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Reuse of Dunite Mining Waste and Subproducts for the Stabilization of Metal(oid)s in Polluted Soils

机译:再利用Dunite采矿废料和副产品稳定土壤中的金属(类)

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The circular economy seeks to minimize the use of raw materials and waste generation. In this context, here we addressed the use of dunite mining tailings and subproducts to stabilize metal(oid)s in polluted soils. We first characterized the dunite mining tailings and subproducts, and a paradigmatic polluted soil in depth to determine their chemical and mineralogical properties. Experimental trials using Brassica juncea L. were performed to evaluate the impact of the two materials on vegetation growth, edaphic properties and pollutant stabilization yields. To this end, the plants were grown over 75 days in 1 kg pots containing the polluted soil amended with the dunite materials. Notably, both amendments caused a dramatic decrease in the available Zn and a moderate reduction in available Cu, Cd and Pb. In contrast, the concentration of available As was not modified. The cation exchange capacity (CEC) was improved by treatment with the amendments, allowing an increase in the biomass harvested. The immobilization mechanism achieved was probably due to an increase in pH and CEC. In conclusion, the dunite tailings and subproducts could be effective amendments for stabilizing polluted soil. This work paves the way for additional studies with distinct types of soils and conditions.
机译:循环经济寻求最大限度地减少原材料的使用和废物的产生。在这种情况下,我们研究了使用Dunite采矿尾矿和副产品来稳定污染土壤中的金属(类固醇)。我们首先对Dunite采矿尾矿和副产品以及一种受范式严重污染的土壤进行了深度表征,以确定其化学和矿物学性质。进行了使用芥菜油菜的实验试验,以评估这两种材料对植被生长,营养特性和污染物稳定化产量的影响。为此,将植物在1kg的盆中生长超过75天,盆中装有用Dunite材料改良的污染土壤。值得注意的是,两种修正均导致有效锌含量显着下降,而有效铜,镉和铅适度下降。相反,有效砷的浓度未改变。阳离子交换容量(CEC)通过使用修正物的处理得以改善,从而增加了收获的生物量。实现的固定化机制可能是由于pH和CEC的增加。总而言之,粉煤灰尾矿和副产品可能是稳定受污染土壤的有效方法。这项工作为不同类型的土壤和条件的进一步研究铺平了道路。

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