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An uptake and elimination kinetics approach to assess the bioavailability of chromium copper and arsenic to earthworms (Eisenia andrei) in contaminated field soils

机译:一种吸收和消除动力学方法用于评估污染的土壤中铬铜和砷对earth(Eisenia andrei)的生物利用度

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摘要

The aim of this study was to determine the bioavailability of metals in field soils contaminated with chromated copper arsenate (CCA) mixtures. The uptake and elimination kinetics of chromium, copper, and arsenic were assessed in the earthworm Eisenia andrei exposed to soils from a gradient of CCA wood preservative contamination near Hartola, Finland. In soils contaminated with 1480–1590 mg Cr/kg dry soil, 642–791 mg Cu/kg dry soil, and 850–2810 mg Ag/kg dry soil, uptake and elimination kinetics patterns were similar for Cr and Cu. Both metals were rapidly taken up and rapidly excreted by Eisenia andrei with equilibrium reached within 1 day. The metalloid As, however, showed very slow uptake and elimination in the earthworms and body concentrations did not reach equilibrium within 21 days. Bioaccumulation factors (BAF) were low for Cu and Cr (< 0.1), but high for As at 0.54–1.8. The potential risk of CCA exposure for the terrestrial ecosystem therefore is mainly due to As.Electronic supplementary materialThe online version of this article (10.1007/s11356-019-04908-6) contains supplementary material, which is available to authorized users.
机译:这项研究的目的是确定被铬酸砷酸铜(CCA)混合物污染的田间土壤中金属的生物利用度。通过暴露于芬兰Hartola附近的CCA木材防腐剂污染梯度,评估了暴露于土壤的E Eisenia andrei中铬,铜和砷的吸收和消除动力学。在被1480-1590 mg / kg干燥土壤,642-791 mg / kg干燥土壤和850-2810 mg / kg干燥土壤污染的土壤中,Cr和Cu的吸收和清除动力学模式相似。两种金属均被Eisenia andrei迅速吸收并迅速排出体外,并在1天内达到平衡。然而,类金属砷在showed中的吸收和清除非常缓慢,并且体内浓度在21天内未达到平衡。铜和铬的生物蓄积因子(BAF)低(<0.1),而砷的生物蓄积因子高(0.54-1.8)。因此,陆上生态系统CCA暴露的潜在风险主要归因于As。电子补充材料本文的在线版本(10.1007 / s11356-019-04908-6)包含补充材料,授权用户可以使用。

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