Experimental Simulation of the Influence of Temperature on the Migration of Substances from Bottom Sediments

Q4 Environmental Science Hydrobiological Journal Pub Date : 2023-01-01 DOI:10.1615/hydrobj.v59.i6.70
V. A. Zhezherya, T. P. Zhezherya, P. M. Linnik, V. P. Osipenko
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Abstract

The results of experimental investigations of the influence of water temperature on the migration of nutrients, organic matter, and metals from bottom sediments into the aquatic environment are discussed in the paper. It has been found that the increase in water temperature from 5°C to 15&degC resulted in the increase in the concentration of inorganic nitrogen, inorganic and total phosphorus, and dissolved silicon respectively by a factor of 1.6, 1.1, 1.2, and 1.4. The increase in water temperature from 5&degC to 25&degC resulted in the increase in the content of these nutrients by a factor of 1.8, 5.8, 1.9, and 2.5. Water temperature increase influenced the contribution of nitrogen compounds to the total balance of inorganic nitrogen. A relative content of ammonium decreased, whereas the contribution of nitrite- and nitrate ions increased as a result of the process of nitrification. The concentration of readily oxidized organic matter and the total content of organic matter also increased almost by a factor of 1.6 with increasing water temperature from 5&degC to 25&degC. Under such conditions, the concentration of aluminum, manganese, and chromium increased by a factor of 1.9, 3.2, and 2.0. In this case, the content of iron and copper remained almost unchanged due to their occurrence in inaccessible fractions of bottom sediments. Artificial aeration at 25&degC was responsible for an insignificant decrease in the concentration of inorganic nitrogen, inorganic and total phosphorus, dissolved organic matter, and also of dissolved aluminum, manganese, and chromium. It has been found that water temperature increase results in the migration of the studied chemical compounds from bottom sediments. However, this process is not as intensive as, for example, with a deficiency of dissolved oxygen and a decrease in pH and redox potential in the near-bottom layer of water.
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温度对海底沉积物中物质迁移影响的实验模拟
本文讨论了水温对海底沉积物中营养物、有机物和金属向水生环境迁移影响的实验研究结果。研究发现,水温从5℃升高到15℃,无机氮、无机磷和总磷、溶解硅的浓度分别增加1.6倍、1.1倍、1.2倍和1.4倍。水温从5℃升高到25℃时,这些营养物质的含量分别增加了1.8、5.8、1.9和2.5倍。水温升高影响了氮化合物对无机氮总平衡的贡献。铵离子的相对含量降低,而亚硝酸盐和硝酸盐离子的贡献由于硝化过程而增加。随着水温从5℃升高到25℃,易氧化有机质浓度和有机质总含量也增加了近1.6倍。在这种条件下,铝、锰和铬的浓度分别增加了1.9、3.2和2.0倍。在这种情况下,铁和铜的含量几乎保持不变,因为它们出现在底部沉积物中难以接近的部分。25℃人工曝气对无机氮、无机磷和总磷、溶解有机质以及溶解铝、锰和铬的浓度有轻微的降低。研究发现,水温升高会导致所研究的化合物从底部沉积物中迁移。然而,这一过程并不像溶解氧缺乏和水的近底层pH值和氧化还原电位降低那样剧烈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hydrobiological Journal
Hydrobiological Journal Environmental Science-Ecology
CiteScore
0.90
自引率
0.00%
发文量
36
期刊介绍: This journal contains translations from the premier Russian and Eastern European periodicals in aquatic biology and aquatic ecosystems, supplemented by original articles from elsewhere. The journal publishes in the area of physiology, biochemistry, systematics, ecology and conservation of freshwater fish, invertebrates, vascular plants, zoo- and phytoplankton, as well as freshwater quality and toxicology. While most of the papers deal with inland waters, the journal also publishes articles reporting on expeditionary work, especially the Antarctic and tropical seas. Hydrobiological Journal is valuable to freshwater and marine biologists and chemists, limnologists, environmental scientists, oceanographers, and toxicologists.
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