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Heavy metal concentrations in a soil—plant—snail food chain along a terrestrial soil pollution gradient

机译:土壤-植物-蜗牛食物链中重金属的浓度沿地球土壤污染梯度

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We investigated concentrations of Zn, Cu, Cd and Pb in the compartments of a soil-plant (Urtica dioica)-snail (Cepaea nemoralis) food chain in four polluted locations in the Biesbosch floodplains, the Netherlands, and two reference locations. Total soil metal concentrations in the polluted locations were 4—20 times higher than those in the reference locations. Positive relationships between the generally low leaf concentrations and the soil concentrations were found for Zn only (r~2 = 0.20). Bioaccumulation of Zn, Cu and Cd was. observed in the snail tissues. We found positive relationships between the snail and leaf concentrations for all metals (range r~2 = 0.19—0.46). The relationships between soil and snail concentrations were also positive, except for Cu (range r~2 = 0.15—0.33). These results suggest transfer of metals to C. nemoralis snails from U. dioica leaves and from the soil. Metal transfer from polluted leaves to C. nemoralis is more important than transfer from the soil.
机译:我们在荷兰比斯博斯河漫滩的四个污染地点和两个参考地点调查了土壤植物(Urtica dioica)-蜗牛(Cepaea nemoralis)食物链中锌,铜,镉和铅的浓度。污染地点的土壤金属总浓度比参考地点高4-20倍。仅锌含量较低的叶片通常与土壤浓度呈正相关(r〜2 = 0.20)。锌,铜和镉的生物积累为。在蜗牛组织中观察到。我们发现所有金属的蜗牛和叶片浓度之间呈正相关(范围r〜2 = 0.19-0.46)。除铜外,土壤与蜗牛浓度之间的关系也呈正相关(范围r〜2 = 0.15-0.33)。这些结果表明,金属从U. dioica叶和土壤转移到C. nemoralis蜗牛。金属从污染的叶子转移到C. nemoralis比从土壤转移更重要。

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