Adsorption Behavior of Microplastics as a Carrier of Various Contaminants and Their Ecotoxicity in Aquatic Environment

Bogyeong Kim, N. Kim, Eun-Hee Lee
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Abstract

Objectives : Microplastics are released into the aquatic environment through multiple pathways including runoff, atmospheric sedimentation, aquaculture, and fishing and pose a hazard to organisms. Public concerns regarding microplastics are raising as microplastic pollution increases. A lot of studies have been evaluated the behavior of microplastics in the environment, suggesting that microplastics remain a prolonged period in the environment due to their persistence and can interact with other contaminants. Microplastics as carriers of coexisting contaminants may pose a more severe toxicity to organisms than microplastics alone. In this study, we investigated the behavior of microplastics as carriers of environmental contaminants and introduced a potential ecotoxicity of microplastics carrying other contaminants.Methods : The behavior of microplastics as carriers of contaminants were classified as adsorption mechanisms. Research literature regarding ecological risk of microplastics carrying contaminants was reviewed in papers published between October 2003 and August 2023.Results and Discussion : Adsorption of contaminants onto microplastics are mainly involved in hydrophobic interaction, electrostatic interaction, hydrogen bond, and Van der Waals forces. The co-exposure of microplastics with contaminants to organisms can induce oxidative stress and bioaccumulation and reduce the survival and reproduction rates, chlorophyll content, and photosynthetic efficiency. On the other hand, a few studies reported that the co-exposure of microplastics with contaminants can decrease the toxicity to organisms.Conclusion : This paper provides basic information regarding the adsorption interactions of microplastics with diverse contaminants and their ecological effects on organisms. The contents will help to understand a potential function of microplastics as a carrier of coexisting contaminants in aquatic environment and their biological risk.
微塑料作为各种污染物载体的吸附行为及其在水生环境中的生态毒性
目标:微塑料通过径流、大气沉积、水产养殖和捕捞等多种途径释放到水生环境中,对生物造成危害。随着微塑料污染的加剧,公众对微塑料的关注度也在不断提高。许多研究对微塑料在环境中的行为进行了评估,结果表明,由于微塑料具有持久性,它们会在环境中长期存留,并与其他污染物相互作用。与单独的微塑料相比,作为共存污染物载体的微塑料可能会对生物产生更严重的毒性。本研究调查了微塑料作为环境污染物载体的行为,并介绍了微塑料携带其他污染物的潜在生态毒性。方法:微塑料作为污染物载体的行为分为吸附机制。结果与讨论:污染物在微塑料上的吸附主要涉及疏水作用、静电作用、氢键和范德华力。微塑料与污染物共同暴露于生物体内,会诱发氧化应激和生物累积,降低生物的存活率和繁殖率、叶绿素含量和光合效率。结论:本文提供了有关微塑料与各种污染物的吸附相互作用及其对生物生态影响的基本信息。这些内容将有助于了解微塑料在水生环境中作为共存污染物载体的潜在功能及其生物风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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