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Diffusive gradients in thin films (DGT) for the prediction of bioavailability of heavy metals in contaminated soils to earthworm (Eisenia foetida) and oral bioavailable concentrations

机译:薄膜中的扩散梯度(DGT)用于预测污染土壤对to(Eisenia foetida)的生物利用度和口服生物利用度浓度

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摘要

The applicability of diffusive gradients in thin-films (DGT) as a biomimic surrogate was investigated to determine the bioavailable heavy metal concentrations to earthworm (Eiseniafoetida). The relationships between the amount of DGT and earthworm uptake; DGT uptake and the bioavailable concentrations of heavy metals in soils were evaluated. The one-compartment model for the dynamic uptake of heavy metals in the soil fitted well to both the earthworm (R~2 = 0.641-0.990) and DGT (R~2 = 0.473-0.998) uptake data. DGT uptake was linearly correlated with the total heavy metal concentrations in the soil (aqua regia), the bioavailable heavy metal concentrations estimated by fractions Ⅰ + Ⅱ of the standard measurements and testing (SM&T) and physiologically based extraction test (PBET, stomach + intestine). The coefficients of determination (R~2) of DGT uptake vs. aqua regia were 0.433, 0.929 and 0.723; vs. SM&T fractions (Ⅰ + Ⅱ) were 0.901, 0.882 and 0.713 and vs. PBET (stomach + intestine) were 0.913, 0.850 and 0.649 for Pb, Zn and Cu, respectively. These results imply that DGT can be used as a biomimic surrogate for the earthworm uptake of heavy metals in contaminated soils as well as predict bioavailable concentrations of heavy metals estimated by SM&T (Ⅰ + Ⅱ) and PBET as a human oral bioavailable concentrations of heavy metals.
机译:研究了扩散梯度在薄膜(DGT)中作为仿生替代物的适用性,以确定determine(Eiseniafoetida)的可生物利用的重金属浓度。 DGT量与worm摄取量之间的关系;评估了土壤中DGT的吸收和重金属的生物利用度。一室模型动态吸收土壤中的重金属与well(R〜2 = 0.641-0.990)和DGT(R〜2 = 0.473-0.998)吸收数据都很好。 DGT摄入量与土壤(王水)中的总重金属浓度,通过标准测量和测试(SM&T)的Ⅰ+Ⅱ部分以及基于生理的提取试验(PBET,胃和肠)估计的生物利用重金属浓度呈线性相关)。 DGT摄入量与王水的测定系数(R〜2)为0.433、0.929和0.723;铅,锌和铜的vs. SM&T分数(Ⅰ+Ⅱ)分别为0.901、0.882和0.713,而vs. PBET(胃+肠)的分数分别为0.913、0.850和0.649。这些结果表明,DGT可以作为worm在污染土壤中摄取重金属的仿生替代物,并可以通过SM&T(Ⅰ+Ⅱ)和PBET估算的重金属的生物利用度作为人类口服重金属的生物利用度。

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