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HERO ID
9320455
Reference Type
Journal Article
Title
Physisorption and Chemisorption Mechanisms Influencing Micro (Nano) Plastics-Organic Chemical Contaminants Interactions: A Review
Author(s)
Agboola, OD; Benson, NU
Year
2021
Journal
Frontiers in Environmental Science
EISSN:
2296-665X
Volume
9
DOI
10.3389/fenvs.2021.678574
Web of Science Id
WOS:000660082900001
URL
https://www.frontiersin.org/articles/10.3389/fenvs.2021.678574/full
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Abstract
Microplastics, which serve as sources and vector transport of organic contaminants in both terrestrial and marine environments, are emerging micropollutants of increasing concerns due to their potential harmful impacts on the environment, biota and human health. Microplastic particles have a higher affinity for hydrophobic organic contaminants due to their high surface area-to-volume ratio, particularly in aqueous conditions. However, recent findings have shown that the concentrations of organic contaminants adsorbed on microplastic surfaces, as well as their fate through vector distribution and ecological risks, are largely influenced by prevailing environmental factors and physicochemical properties in the aquatic environment. Therefore, this review article draws on scientific literature to discuss inherent polymers typically used in plastics and their affinity for different organic contaminants, as well as the compositions, environmental factors, and polymeric properties that influence their variability in sorption capacities. Some of the specific points discussed are (a) an appraisal of microplastic types, composition and their fate and vector transport in the environment; (b) a critical assessment of sorption mechanisms and major polymeric factors influencing organic contaminants-micro (nano) plastics (MNPs) interactions; (c) an evaluation of the sorption capacities of organic chemical contaminants to MNPs in terms of polymeric sorption characteristics including hydrophobicity, Van der Waals forces, pi-pi bond, electrostatic, and hydrogen bond interactions; and (d) an overview of the sorption mechanisms and dynamics behind microplastics-organic contaminants interactions using kinetic and isothermal models. Furthermore, insights into future areas of research gaps have been highlighted.
Keywords
microplastics (MPs); nanoplastics (NPs); persistent organic pollutants (POPs); plastic additives; sorption-desorption isotherms; kinetic sorption model; emerging micropollutants
Tags
IRIS
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PCBs
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Litsearches
Litsearch: Aug 2020 - Aug 2021
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