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Spatiotemporal dynamics of the pollution of Al-Fe-humus podzols in the impact zone of a nonferrous metallurgical plant

机译:有色冶金厂影响区铝-铁-腐殖质足动物污染的时空动态

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The dependence of the level of contamination of the upper horizon of Al-Fe-humus podzols (Podzols Rustic) with heavy metals (Ni, Cu) on the distance from the Severonickel smelter (Monchegorsk, Murmansk oblast) was studied on a number of test plots in the medium-aged pine stands. It was found that metal concentrations in the soils could be reasonably approximated by the negative exponential function. In the buffer zone of the smelter, the concentrations of Ni and Cu exceed background values by 8-17 times; in the impact zone, by 50-100 times. The study of the dynamics of acid-soluble forms of Ni and Cu in the organic horizons of podzols on the key plots showed that the boundaries of polluted territory shift towards background regions despite the recent five-eightfold decrease in the emissions. The concentrations of heavy metals in the litter horizons continued to increase in the buffer zone. In the impact zone, their contamination remained at the very high level. Firm bounding of heavy metals in the organic horizon coupled with their continuing aerial input did not allow the beginning of the soil self-purification process, which might last for decades and centuries. Raster electron microscope and X-ray spectral microanalysis showed that particles (> 85%) of the ashed matter of organic horizons from the background region, the buffer zone, and the impact zone is mainly represented by various soil-forming minerals and iron oxides (in particular, magnetite). In the samples from the impact zone, about 5% of the mineral particles had the surface morphology and chemical composition typical of dust particles emitted into the air by metal smelters. Most probably, these spherical particles represented magnetite Fe3O4 enriched in heavy metals (Cu, Ni).
机译:在许多测试中,研究了铁-腐殖质荚果(Podzols Rustic)上层被重金属(Ni,Cu)污染的水平与距Severonickel冶炼厂(Monchegorsk,Murmansk州)的距离的依赖性。在中年松树林中积stands。研究发现,土壤中的金属浓度可以通过负指数函数合理地近似。在冶炼厂的缓冲区,镍和铜的浓度超过背景值8-17倍;在冲击区,是50-100倍。在关键地块上对pod土有机层中镍和铜的酸溶形式的动力学研究表明,尽管最近排放量减少了五倍,但污染区域的边界仍向本底区域转移。垃圾带中重金属的浓度在缓冲区内继续增加。在撞击区,它们的污染保持在很高的水平。有机层中重金属的牢固结合以及持续不断的空中输入不允许土壤自净过程的开始,这可能持续数十年甚至几个世纪。光栅电子显微镜和X射线光谱显微分析表明,来自本底区域,缓冲带和撞击带的有机层灰烬颗粒(> 85%)主要由各种成矿矿物和氧化铁(特别是磁铁矿)。在来自撞击区的样品中,约5%的矿物颗粒具有典型的表面形态和化学成分,这些特征通常是金属冶炼厂向空气中排放的尘埃颗粒。这些球形颗粒最有可能代表富含重金属(Cu,Ni)的磁铁矿Fe3O4。

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