评估解决微塑料污染的最新技术,并将生物修复作为一种有吸引力的方法。

Ekta Bhatt, Pammi Gauba, Indira P Sarethy
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引用次数: 0

摘要

微塑料是新出现的环境污染物来源,由于其对水生生物和人类的有害影响而日益受到关注。微塑料在环境中的累积量与全球塑料产量成正比;微塑料具有不可降解性、难降解性和持久性,因此迫切需要在全球范围内解决这一问题。最近的报告显示,海洋生物中存在微塑料,当人类摄入海产品时,微塑料直接成为食物链的一部分。这些研究的反响表明,微塑料在各种栖息地的存在规模更大,而这些栖息地尚有待采样。利用细菌、藻类和真菌等各种微生物,单独或以联合体或生物膜形式进行生物修复,可作为一种有效的修复工具。用于集中清除微塑料的转基因微生物和元基因组学研究(提供未培养生物的分类详情)也有望为该领域提供更多的技术目录。本综述全面概述了微塑料的来源、处理微塑料的现有技术,并深入分析了生物修复机制、其组成部分以及各种研究的结果,为解决微塑料污染问题提供了充分的线索,有助于并指导研究人员进一步研究更实用的方法,并在未来为先进的微塑料修复技术创造新的创新战略。
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Assessing Recent Technologies for Addressing Microplastic Pollution and Pushing the Case of Bioremediation as an Attractive Approach.

Microplastics are emerging sources of environmental pollutants that are increasingly of concern because of their harmful impacts on aquatic life and thereby humans. Their accumulation in the environment is in direct proportion to global plastic production; their being nondegradable, recalcitrant and of a persistent nature creates an urgent need to address this issue on a global scale. Recent reports have demonstrated the presence of microplastics in marine life, and directly becoming a part of the food chain when seafood is ingested by humans. The repercussions of these studies point to an even larger scale presence of microplastics across varied habitats, which are yet to be sampled. Bioremediation, using various microorganisms such as bacteria, algae and fungi, alone or as consortia or in biofilm form can be used as an effective remediation tool. Genetically modified microorganisms for focused removal of microplastics and metagenomics studies, providing taxonomic details of uncultured organisms, are also expected to provide an additional catalogue of technologies in this field. This review offers a comprehensive overview of microplastic sources, existing technologies for treating microplastics and an in-depth analysis of bioremediation mechanisms, its components, and the results from various studies which provide sufficient clues as to the directions to be chosen to address microplastics pollution and can facilitate and instruct researchers to further investigate the more practical approaches and create new and innovative strategies for advanced remediation of microplastic in the future.

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