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Assessment Of Soil Quality Using Bioaccessibility-based Models And A Biomarker Index

机译:使用基于生物可及性的模型和生物标志物指数评估土壤质量

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Bioavailability in heterogeneous media such as soils is a multi-factorial concept which ranges from soil chemistry to toxicity. The complexity of this factor has been tackled by various studies pinpointing its relevancy for laboratory to field extrapolation of toxicity data. As contaminant bioavailability on these sites is virtually unknown, a global assessment of this issue has been conducted on soils impacted by antitank firing from a Canadian Range and Training Area (RTA) and contaminated by energetic materials (EM) and metals. Yet, the descriptive results acquired from this survey require further in-depth analysis so as to enhance understanding of soil health status. Statistical models as well as an index integrating biomarker responses were derived from this database and are proposed as diagnostic, explanatory and possibly predictive tools for soil bioavailability and quality assessment. Relationships associating bioaccessible contaminant levels to soil properties allowed to clarify contaminant behaviour in energetic material (EM)-contaminated soils. Likewise, models expressing biomarker responses as a function of bioaccessible contaminant concentrations contributed to identify the contaminants causing toxicity in earthworms and to the comprehension of those toxic effects. The index of biomarker response was adapted from similar concepts applied in the aquatic environment and is an original contribution to terrestrial sites. The biomarker index data were in agreement with soil contamination profiles and represent therefore an interesting tool for soil quality appraisal. Such tools also offer a promising potential for the management of contaminated soils.
机译:在土壤等异质介质中的生物利用度是一个多因素概念,其范围从土壤化学到毒性。各种研究已经解决了该因素的复杂性,指出了该因素与实验室到野外推断毒性数据的相关性。由于这些地点的污染物生物利用度实际上是未知的,因此已对受加拿大靶场和训练区(RTA)的反坦克射击影响并被高能材料(EM)和金属污染的土壤进行了全球评估。然而,从本次调查中获得的描述性结果需要进一步深入分析,以加深对土壤健康状况的了解。统计模型以及整合生物标志物响应的指数均从该数据库中获得,并被建议作为土壤生物利用度和质量评估的诊断,解释和可能的预测工具。将可生物利用的污染物水平与土壤特性相关联的关系可以阐明受高能材料(EM)污染的土壤中的污染物行为。同样,将生物标志物响应表示为可生物接触的污染物浓度的函数的模型有助于识别导致causing中毒性的污染物,并有助于理解这些毒性作用。生物标志物反应指数是根据在水生环境中应用的类似概念改编而成,是对陆地站点的原始贡献。生物标志物指数数据与土壤污染状况相吻合,因此代表了土壤质量评估的有趣工具。此类工具还为污染土壤的管理提供了广阔的前景。

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