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Bioavailability of persistent organic pollutants in soils and sediments—a perspective on mechanisms, consequences and assessment

机译:持久性有机污染物在土壤和沉积物中的生物利用度-机理,后果和评估的视角

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It has been observed that as soil—pollutant contact time increases, pollutant bioavailability and extractability decreases. This phenomenon has been termed ‘ageing’. Decreased chemical extractability with increased soil--chemical contact time is evident where both ‘harsh’techniques, e.g. dichloromethane Soxhlet extraction, and ‘non-exhaustive’ techniques, e.g. butanol shake extraction, have been used. It has also been observed that the amount of chemical extracted by these techniques varies considerably over time. Similarly, decreases in bioavailability with increased soil— pollutant contact time have been described in bacterial, earthworm and other organism studies. From these investigations, it has been shown that the fraction of pollutant determined to be bioavailable can vary between organisms. Thus, there is an immediate definition problem, what is bioavailability? Additionally, if bioavailability is to be assessed by a chemical means, which organisms should (or can) be mimicked by the extraction procedure? This review provides a background to the processes inherent to ageing, a discussion of its consequences on bioavailability and ends with some reflections on the appropriateness of chemical extraction techniques to mimic bioavailability.
机译:已经观察到,随着土壤与污染物的接触时间增加,污染物的生物利用度和可萃取性降低。这种现象被称为“衰老”。随着土壤的增加,化学可萃取性降低-在两种“严苛”技术(例如二氯甲烷索氏提取和“非穷举”技术,例如已使用丁醇摇动萃取。还已经观察到,通过这些技术提取的化学物质的量随时间变化很大。同样,细菌,earth和其他生物研究也描述了随着土壤-污染物接触时间的增加生物利用度降低。从这些调查中可以看出,确定为可生物利用的污染物比例在不同生物之间可能会有所不同。因此,存在直接定义问题,什么是生物利用度?此外,如果要通过化学方法评估生物利用度,则应该(或可以)通过提取程序模拟哪些生物?这篇综述提供了老化过程的背景,讨论了其对生物利用度的影响,并以化学提取技术模拟生物利用度的适当性作为最后的思考。

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