THREE-DIMENSIONAL ANALYSIS OF THE CITY ENVIRONMENT CONTAMINATION WITH HEAVY METALS BASED ON THE FINDINGS OF THE SNOW COVER STUDY

N. Stepanova, E. Valeeva, A. Elbahnasawy, O. Sinitsyna, S. Fomina, Aizat Basyyrov
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Abstract

Analysis of the air environment and atmospheric emissions is an efficient method for assessing the ecological situation in cities. Assessment of the chemical composition of deposit environments (soil, snow) shows long-term contamination. The snow cover (SC), being a natural accumulating plate, reflects environmental contamination with heavy metals (HM) caused by entry from various sources. The work aims to study the three-dimensional dynamics of large city contamination with HM. Sampling (in 2019 - 100, in 2020-100, in 2021 - 280) was performed in the first decade of March. The samples were analyzed for the HM content by atomic absorption method on apparatus AAS 3. Simultaneously, the content of Cd, Cu, Zn,/, Ni, and Mn in the solid residue (mg/kg of dust), along with the HM fallout density per unit area for dissolved and solid phases (mg/m2) during winter period were calculated. The average daily dust load on the city territory was confirmed by relatively weak temporal variation, the difference in dust release during the winter seasons of the years 2019-2021 did not increase by 20%. In 2019, the SC dust level was characterized mainly as low (85.5 kg/km2/day). High dust level was observed only at the sites adjacent to large industrial enterprises (816 kg/km2 -day). In 2020, the dust level of the city of SC was the lowest (40.8 kg/km2/day). Along with the decrease of the total dust weight, which entered the SC, a decrease of HM entry as part of dust was registered too. The element-by-element analysis showed that Fe (80-87%), Zn (5-6.8%), Mn (3.45-3.6%), and Cu (1.3-2.7%) made the highest proportion in the dust. Ranking in value of the concentration coefficient (C-) was as follows: Cd 327 > -u 51 > Zn 38 > / 18 > / 13 > Ni 11 > n 1.3. The spread of Cd data in selected measurement points in dust fallouts on SC was achieved 900 times. In urbanized systems, the Cd behavior is regulated by the transformation of hydrocarbons, which involves the structure of atmospheric emissions in the city of Kazan. Correlation between the HM content as part of liquid and solid phases of the city SC indicates a statistically significant relationship with their technogenic entry into the atmosphere from one or several sources, and the composition of HM geochemical association in SC depends largely on the set and relationship of elements in other components of the urban environment. The assumption of the integrity of -d, Pb, Cu, and Zn source of entry (Spearman correlation coefficient 0.55-0.92) was confirmed. Data on the SC contamination not only deepen our knowledge, reflecting peculiarities of the atmospheric pollution spread, but also allow preventing the contamination of water bodies and soils.
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基于积雪研究结果的城市环境重金属污染三维分析
大气环境和大气排放分析是评价城市生态状况的有效方法。沉积物环境(土壤、雪)的化学成分评估显示出长期污染。积雪作为天然的积层,反映了各种来源的重金属对环境的污染。本研究旨在用HM研究大城市污染的三维动力学。在3月的第一个十年进行抽样(2019 -100年,2020-100年,2021 - 280年)。用原子吸收法测定样品中HM的含量。同时,计算了固体残渣中Cd、Cu、Zn、/、Ni、Mn的含量(mg/kg),以及冬季单位面积溶解相和固相HM沉降密度(mg/m2)。城市日均沙尘负荷的时间变化相对较弱,2019-2021年冬季沙尘释放量的差异没有增加20%。2019年沙尘水平以低水平为主(85.5 kg/km2/d)。高扬尘水平仅在大型工业企业附近观测到(816 kg/km2 d)。2020年沙尘水平最低的是SC市(40.8 kg/km2/d)。随着进入SC的总粉尘重量的减少,HM作为粉尘的一部分也减少了。逐元素分析表明,Fe(80-87%)、Zn(5-6.8%)、Mn(3.45-3.6%)和Cu(1.3-2.7%)在粉尘中所占比例最高。浓度系数(C-)的取值顺序为:Cd 327 > -u 51 > Zn 38 > / 18 > / 13 > Ni 11 > n 1.3。Cd数据在SC尘降中选定测点的扩散达到了900次。在城市化系统中,Cd行为受碳氢化合物转化的调节,这涉及喀山市大气排放的结构。城市大气中HM含量作为液相和固相的一部分之间的相关性表明,HM含量与它们从一个或几个来源进入大气的技术相关关系具有统计学意义,而城市大气中HM地球化学关联的组成在很大程度上取决于城市环境中其他组成部分元素的集合和关系。验证了-d、Pb、Cu、Zn源完整性假设(Spearman相关系数0.55 ~ 0.92)。SC污染的数据不仅加深了我们的认识,反映了大气污染传播的特殊性,而且可以防止水体和土壤的污染。
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