠 废水 土壤水分 环境工程 有机化学 环境科学 土壤科学
作者
Kok Yuen Koh,Zhihao Chen,Shihan Lin,Kishan Chandra Mohan,Xiaohong Luo,J. Paul Chen
出处
期刊:Chemosphere [Elsevier BV]
卷期号:299: 134300-134300 被引量:17
标识
DOI:10.1016/j.chemosphere.2022.134300
摘要

Microplastics (MPs) are ubiquitous in the environment that may cause negative impacts on the aquatic organisms and human health. They exist in water and wastewater, which are from several sources, such as inappropriate disposal and littering. Therefore, it is important to evaluate the characteristics of MPs in different water types and oxidation processes and study dissolved organic carbon (DOC) leaching and chloroform formation. A commonly existing plastic matter, polyethylene (PE) was placed in different waters and gone through the Fenton-like reaction and the chlorination. The result showed that the PE leached nearly a similar amount of DOC (<1 mg L-1), which was regardless of the water types and under low-dosed irradiation/dark environment. The leached DOC caused the chloroform formation after the chlorination in the waters. During the Fenton-like reaction with the PE, a higher amount of leached DOC (∼3 mg L-1) was detected compared with that in the chlorination (∼0.8 mg L-1). The degree of DOC leaching from the PE caused by the oxidation processes was reflected by the degree of surface structural damage on the PE. However, the chlorination resulted in a higher chloroform formation from the PE (∼20 μg L-1) as the Fenton-like reaction degraded the chloroform. The higher the sodium hypochlorite concentration, the higher the chloroform concentration. When the chloroform existed in the water with the PE, adsorption of chloroform onto the PE was initially observed; however the rate of volatilization would be higher than the rate of adsorption eventually. This study offers useful information for the risk assessment of MPs in our fresh water and drinking water and possible mitigation strategies.
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