National University of Science and Technology "MISiS", 4 Leninsky Prospect, Moscow, 119991, Russia.
Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, 19 Kosygin Street, Moscow, 119991, Russia.
Environ Sci Pollut Res Int. 2019 Feb;26(6):5315. doi: 10.1007/s11356-018-3180-y.
A comprehensive approach has been developed to the assessment of composition and properties of atmospherically deposited dust in the area affected by a copper smelter. The approach is based on the analysis of initial dust samples, dynamic leaching of water soluble fractions in a rotating coiled column (RCC) followed by the determination of recovered elements and characterization of size, morphology and elemental composition of nano-, submicron, and micron par ticles of dust separated using field-flow fractionation in a RCC. Three separated size fractions of dust (<0.2, 0.2-2, and >2 μm) were characterized by static light scattering and scanning electron microscopy, whereupon the fractions were analyzed by ICP-AES and ICP-MS (after digestion). It has been evaluated that toxic elements, which are characteristics for copper smelter emissions (As, Cu, Zn), are accumulated in fraction >2 μm. At the same time, up to 2.4, 3.1, 8.2, 6.7 g/kg of As, Cu, Zn, Pb, correspondently, were found in nanoparticles (<0.2 μm). It has been also shown that some trace elements (Sn, Sb, Ag, Bi, and Tl) are accumulated in fraction <0.2, and their content in this fraction may be one order of magnitude higher than that in the fraction >2 μm, or the bulk sample. It may be assumed that Sn, Sb, Ag, Bi, Tl compounds are adsorbed onto the finest dust particles as compared to As, Cu, Zn compounds, which are directly emitted from the copper smelter as microparticles.
已经开发出一种综合方法来评估受铜冶炼厂影响地区大气沉降尘的组成和性质。该方法基于初始尘样分析,在旋转盘管(RCC)中进行水可溶部分的动态浸出,然后测定回收元素,并采用 RCC 中的场流分级分离对尘样的纳米、亚微米和微米颗粒的大小、形态和元素组成进行表征。利用静态光散射和扫描电子显微镜对尘样的三个分离粒径(<0.2、0.2-2 和>2μm)进行了表征,然后对这些粒径进行 ICP-AES 和 ICP-MS 分析(消化后)。评估表明,铜冶炼厂排放物特有的有毒元素(As、Cu、Zn)积累在>2μm 的粒径中。同时,在<0.2μm 的纳米颗粒中发现了高达 2.4、3.1、8.2、6.7g/kg 的 As、Cu、Zn、Pb。还表明,一些微量元素(Sn、Sb、Ag、Bi、Tl)在<0.2μm 的粒径中积累,其含量比>2μm 的粒径或原始尘样高一个数量级。可以假设,与直接作为微颗粒从铜冶炼厂排放的 Cu、Zn 化合物相比,Sn、Sb、Ag、Bi、Tl 化合物被吸附到最细的尘颗粒上。