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Critical soil concentrations of cadmium, lead, and mercury in view of health effects on humans and animals.

机译:考虑到对人类和动物的健康影响,镉,铅和汞的临界土壤浓度。

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Assessment of the risk of elevated soil metal concentrations requires appropriate critical limits for metal concentrations in soil in view of ecological and human toxicological risks. This chapter presents an overview of methodologies to derive critical total metal concentrations in soils for Cd, Pb, and Hg as relevant to health effects on animals and humans, taking into account the effect of soil properties. The approach is based on the use of nonlinear relationships for metals in soil, soil solution, plants, and soil invertebrates, including soil properties that affect metal availability in soil. Results indicate that the impact of soil properties on critical soil metal concentrations is mainly relevant for Cd because of significant soil-plant, soil-solution, and soil-worm relationships. Critical Cd levels in soil thus derived are sometimes lower than those related to ecotoxicological impacts on soil organisms/processes and plants, which is especially true for critical soil Cd concentrations in view of food quality criteria for wheat, drinking water quality, and acceptable daily intakes of worm-eating birds and mammals. There are, however, large uncertainties involved in the derivation from assumptions made in the calculation and uncertainties in acceptable daily intakes and in relationships for Cd in soil, soil solution, plants, and soil invertebrates. Despite these uncertainties, the analyses indicate that present Cd concentrations in parts of the rural areas are in excess of the critical levels at which effects in both agricultural and nonagricultural systems can occur.
机译:考虑到生态和人类毒理学风险,对土壤金属浓度升高的风险进行评估需要对土壤中金属浓度设定适当的临界限值。本章概述了土壤中Cd,Pb和Hg的临界总金属浓度的方法,这些方法与对动物和人类的健康影响有关,并考虑了土壤特性的影响。该方法基于对土壤,土壤溶液,植物和无脊椎动物中的金属使用非线性关系,包括影响土壤中金属有效性的土壤特性。结果表明,土壤属性对临界土壤金属浓度的影响主要与镉有关,因为土壤-植物,土壤-溶液和土壤-蠕虫之间存在显着关系。由此得出的土壤中的关键Cd含量有时低于与对土壤生物/过程和植物的生态毒理学影响有关的含量,考虑到小麦的食品质量标准,饮用水质量和可接受的每日摄入量,对于临界Cd含量尤其如此吃蠕虫的鸟类和哺乳动物。但是,计算中的假设存在很大的不确定性,并且每日可接受的摄入量以及土壤,土壤溶液,植物和无脊椎动物中Cd的关系存在不确定性。尽管存在这些不确定性,但分析表明,目前农村部分地区的Cd浓度超过了可能对农业和非农业系统产生影响的临界水平。

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