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Long-term Distribution, Mobility And Plant Availability Of Compost-derived Heavy Metals In A Landfill Covering Soil

机译:堆肥覆盖土壤中源自堆肥的重金属的长期分布,迁移率和植物有效性

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The application of municipal waste compost (MWC) and other organic materials may serve to enhance soil fertility of earthen materials and mine spoils used in land reclamation activities, particularly in the recovery of degraded areas left by exhausted quarries, mines and landfill sites among others. The long-term distribution, mobility and phytoavailability of heavy metals in such anthropogenic soils were studied by collecting soil samples at different depths over a 10 y chronosequence subsequent to amendment of the top layer of a landfill covering soil with a single dose of mechanically-separated MWC. Amendment resulted in a significant enhancement of the metal loadings in the amended topsoils particularly for Cu, Zn and Pb, which were also the predominant metals in the compost utilised. Although metals were predominantly retained in the compost amended soil horizon, with time their vertical distribution resulted in a moderate enrichment of the underlying mineral horizons, not directly influenced by compost amendment. This enrichment generally resulted from the leaching of soluble organo-metal complexes and subsequent adsorption to mineral horizons. However, in the course of the 10-y experimental period, metal concentrations in the underlying horizons generally returned to background concentrations suggesting a potential loss of metals from the soil system. Analysis of the tissues of plants growing spontaneously on the landfill site suggests that metal phytoavailability was limited and generally species-dependent.
机译:市政垃圾堆肥(MWC)和其他有机材料的应用可能有助于提高土地开垦活动中使用的土质材料和矿渣的土壤肥力,特别是在恢复用尽的采石场,矿山和垃圾填埋场等造成的退化地区。通过用机械剂量的单剂量分离覆盖填埋层的顶层,然后在10年的时间序列内收集不同深度的土壤样品,研究了这些人为土壤中重金属的长期分布,迁移率和植物有效性, MWC。修订导致修订后的表层土壤中的金属含量显着增加,尤其是铜,锌和铅,它们也是所使用堆肥中的主要金属。尽管金属主要保留在堆肥改良后的土壤层中,但随着时间的流逝,金属的垂直分布会导致潜在矿物质层的适度富集,而不受堆肥改良的直接影响。这种富集通常是由于可溶性有机金属配合物的浸出以及随后对矿物层的吸附所致。但是,在为期10年的实验过程中,下层视野中的金属浓度通常会返回到本底浓度,这表明金属可能会从土壤系统中流失。对垃圾填埋场自发生长的植物组织的分析表明,金属的植物利用率有限,并且通常取决于物种。

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