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Speciation of Zn, Cu, and Pb in the soil depending on soil texture and fertilization with sewage sludge compost

机译:土壤中锌,铜和铅的形态取决于土壤质地和污水污泥堆肥的施肥情况

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amounts of mobile Cu species (F1 and F2) increased in the soils amended with SSC, probably due to the influence of SSC of anthropogenic origin with lower pH and high organic matter content, but Cu mobility decreased nearly to the initial level again after 3-4 weeks. Hence, the soil has a great specific adsorption capacity to immobilize Cu of anthropogenic origin. Discussion Zn mobility and environmental impact was greater than that seen for Cu and Pb, while mobility of both Cu and Pb was similar, but variable depending on soil texture and contamination level. The effect on the shift of HM mobility and potential availability was greater in sandy SSC-amended soils than in clay soils and increased with an increasing amount of SSC. Conclusions Usage of SSC for land fertilization should be strictly regulated, especially regarding Pb amounts. Recommendations and perspectives The influence of SSC on Cu and Zn mobility and potential availability was more significant only in the case of sandy soil with a higher SSC ratio. Nevertheless, this waste product of anthropogenic origin increased Pb mobility in all cases in spite of only moderate Pb mobility in SSC itself. Therefore, aerobic processing of sewage sludge must be strictly regulated, especially regarding Pb amounts, and SSC ratios must be in control regarding HM amounts when using it for on-land application.
机译:经过SSC改良的土壤中可移动的Cu种类(F1和F2)的数量增加,可能是由于人为来源的SSC的影响,其pH值较低且有机物含量较高,但3-迁移后,Cu的迁移率又再次降低至初始水平4个星期因此,土壤具有很大的比吸附能力来固定人为来源的Cu。讨论锌的迁移率和环境影响大于铜和铅的迁移率,而铜和铅的迁移率相似,但取决于土壤质地和污染水平而变化。沙质改良土壤改良土壤对HM迁移率和潜在有效性的转移影响大于黏土,并且随着SSC含量的增加而增加。结论应严格控制SSC在土地施肥中的使用,尤其是铅含量方面。建议和观点仅在具有较高SSC比率的沙质土壤中,SSC对Cu和Zn迁移率和潜在有效性的影响才更为显着。然而,尽管SSC自身的Pb迁移量适中,但这种人为来源的废品在所有情况下都增加了Pb迁移率。因此,必须严格控制污水污泥的好氧处理,尤其是关于铅的含量,并且在陆上使用时必须控制HM含量的SSC比。

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