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Effect of peat on the accumulation and translocation of heavy metals by maize grown in contaminated soils

机译:泥炭对受污染土壤中玉米生长和重金属​​积累和转运的影响

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摘要

Incorporation of organic materials into soil improves the soil sorption capacity, while limiting the mobility of metals in soil and their availability to plants. These effects can be taken advantage for remediation of soils polluted with heavy metals. The objective of this study is to assess the remediatory potential of peat applied to soils with concomitant pollution with Cd, Pb, and Zn. Two 1-year experiments were run in microplots in which maize was grown as the test plant. The following treatments were compared on two soils (sandy soil and loess): (1) control, (2) heavy metals (HM), (3) HM+peat in a single dose, and (4) HM+peat in a double dose. Maize was harvested in the maturity stage; the biomass of roots and aerial parts, including grain and cobs, was measured. Besides, concentration of metals in all those plant parts and the net photosynthetic rate and transpiration rate were determined. The approach of using peat in soil remediation led to satisfactory results on sandy soil only. The application of peat to sandy soil caused significant changes in the accumulation of the metals and their translocation from roots to other parts of plants, which resulted in a higher intensity of photosynthesis and an increase in the maize biomass compared to the HM treatment.
机译:将有机材料掺入土壤可提高土壤的吸附能力,同时限制金属在土壤中的流动性及其对植物的利用。这些效应可被利用来修复被重金属污染的土壤。这项研究的目的是评估泥炭对土壤中镉,铅和锌污染的修复潜力。在微型试验中进行了两个为期1年的实验,在其中种植了玉米作为测试植物。在两种土壤(沙土和黄土)上比较了以下处理方法:(1)对照,(2)重金属(HM),(3)单剂量HM +豌豆,和(4)双剂量的HM +豌豆剂量。玉米在成熟期收获;测量了根和地上部分(包括谷物和穗轴)的生物量。此外,测定了所有这些植物部分中的金属浓度以及净光合速率和蒸腾速率。使用泥炭进行土壤修复的方法仅在沙质土壤上获得令人满意的结果。与HM处理相比,将泥炭施用到沙质土壤上会导致金属积累量的显着变化以及它们从根部向植物其他部位的转运,从而导致更高的光合作用强度和玉米生物量的增加。

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