Systematic Assessment of Mechanisms, Developments, Innovative Solutions, and Future Perspectives of Microplastics and Ecotoxicity – A Review

Author:

Manikandan S.1,Preethi B.1,Deena S. R.1,Vijayan D. S.2,Subbaiya R.34,Vickram Sundaram1,Karmegam N.5,Kim Woong6,Govarthanan M.6ORCID

Affiliation:

1. Department of Biotechnology Saveetha School of Engineering Saveetha Institute of Medical and Technical Sciences (SIMATS) Thandalam Chennai Tamil Nadu 602 105 India

2. Department of Biological Sciences School of Mathematics and Natural Sciences The Copperbelt University Riverside, Jambo Drive Kitwe 21692 Zambia

3. Oliver R. Tambo Africa Research Chair Initiative (ORTARChI) Environment and Development The Copperbelt University Kitwe 21692 Zambia

4. Department of Civil Engineering Aarupadai Veedu Institute of Technology Vinayaka Missions Research Foundation (VMRF ‐ DU) Paiyanur Chennai Tamil Nadu 603 104 India

5. PG and Research Department of Botany Government Arts College (Autonomous) Salem Tamil Nadu 636 007 India

6. Department of Environmental Engineering Kyungpook National University 80 Daehak‐ro, Buk‐gu Daegu 41566 South Korea

Abstract

AbstractAs plastics become more ubiquitous, their impact on the environment and on human health cannot be overlooked. Once generated, micro‐ and nano‐plastics end‐up in the environment, causing widespread health and environmental risks. This is a significant environmental problem given the minuscule sizes of microplastics, and therefore warrants further investigation. This study presents a comprehensive review of the ecotoxicology of microplastics and methods for their degradation and decomposition besides discussing the fate and transport processes, recent progress, emerging strategies, challenges and potential future directions. The authors carefully evaluate the processes through which microplastics cause harm, from molecular interactions in species, to ecological impacts, and end with advances in microplastic biodegradation. Different kinds of microplastics found in the environment include polyethylene, polystyrene, polypropylene, polyvinyl chloride, polycarbonate, polyurethane, polypropylene, and polyethylene terephthalate. Analysis of microbial and enzymatic decomposition provides several swelling mitigation strategies designed to reduce environmental threats. In‐depth investigations of microplastic ecotoxicity and biodegradation are being facilitated by interdisciplinary proposals in the areas of nanotechnology, new analytical methods, and synthetic biology. The extensive study helps understand microplastics comprehensively which in‐turn ensures informed actions to mitigate the challenge of the environmental impact of microplastics for sustainable future.

Publisher

Wiley

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