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采用 Ecoscore 系统进行环境危害评估,以区分多环芳烃污染土壤。

Environmental hazard assessment by the Ecoscore system to discriminate PAH-polluted soils.

机构信息

IMT Lille Douai, EA 4515 - LGCgE - Laboratoire de Génie Civil et Géoenvironnement, Département Génie Civil & Environnemental, 941 rue Charles-Bourseul, 59508, Douai, France.

Université Lille Nord de France, 1bis rue Georges Lefèvre, 59044, Lille Cedex, France.

出版信息

Environ Sci Pollut Res Int. 2018 Sep;25(27):26747-26756. doi: 10.1007/s11356-017-9906-4. Epub 2017 Aug 12.

DOI:10.1007/s11356-017-9906-4
PMID:28803428
Abstract

A bioassay battery-integrated index was applied to different soils sampled from a former coke factory, with the aim to evaluate the discriminating capacity of the Ecoscore system (ES) to assess the environmental hazard of PAH-polluted soils. Two soils from a former coke factory, polluted with polycyclic aromatic hydrocarbons (PAHs), were evaluated for their ecotoxicity to terrestrial and aquatic organisms and their genotoxicity. These soils have been already presented in a previous paper but data have been reanalyzed for the present article in an endeavor to standardize the ES. One soil was sampled in the untreated site and the second underwent a windrow treatment. While these soils had a similar total concentrations of US-EPA 16PAHs (around 3000 mg kg), different ecoscores were obtained when subjected to a set of solid- and liquid-phase bioassays measuring acute, chronic, and genotoxic effects. The total PAH content of the soil is not a pertinent parameter to assess soil pollution hazards contrary to the ES. ES is a robust method to classify soils according to their toxicity level. Four levels of toxicity have been defined: no (ecoscore = 0), weak (0 < ecoscore ≤33), moderate (33 < ecoscore ≤67), and strong toxicity (67 < ecoscore ≤ 100). The combination of chemical and toxicological data highlights the relationship between three-ring PAHs and acute ecotoxicity. Conversely, chronic effects of water extracts on algal growth could be explained by high molecular weight PAHs, such as five- and six-ring PAHs.

摘要

采用电池集成生物测定指数对取自前焦化厂的不同土壤进行分析,旨在评估 Ecoscore 系统(ES)评估多环芳烃污染土壤环境危害的区分能力。对来自前焦化厂的两种受多环芳烃(PAHs)污染的土壤进行了陆生和水生生物生态毒性及遗传毒性评价。这些土壤在之前的一篇论文中已有所介绍,但为了使 ES 标准化,本文对其数据进行了重新分析。其中一个土壤取自未处理场地,另一个则经历了堆肥处理。虽然这两种土壤的 US-EPA16PAHs 总浓度相似(约 3000mg/kg),但在进行一系列测量急性、慢性和遗传毒性的固液生物测定时,得到了不同的 Ecoscore。土壤中总多环芳烃含量不是评估土壤污染危害的相关参数,与 ES 相反。ES 是一种根据毒性水平对土壤进行分类的可靠方法。已经定义了四个毒性级别:无毒性(Ecoscore=0)、弱毒性(0<Ecoscore≤33)、中度毒性(33<Ecoscore≤67)和强毒性(67<Ecoscore≤100)。化学和毒理学数据的结合突出了三环 PAHs 与急性生态毒性之间的关系。相反,藻类生长水提取物的慢性效应可以用高分子量 PAHs(如五环和六环 PAHs)来解释。

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