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Bioremediation Approach for Plastics and Microplastics Wastes
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Researchers reviewed bioremediation strategies—using microorganisms and biological agents—to degrade plastics and microplastics in contaminated environments. Biological degradation offers a promising, environmentally friendly approach to tackling the massive accumulation of plastic waste that conventional methods cannot adequately address.
At present time the plastic pollution has become the matter of concern due to the omnipresence of plastic products in our surroundings and environment. The growing utilization of microplastics (MPs) and plastics results in the environmental pollution. Nowadays, most...
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Bioremediation Techniques of Microplastic Waste Management
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This review examines bioremediation approaches for microplastic pollution, focusing on microbial and biological systems capable of degrading or removing plastic particles from contaminated environments. Bioremediation represents a scalable, lower-cost complement to physical removal technologies and is critical for addressing the vast volumes of microplastics already dispersed through soils and aquatic systems.
Bioremediation Techniques for Microplastics Removal
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Bioremediation using microorganisms and biological agents offers promising low-cost, environmentally compatible strategies for degrading and removing microplastics from ocean and freshwater systems. Advancing these techniques could reduce the long-term accumulation of microplastics in food webs and limit human dietary exposure.
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Researchers reviewed how microorganisms like bacteria and fungi can break down plastics through biological processes, offering a potentially eco-friendly alternative to landfilling or burning plastic waste. While promising, these bioremediation approaches still face significant challenges in scale and efficiency before they can be widely deployed.
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This review examines the harmful effects of microplastic pollution on terrestrial and marine ecosystems and surveys potential bioremediation strategies — including microbial, phytoremediation, and combined approaches — for mitigating contamination. Given that microplastics persist indefinitely in the environment and accumulate in food webs, identifying effective bioremediation pathways is essential for reducing the chronic dietary and environmental exposure burden on human and animal populations.
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This review examined bioremediation strategies — using microorganisms, algae, and other biological agents — to remove microplastic contamination from urban aquatic environments including drinking water treatment plants. Bioremediation offers a potentially scalable, low-cost pathway to reducing the microplastic load in water systems before plastics reach tap water and human consumers.
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