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Effects of the application of an organic amendment and nanoscale zero-valent iron particles on soil Cr(VI) remediation

机译:有机修正和纳米尺度零价铁颗粒在土壤Cr(VI)修复中的应用效果

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Chromium is considered an environmental pollutant of much concern whose toxicity depends, to a great extent, on its valence state, with Cr(VI) being more soluble, bioavailable, and toxic, compared to Cr(III). Nanoremediation is a promising strategy for the remediation of metal pollutants by changing their valence state. However, among other aspects, its effectiveness for soil remediation is seriously hampered by the interaction of nanoparticles with soil organic matter. In this study, soil was (i) amended with two doses of a municipal solid organic waste and (ii) artificially polluted with 300 mg Cr(VI) kg(-1) DW soil. After a period of aging, a nanoremediation treatment with nanoscale zero-valent iron particles (1 g nZVI kg(-1) DW soil) was applied. The efficiency of the remediation treatment was assessed in terms of Cr(VI) immobilization and recovery of soil health. The presence of the organic amendment caused (i) a decrease of redox potential, (ii) Cr(VI) immobilization via its reduction to Cr(III), (iii) a stimulation of soil microbial communities, and (iv) an improvement of soil health, compared to unamended soil. By contrast, nZVI did not have any impact on Cr(VI) immobilization nor on soil health. It was concluded that, unlike the presence of the organic amendment, nanoremediation with nZVI was not a valid option for soils polluted with Cr(VI) under our experimental conditions.
机译:与Cr(III)相比,铬被认为是毒性在很大程度上取决于其毒性在很大程度上取决于其价态的环境污染物,其毒性依赖于其价态。纳米修复是通过改变其价态来修复金属污染物的有希望的策略。然而,在其他方面,其对土壤修复的有效性受到纳米颗粒与土壤有机物质的相互作用的严重阻碍。在这项研究中,土壤(i)用两种剂量的城市固体有机废物和(ii)用300mg Cr(VI)kg(-1)DW土壤,用两种药物固体有机废物和(ii)进行修正。在一段时间后,用纳米级零价铁颗粒(1g NZVI kg(-1)DW土壤)进行纳米修复处理。根据Cr(VI)固定化和土壤健康恢复,评估修复治疗的效率。有机修正的存在引起(i)通过其还原到Cr(iii),(iii)对土壤微生物社区的刺激,(iv)改善(iv)的改善土壤健康,与未来未来的土壤相比。相比之下,NZVI对Cr(vi)固定性没有任何影响,也没有对土壤健康产生任何影响。得出结论是,与有机修正的存在不同,与NZVI的纳米修复不是在我们的实验条件下用CR(VI)污染的土壤的有效选择。

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