Geochemical Mobility of Chemical Elements in Saline Lake Systems in Khakassia (Russia)
Геохимическая подвижность химических элементов в системах соленых озер Хакасии (Россия)
2013-01-01
SCID: 54.1/r3ckaupa
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Khakassiageochemical mobilitygeochemical mobility coefficientssaline lakessecondary mineral phases
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Abstract (AI)
Saline lakes were sampled from the semi-arid region of the Russian Federation (Khakassia). The water and salt sediment samples were collected from 4 lakes: Khamiskol, Terpikol, Uskol, and Tus. The total dissolved solids (TDS) of the various lakes ranges from 7.9 to 115.6 g/l. The pH values lie mostly in the range of 8.3 – 9.9. The anionic composition of saline lakes is varied. The cationic composition of lakes is not so varied as the anionic one. Sodium is the dominant cation in the water composition of these lakes, whereas the Tus Lake contains magnesium and sodium in equal proportions. The chemical element enrichment of water is regulated by the formation of significant quantities of secondary mineral phases. The Khakassia saline lakes are saturated with respect to carbonate minerals such as calcite, dolomite, magnesite, and are undersaturated in terms of natrite, anhydrite, thenardite, and halite. Geochemical mobility coefficients can be used to evaluate the geochemical mobility of major elements in the saline lake waters. Geochemical mobility coefficients suggest that trace elements tend to accumulate in secondary phases, which are consolidated by secondary mineral precipitation and sorption processes.
Key Findings
1
Four Khakassian saline lakes exhibit total dissolved solids ranging from 7.9 to 115.6 g/L and predominantly alkaline pH values of 8.3–9.9.
2
Geochemical mobility coefficients indicate that trace elements preferentially accumulate in secondary phases consolidated by precipitation and sorption processes.
3
Lake anionic compositions vary substantially, while sodium generally dominates cations; Tus Lake uniquely contains magnesium and sodium in equal proportions.
4
Secondary mineral formation regulates chemical-element enrichment in the lake waters through mineral precipitation and sorption.
5
The waters are saturated with calcite, dolomite, and magnesite, but undersaturated with natrite, anhydrite, thenardite, and halite.
Research Object
Saline lake systems in Khakassia, Russia, including the waters and salt sediments of Lakes Khamiskol, Terpikol, Uskol, and Tus
Research Subject
The geochemical mobility, element enrichment, mineral saturation, and accumulation of major and trace elements through secondary mineral precipitation and sorption
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2013-01-01
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