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压实对质地不同的污染土壤中铅有效性的影响。

Effects of compaction on lead availability in contaminated soils with contrasting texture.

机构信息

Soil Agricultural Engineering Department, Federal University of Paraná, Curitiba, Paraná, Brazil.

出版信息

Environ Monit Assess. 2020 Oct 3;192(11):672. doi: 10.1007/s10661-020-08648-w.

DOI:10.1007/s10661-020-08648-w
PMID:33009971
Abstract

The effects of soil compaction on porosity (α), bulk density (ρs), and saturated hydraulic conductivity (Ksat) can create a physical barrier in the soil, reducing the vertical movement of toxic elements in the soil profile. However, the indirect effects of compaction in altering the forms and availability of heavy metals in soil have not been well-studied. This study examined the influence of compaction on forms of lead (Pb) in soils with contrasting texture. Four levels of compaction were imposed on a sandy loam and a clayey soil, which were artificially contaminated based on their maximum Pb adsorption capacity. Compaction had different effects on Pb forms depending on soil texture. In the sandy loam soil, compaction had a dual beneficial effect in mitigating the impact of Pb contamination, since it decreased Ksat, reducing metal transport to deeper soil layers, and also prevented transformation to more available Pb forms (soluble and exchangeable). Instead, there was an increase in the most environmentally stable forms of Pb (inner sphere adsorption on iron and manganese oxides). In the clayey soil, compaction caused a significant increase in soluble and exchangeable Pb, accompanied by a significant reduction in environmentally stable Pb (inner sphere adsorption on gibbsite and kaolinite). In addition, studies about Pb contents under compacted soil layers should be investigated, mainly in clayey soils with edible crops, and environmental remediation practices that involve the machines traffic (for example, phytoremediation-successive cultivation of Pb-hyperaccumulating plants) should be used with care to minimise the compaction of clayey soils.

摘要

土壤紧实度对孔隙度 (α)、体密度 (ρs) 和饱和水力传导度 (Ks at) 的影响会在土壤中形成物理障碍,从而减少土壤剖面中有毒元素的垂直迁移。然而,紧实度对土壤中重金属形态和有效性的间接影响尚未得到充分研究。本研究考察了紧实度对质地不同的土壤中铅 (Pb) 形态的影响。在砂土和粘性土上施加了四个紧实度水平,这两种土壤是根据其最大 Pb 吸附能力人为污染的。紧实度对 Pb 形态的影响因土壤质地而异。在砂土中,紧实度对减轻 Pb 污染的影响具有双重有益作用,因为它降低了 Ksat,减少了金属向更深土层的迁移,同时防止了向更具生物有效性的 Pb 形态(可溶性和可交换性)的转化。相反,Pb 的最稳定的环境形态(铁和锰氧化物的内球吸附)增加了。在粘性土中,紧实度导致可溶性和可交换性 Pb 显著增加,同时环境稳定的 Pb(水铝石和高岭石的内球吸附)显著减少。此外,应该研究紧实土壤层下的 Pb 含量,主要是在粘性土中种植食用作物,并且应该谨慎使用涉及机器交通的环境修复实践(例如,超积累植物的连续种植),以尽量减少粘性土的紧实度。

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