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A Terrestrial Biotic Ligand Model. 1. Development and application to Cu and Ni toxicities to barley root elongation in soils

机译:陆地生物配体模型。 1.土壤中铜和镍对大麦根伸长的毒性的开发和应用

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A Terrestrial Biotic Ligand Model (TBLM) was developed using noncalcareous soils from Europe based on Cu and Ni speciation and barley (Hordeum vulgare cv. Regina) root elongation bioassays. Free metal ion (M2+) activity was computed by the WHAM VI model using inputs of soil metal, soil organic matter, and alkali and alkaline earth metals concentrations, and pH in soil solution. The TBLM assumes that metal in soil and in the solution are in equilibrium. Metal ions react with the biotic ligand, the receptor site, and inhibit root elongation. Other ions, principally H+, Ca2+ and Mg2+, compete with M2+ and, therefore, affect its toxicity. Toxicity is correlated only to the fraction of the total biotic ligand sites occupied by M2+. Compared to other models using either the soil metal concentration or M2+ activity as the toxic dose, the TBLM provides a more consistent method to normalize and compare Cu and Ni toxicities to root elongation among different soils. The TBLM was able to predict the EC50 soil Cu and Ni concentrations generally within a factor of 2 of the observed values, a level of precision similar to that for the aquatic Biotic Ligand Model, indicating its potential utility in metals risk assessment in soils.
机译:根据欧洲和欧洲的非钙质土壤,基于铜和镍的形态和大麦(Hordeum vulgare cv。Regina)根伸长生物测定法,开发了陆地生物配体模型(TBLM)。 WHAM VI模型使用土壤金属,土壤有机质,碱金属和碱土金属的浓度以及土壤溶液的pH值的输入,计算了游离金属离子(M2 +)的活性。 TBLM假设土壤和溶液中的金属处于平衡状态。金属离子与生物配体,受体位点反应,并抑制根伸长。其他离子(主要是H +,Ca2 +和Mg2 +)会与M2 +竞争,因此会影响其毒性。毒性仅与M2 +占据的总生物配体位点的分数相关。与使用土壤金属浓度或M2 +活性作为毒性剂量的其他模型相比,TBLM提供了一种更一致的方法,用于标准化和比较Cu和Ni对不同土壤根系伸长的毒性。 TBLM能够预测EC50土壤中铜和镍的浓度,通常在观测值的2倍之内,其精确度与水生生物配体模型相似,表明其在土壤金属风险评估中的潜在用途。

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