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Speciation of zinc in contaminated soils

机译:污染土壤中锌的形态

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The chemical speciation of zinc in soil solutions is critical to the understanding of its bioavailability and potential toxic effects. We studred the speciation of Zn in soil solution extracts from 66 contaminated soils representative of a wide range of field conditions in both North America and Europe. Within this dataset, we evaluated the links among the dissolved concentrations of zinc and the speciation of Zn~(2+), soil solution pil total soil Zn, dissolved organic matter (DOM), soil organic matter (SOM) and the concentrations of different inorganic anions. The solid-liquid partitioning coefficient (K_d) for Zn ranged from 17 to 13,100 L kg~(-1) soil. The fraction of dissolved Zn bound to DOM varied from 60% to 98% and the soil solution free Zn~(2+) varied from 40% to 60% of the labile Zn. Multiple regression equations to predict free Zn~(2+), dissolved Zn and the solid-liquid partitioning of Zn are given for potential use in environmental fate modeling and risk assessment. The multiple regressions also highlight some of the most important soil properties controlling the solubility and chemical speciation of zinc in contaminated soils.
机译:土壤溶液中锌的化学形态对于理解其生物利用度和潜在的毒性作用至关重要。我们研究了北美和欧洲66种受污染土壤中土壤溶液提取物中锌的形态,这代表了广泛的田间条件。在该数据集中,我们评估了锌的溶解浓度与Zn〜(2+)的形态,土壤溶液中总土壤Zn,溶解性有机质(DOM),土壤有机质(SOM)和不同浓度之间的联系。无机阴离子。 Zn的固液分配系数(K_d)为17〜13,100 L kg〜(-1)。与DOM结合的溶解锌的比例在不稳定锌的60%至98%之间,不含土壤溶液的Zn〜(2+)在40%至60%之间变化。给出了预测自由锌〜(2+),溶解锌和锌固液分配的多元回归方程,可用于环境命运建模和风险评估。多元回归还凸显了一些最重要的土壤性质,这些性质控制着锌在污染土壤中的溶解度和化学形态。

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