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Linking biosensor responses to Cd, Cu and Zn partitioning in soils

机译:将生物传感器对土壤中Cd,Cu和Zn分配的响应联系起来

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Soils bind heavy metals according to fundamental physico-chemical parameters. Bioassays, using bacterial biosensors, were performed in pore waters extracted from 19 contrasting soils individually amended with Cd, Cu and Zn concentrations related to the EU Sewage Sludge Directive. The biosensors were responsive to pore waters extracted from Zn amended soils but less so to those of Cu and showed no toxicity to pore water Cd at these environmentally relevant amended concentrations. Across the range of soils, the solid-solution heavy metal partitioning coefficient (K-d) decreased (p < 0.01) with increasing amendments of Cu and Zn; Cu exhibited the highest Kd values. Gompertz functions of Cu and Zn, Kd values against luminescence explained the relationship between heavy metals and biosensors. Consequently, biosensors provide a link between biologically defined hazard assessments of metals and standard soil-metal physico-chemical parameters for determining critical metal loadings in soils. (c) 2005 Elsevier Ltd. All rights reserved.
机译:土壤根据基本的理化参数结合重金属。使用细菌生物传感器对从19种对比土壤中提取的孔隙水进行生物测定,这些土壤分别用与欧盟污水污泥指令相关的Cd,Cu和Zn浓度进行了修正。该生物传感器对从Zn改良土壤中提取的孔隙水有反应,但对Cu的反应较弱,并且在这些与环境有关的修正浓度下对孔隙水Cd无毒性。在整个土壤范围内,固溶态重金属分配系数(K-d)随Cu和Zn的增加而降低(p <0.01)。铜表现出最高的Kd值。 Cu和Zn,Kd值对发光的Gompertz函数解释了重金属与生物传感器之间的关系。因此,生物传感器为确定土壤中的关键金属含量提供了金属生物学定义的危害评估与标准土壤金属物理化学参数之间的联系。 (c)2005 Elsevier Ltd.保留所有权利。

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