Removal of nanoplastics in water treatment processes: A review

Nanoplastics are drawing a significant attention as a result of their propensity to spread across the environment and pose a threat to all organisms. The presence of nanoplastics in water is given attention nowadays as the transit of nanoplastics occurs through the aquatic ecosphere besides terrestr...

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Veröffentlicht in:The Science of the total environment 2022-11, Vol.845, p.157168-157168, Article 157168
Hauptverfasser: Keerthana Devi, M., Karmegam, N., Manikandan, S., Subbaiya, R., Song, Hocheol, Kwon, Eilhann E., Sarkar, Binoy, Bolan, Nanthi, Kim, Woong, Rinklebe, Jörg, Govarthanan, M.
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Sprache:eng
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Zusammenfassung:Nanoplastics are drawing a significant attention as a result of their propensity to spread across the environment and pose a threat to all organisms. The presence of nanoplastics in water is given attention nowadays as the transit of nanoplastics occurs through the aquatic ecosphere besides terrestrial mobility. The principal removal procedures for macro-and micro-plastic particles are effective, but nanoparticles escape from the treatment, increasing in the water and significantly influencing the society. This critical review is aimed to bestow the removal technologies of nanoplastics from aquatic ecosystems, with a focus on the treatment of freshwater, drinking water, and wastewater, as well as the importance of transit and its impact on health concerns. Still, there exists a gap in providing a collective knowledge on the methods available for nanoplastics removal. Hence, this review offered various nanoplastic removal technologies (microorganism-based degradation, membrane separation with a reactor, and photocatalysis) that could be the practical/effective measures along with the traditional procedures (filtration, coagulation, centrifugation, flocculation, and gravity settling). From the analyses of different treatment systems, the effectiveness of nanoplastics removal depends on various factors, source, size, and type of nanoplastics apart from the treatment method adopted. Combined removal methods, filtration with coagulation offer great scope for the removal of nanoplastics from drinking water with >99 % efficiency. The collected data could serve as base-line information for future research and development in water nanoplastics cleanup. [Display omitted] •Nanoplastics (NPs) have adverse impacts on both aquatic and terrestrial ecosystems.•Major aquatic contaminants include nanoplastics made of PET, PVC and PS.•Integrated and combination removal technologies are successful at removing NPs.•Membrane reactors were used to remove 99 % of NPs from the aquatic environment.•Prospective techniques for the removal of NPs in water have been summarized.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2022.157168