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A field method using microcosms to evaluate transfer of Cd, Cu, Ni, Pb and Zn from sewage sludge amended forest soils to Helix aspersa snails

机译:一种现场方法,使用微观世界评估改性污泥森林土壤中Cd,Cu,Ni,Pb和Zn向Helix aspersa蜗牛的迁移

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摘要

Juvenile Helix aspersa snails exposed in field microcosms were used to assess the transfer of Cd, Cu, Ni, Pb and Zn from forest soils amended with liquid and composted sewage sludge. Zn concentrations and contents were significantly higher in snails exposed to liquid and composted sludge after 5 and 7 weeks of exposure, when compared with control. Trends were less clear for the other metals. Present results show that Zn, among the cocktail of metallic trace elements (MTE) coming from sewage sludge disposal, represents the principal concern for food chain transfer and secondary poisoning risks. The microcosm design used in this experiment was well suited for relatively long-term (about 2 months) active biomonitoring with H. aspersa snails. The snails quickly indicated the variations of MTE concentrations in their immediate environment. Therefore, the present study provides a simple but efficient field tool to evaluate MTE bioavailability and transfer.
机译:在田间缩影中暴露的少年螺旋蜗牛被用来评估Cd,Cu,Ni,Pb和Zn从液态和堆肥污水污泥改良的森林土壤中的迁移。与对照相比,暴露于液体和堆肥污泥中的蜗牛暴露5周和7周后,锌的浓度和含量显着更高。其他金属的趋势不太明显。目前的结果表明,来自污水污泥处置的金属微量元素(MTE)混合物中的Zn代表着对食物链转移和二次中毒风险的主要关注。本实验中使用的缩影设计非常适合于相对较长(约2个月)的使用H. aspersa蜗牛进行主动生物监测。蜗牛迅速指出了其附近环境中MTE浓度的变化。因此,本研究提供了一个简单而有效的现场工具来评估MTE的生物利用度和转移。

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