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长期聚乙烯(生物)在垃圾填埋场中的降解:综合分析的环境和人类健康影响。

Long-Term Polyethylene (Bio)Degradation in Landfill: Environmental and Human Health Implications from Comprehensive Analysis.

机构信息

Division of Environmental Toxicology, Faculty of Health Sciences with Institute of Maritime and Tropical Medicine, Medical University of Gdansk, Dębowa 23 A, 80-204 Gdansk, Poland.

出版信息

Molecules. 2024 May 25;29(11):2499. doi: 10.3390/molecules29112499.

Abstract

This study investigates the process of long-term (bio)degradation of polyethylene (PE) in an old municipal waste landfill (MWL) and its implications for environmental and human health. Advanced techniques, such as ICP-ES/MS and IC-LC, were used to analyze heavy metals and anions/cations, demonstrating significant concentration deviations from control samples. The soil's chemical composition revealed numerous hazardous organic compounds, further indicating the migration of additives from PE to the soil. Toxicological assessments, including Phytotoxkit F, Microtox bioassay, and Ostracodtoxkit, demonstrated phytotoxicity, acute toxicity, and high mortality in living organisms (over 85% for ). An unusual concentration of contaminants in the MWL's middle layers, linked to Poland's economic changes during the 1980s and 1990s, suggests increased risks of pollutant migration, posing additional environmental and health threats. Moreover, the infiltration capability of microorganisms, including pathogens, into PE structures raises concerns about potential groundwater contamination through the landfill bottom. This research underscores the need for vigilant management and updated strategies to protect the environment and public health, particularly in older landfill sites.

摘要

本研究调查了在旧城市垃圾填埋场(MWL)中聚乙烯(PE)的长期(生物)降解过程及其对环境和人类健康的影响。本研究采用电感耦合等离子体质谱/质谱仪(ICP-ES/MS)和离子色谱-液相色谱联用仪(IC-LC)等先进技术,分析重金属和阴阳离子,结果表明与对照样品相比,浓度有显著偏差。土壤的化学成分揭示了许多有害的有机化合物,进一步表明添加剂从 PE 向土壤迁移。毒理学评估,包括 Phytotoxkit F、Microtox 生物测定和Ostracodtoxkit,表明在生物体内存在植物毒性、急性毒性和高死亡率(超过 85%)。MWL 中层异常集中的污染物与 20 世纪 80 年代和 90 年代波兰经济变化有关,这表明污染物迁移的风险增加,对环境和健康构成了额外的威胁。此外,微生物(包括病原体)渗透到 PE 结构中的能力引起了对通过垃圾填埋场底部潜在地下水污染的关注。这项研究强调了需要进行警惕的管理和更新策略,以保护环境和公共健康,特别是在旧的垃圾填埋场。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4be7/11173707/8205b53bbd06/molecules-29-02499-g001.jpg

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