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首页> 外文期刊>Chemosphere >Evaluation of mercury availability to pea parts (Pisum sativum L.) in urban soils: Comparison between diffusive gradients in thin films technique and plant model
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Evaluation of mercury availability to pea parts (Pisum sativum L.) in urban soils: Comparison between diffusive gradients in thin films technique and plant model

机译:评价城市土壤中豌豆部分(Pisum sativum L.)的汞有效性:薄膜技术中的扩散梯度与植物模型之间的比较

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The diffusive gradients in thin films technique (DGT) was used for the determination of bioavailable mercury in urban soils, and results were compared to the mercury accumulation by Pisum sativum L (pea) parts (leaf, root, stem, blossom, legume, and green seed). The total mercury concentration in soil samples was ranged between 0.084 and 0.326 mg kg(-1). The soil solutions contained 0.15%-0.20% of mercury present in soils. In the soil solution, 2.21%-3.45% of mercury was available for DGT units. The highest mercury content was determined in the leaf and root of the pea plant, and the lowest in the consumable part of the pea plant (green seed). Mercury concentration in the parts of the pea plant increased over time, alongside the growth of the plant. The effect of acid precipitation on mercury bioavailability was statistically non-significant (p = 0.53). Significant and positive correlations were found between mercury flux into DGT unit, and mercury flux into the root (r = 0.989), leaf (r = 0.985), and stem (r = 0.904) of the pea plant. The obtained results suggest that the DGT method could be used for description of the uptake of mercury by pea plant parts in non-contaminated and slightly contaminated soils. (C) 2019 Elsevier Ltd. All rights reserved.
机译:薄膜中的扩散梯度技术(DGT)用于测定城市土壤中生物有效性的汞,并将结果与​​豌豆(Pisum sativum L(豌豆))(叶,根,茎,花,豆科植物和绿色种子)。土壤样品中的总汞浓度范围为0.084至0.326 mg kg(-1)。土壤溶液中含有0.15%-0.20%的汞。在土壤溶液中,DGT单位可使用2.21%-3.45%的汞。豌豆植物的叶和根中的汞含量最高,而豌豆植物(绿色种子)的可消耗部分中汞含量最低。随着时间的推移,豌豆植物部分中的汞浓度随植物的生长而增加。酸沉淀对汞生物利用度的影响在统计学上不显着(p = 0.53)。在豌豆植物中,DGT单位的汞通量与根(r = 0.989),叶(r = 0.985)和茎(r = 0.904)的汞通量之间存在显着正相关。获得的结果表明,DGT方法可用于描述未污染和轻度污染的土壤中豌豆植物部位对汞的吸收。 (C)2019 Elsevier Ltd.保留所有权利。

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