Faculty of Exact and Natural Sciences, Siedlce University of Natural Sciences and Humanities, 54 3-Maja St, 08-110, Siedlce, Poland.
Bull Environ Contam Toxicol. 2020 Oct;105(4):626-632. doi: 10.1007/s00128-020-02992-w. Epub 2020 Sep 21.
The paper presents results of the research on the dynamics of changes in the concentration of mercury in surface waters. The importance of mercury as an environmental pollutant results from specific properties of this metal, many sources of contamination, volatility, mobility, stability and high toxicity of its specific chemical forms. Samples of surface water collected from three rivers: the Bug, the Liwiec and the Muchawka were analysed. The Muchawka River flows into the Liwiec River, which in turn is a tributary of the Bug River. The technique of isotachophoresis was employed, using a solution of a biodegradable and environmentally non-toxic derivative of electrostatically stabilised silanates as the terminating electrolyte. The highest average mercury concentration of 0.89 μg/dm was determined in water samples collected from the Bug River in January, whereas the lowest concentration of 0.42 μg/dm was recorded in water collected from the Muchawka River in September.
本文介绍了汞在地表水中浓度变化动态的研究结果。汞作为一种环境污染物的重要性源于该金属的特殊性质、多种污染来源、挥发性、迁移性、稳定性以及其特定化学形态的高毒性。从三条河流(布格河、利维采河和马舒卡瓦河)采集了地表水样本。马舒卡瓦河流入利维采河,而利维采河是布格河的支流。采用等速电泳技术,以一种可生物降解且对环境无毒的静电稳定硅烷酸盐衍生物溶液作为末端电解质。在 1 月份采集的布格河水中,汞的平均浓度最高,为 0.89μg/dm,而在 9 月份采集的马舒卡瓦河水中,汞的浓度最低,为 0.42μg/dm。