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Heavy metal immobilization by cost-effective amendments in a contaminated soil: Effects on metal leaching and phytoavailability

机译:通过在污染土壤中进行具有成本效益的改良剂来固定重金属:对金属浸出和植物利用率的影响

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摘要

The combination of revegetation and application of stabilizing soil amendments on heavy metal-contaminated soils is generally considered to be a promising alternative to expensive classical remediation techniques. Here, we simultaneously investigated the effects of six cost-effective amendments (CaCO3, iron grit, fly ash, manure, bentonite and bone meal) on Cd, Zn and Pb leaching and phytoavailability (assessed using white lupin, Lupinus albm L). The Cd and Zn leaching was reduced by all amendments mainly due to alkalinity increase. The Pb leaching was strongly affected by the dissolved organic carbon (DOC) release. Therefore, bone meal and manure treatments, which highly increased DOC concentrations in leachates, increased the flow-weighted mean Pb concentrations by 2.3 and 16 times, respectively. Surprisingly, while iron grit induced strong Cd and Pb leaching reductions, this amendment doubled Cd and Pb concentrations in shoots of white lupin. Conversely, the addition of bone meal reduced Pb concentrations in shoots by 74%, probably because organo-Pb complexes (predicted using Visual MINTEQ.) were largely dominant in solution. Overall, the addition of CaCO3 offered the best compromise as it successfully reduced both the leaching and the phytoavailability of the three considered metals. Our results demonstrate the efficacy of several amendments while stressing the need to measure simultaneously the leaching and the phytoavailability of metals induced by each amendment.
机译:重新植被与在重金属污染土壤上应用稳定化土壤改良剂的组合通常被认为是昂贵的经典修复技术的有前途的替代方法。在这里,我们同时研究了六种具有成本效益的改良剂(CaCO3,铁砂,粉煤灰,肥料,膨润土和骨粉)对镉,锌和铅浸出和植物利用率的影响(使用白色羽扇豆,羽扇豆albm L评估)。所有的修改都减少了Cd和Zn的浸出,这主要是由于碱度的增加。溶解有机碳(DOC)释放强烈影响了铅的浸出。因此,骨粉和粪肥处理大大增加了渗滤液中的DOC浓度,使流量加权平均Pb浓度分别增加了2.3倍和16倍。出人意料的是,尽管铁砂引起了Cd和Pb的强烈浸出减少,但该修正使白色羽扇豆芽中Cd和Pb的浓度增加了一倍。相反,添加骨粉可将枝条中的Pb浓度降低74%,这可能是因为有机Pb配合物(使用Visual MINTEQ预测)在溶液中占主导地位。总体而言,CaCO3的添加提供了最佳的折衷方案,因为它成功地降低了三种考虑的金属的浸出和植物利用率。我们的结果证明了几种修正的功效,同时强调了需要同时测量每种修正引起的金属的浸出和植物利用率。

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