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Solid phase microextraction as a tool to predict internal concentrations of soil contaminants in terrestrial organisms after exposure to a laboratory standard soil

机译:固相微萃取作为预测实验室标准土壤暴露后陆生生物中土壤污染物内部浓度的工具

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摘要

Uptake and accumulation of three chlorobenzenes was studied in both biota (Enchytraeus crypticus) and 30 μm polydimethylsiloxane (PDMS) solid phase microextraction (SPME) fibers after exposure to spiked OECD soil. The OECD soil was spiked with three different concentrations of all contaminants. Uptake of all three chlorobenzenes in E. crypticus was fast and steady state levels were reached within 2-4 days. Also in the PDMS-SPME fibers uptake was very fast for all three compounds, with steady state levels reached after 1 day. Comparison of steady state levels in biota and in the PDMS-SPME fibers showed a relationship which was consistent over the range of concentrations of chlorobenzenes in soil and the difference in log K_(ow). This shows that measuring the concentrations of hydrophobic chemicals in a hydrophobic phase such as PDMS can be used as a simple tool to estimate internal concentrations of these chemicals in biota exposed to complex matrices such as soil.
机译:暴露在加标的OECD土壤中后,在菌群(Enchytraeus crypticus)和30μm聚二甲基硅氧烷(PDMS)固相微萃取(SPME)纤维中研究了三种氯苯的吸收和积累。经合组织的土壤中掺入了三种不同浓度的所有污染物。隐孢子虫中所有三个氯苯的吸收很快,并且在2-4天内达到稳态水平。同样在PDMS-SPME中,所有三种化合物的纤维吸收非常快,在一天后达到稳态水平。生物区系和PDMS-SPME纤维中稳态水平的比较显示出一种关系,该关系在土壤中氯苯浓度范围和log K_(ow)的差异范围内是一致的。这表明测量疏水相(例如PDMS)中的疏水化学物质浓度可以用作估算暴露于复杂基质(例如土壤)的生物群中这些化学物质内部浓度的简单工具。

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