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Development of new remediation technologies for contaminated soils based on the application of zero-valent iron nanoparticles and bioremediation with compost

机译:基于零价铁纳米粒子的应用和堆肥生物修复技术的开发新的污染土壤修复技术

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Abstract This study aimed to develop new techniques for the remediation of contaminated soils based on the application of zero-valent iron nanoparticles (nZVI) and bioremediation with compost from organic wastes and a mixed technique of both. An assessment of the effectiveness of remediation in two soils contaminated with hydrocarbons and heavy metals was carried out, with the aim of looking for positive synergies by combining the two techniques, and demonstrating their viability on an industrial scale. The application of nZVI for in situ immobilization of As and Cr in two different soils (Soil I from a contaminated industrial site and Soil II, contaminated artificially) showed a decrease in the concentration of As in Soil I and Soil II, as well as a decrease in Cr concentration for Soil I and Soil {II} in the leachate of both soils. The addition of compost and nanoparticles under uncontrolled environmental conditions in biopiles was able to produce a decrease in the concentration of aliphatic hydrocarbons of up to 60% in the two soils. Especially, degradation and transformation of longer chains occurred. A significant reduction of ecotoxicity was observed throughout the process in the biopile of soil II, not reaching the {LC50} even with 100% of the sample after the treatment, in both earthworm and seeds growth tests.
机译:摘要本研究旨在开发零污染铁纳米颗粒(nZVI)的应用和有机废物堆肥生物修复以及两者混合技术的新技术。对两种被碳氢化合物和重金属污染的土壤的修复效果进行了评估,目的是通过结合两种技术寻找积极的协同作用,并在工业规模上证明其可行性。 nZVI在两种不同土壤(受污染的工业现场的土壤I和人工污染的土壤II)中原位固定砷和铬的应用表明,土壤I和土壤II中的As浓度降低了,两种土壤渗滤液中土壤I和土壤{II}的Cr浓度降低。在不受控制的环境条件下,在生物堆中添加堆肥和纳米颗粒能够使两种土壤中的脂肪烃浓度降低多达60%。特别地,发生了更长链的降解和转化。在II和种子生长试验中,在土壤II的生物堆中整个过程中均观察到了生态毒性的显着降低,即使处理后100%的样品也未达到{LC50}。

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