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多环境隔室中的微塑料:研究进展、介质和全球管理情景。

Microplastics in multi-environmental compartments: Research advances, media, and global management scenarios.

机构信息

Analytical Chemistry Laboratory, Chemistry Division, Atomic Energy Center Dhaka, Bangladesh Atomic Energy Commission, Dhaka 1000, Bangladesh.

Department of Applied Chemistry and Chemical Engineering, University of Dhaka, Dhaka, Bangladesh.

出版信息

J Contam Hydrol. 2024 Jul;265:104379. doi: 10.1016/j.jconhyd.2024.104379. Epub 2024 Jun 3.

Abstract

During the past decades, microplastics (MPs) have become an emerging concern due to their persistence and potential environmental threat. MP pollution has become so drastic that it has been found in the human food chain, breast milk, polar regions, and even the Himalayan basin, lake, etc. Inflammation, pulmonary hypertension, vascular occlusions, increased coagulability and blood cell cytotoxicity, disruption of immune function, neurotoxicity, and neurodegenerative diseases can all be brought on by severe microplastic exposure. Although many MPs studies have been performed on single environmental compartments, MPs in multi-environmental compartments have yet to be explored fully. This review aims to summarize the muti-environmental media, detection tools, and global management scenarios of MPs. The study revealed that MPs could significantly alter C flow through the soil-plant system, the structure and metabolic status of the microbial community, soil pH value, biomass of plant shoots and roots, chlorophyll, leaf C and N contents, and root N contents. This review reveals that MPs may negatively affect many C-dependent soil functions. Different methods have been developed to detect the MPs from these various environmental sources, including microscopic observation, density separation, Raman, and FT-IR analysis. Several articles have focused on MPs in individual environmental sources with a developed evaluation technique. This review revealed the extensive impacts of MPs on soil-plant systems, microbial communities, and soil functions, especially on water, suggesting possible disturbances to vital ecological processes. Furthermore, the broad range of detection methods explored emphasizes the significance of reliable analytical techniques in precisely evaluating levels of MP contamination in various environmental media. This paper critically discusses MPs' sources, occurrences, and global management scenarios in all possible environmental media and ecological health impacts. Future research opportunities and required sustainable strategies have also been suggested from Bangladesh and international perspectives based on challenges faced due to MP's pollution.

摘要

在过去几十年中,由于其持久性和潜在的环境威胁,微塑料(MPs)已成为一个新兴关注点。MP 污染已经变得非常严重,以至于在人类食物链、母乳、极地地区,甚至喜马拉雅盆地、湖泊等都发现了它的存在。严重的微塑料暴露会引发炎症、肺动脉高压、血管阻塞、凝血能力增强和血细胞细胞毒性、免疫功能紊乱、神经毒性和神经退行性疾病。尽管已经对单一环境隔室中的许多 MPs 进行了研究,但对多环境隔室中的 MPs 仍未进行充分探索。本综述旨在总结 MPs 在多环境介质中的分布、检测工具和全球管理情景。研究表明,MPs 可显著改变 C 流通过土壤-植物系统的途径、微生物群落的结构和代谢状态、土壤 pH 值、植物地上部和根部生物量、叶绿素、叶片 C 和 N 含量以及根部 N 含量。本综述表明,MPs 可能会对许多依赖 C 的土壤功能产生负面影响。已经开发出多种方法来从这些不同的环境来源中检测 MPs,包括显微镜观察、密度分离、拉曼和 FT-IR 分析。有几篇文章专注于具有发达评估技术的单个环境来源中的 MPs。本综述揭示了 MPs 对土壤-植物系统、微生物群落和土壤功能的广泛影响,尤其是对水的影响,表明可能对重要的生态过程造成干扰。此外,探索的广泛检测方法强调了可靠分析技术在精确评估各种环境介质中 MPs 污染水平方面的重要性。本文从孟加拉国和国际角度,批判性地讨论了 MPs 在所有可能的环境介质中的来源、出现情况和全球管理情景,以及对生态健康的影响。还根据 MP 污染带来的挑战,提出了未来的研究机会和所需的可持续战略。

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