A review of the defining chemical properties of soda lakes and pans: An assessment on a large geographic scale of Eurasian inland saline surface waters

Обзор определяющих химических свойств содовых озёр и соров: оценка внутренних солёных поверхностных вод Евразии в широком географическом масштабе
Emil Boros, Marina Kolpakova
2018-08-20

Eurasian inland saline watersionic compositionsoda brinessoda lakeswater chemical classification
The aim of this study is to evaluate the definition of water chemical type, with particular attention to soda brine characteristics by assessing ionic composition and pH values on a large geographic scale and broad salinity (TDS) range of Eurasian inland saline surface waters, in order to rectify the considerable confusion about the exact chemical classification of soda lakes and pans. Data on pH and on the concentration of eight major ions were compiled into a database drawn from Austria, China, Hungary, Kazakhstan, Mongolia, Russia, Serbia, and Turkey. The classification was primarily based on dominant ions exceeding an equivalent percentage of 25 (> 25e%) of the total cations or anions, and the e% rank of dominant ions was also identified. We identified four major types: waters dominated by (1) Na-HCO3 (10.0%), (2) Na-HCO3 + CO3 (31.4%), (3) Na-Cl (45.9%), and (4) Na-SO4 (12.7%), considering only the first ion by e% rank. These major types can be divided into 30 subtypes in the dataset, taking into account the e% rank of all dominant ions. The major and subtypes of soda brine can be divided into "Soda" and "Soda-Saline" types. "Soda type" when Na+ and HCO3- + CO3(2-) are the first in the rank of dominant ions (> 25e%), and "Soda-Saline type" when Na+ is the first in the rank of dominant cations and the sum of HCO3- + CO3(2-) concentration exceeds 25e%, but it is not the first in the rank of dominant anions. Soda-saline type can be considered as a separate evolutionary stage between Soda and Saline types respect to the geochemical interpretation by saturation indexes of brines. The obtained overlapping ranges in distribution demonstrate that a pH measurement alone is not a reliable indicator to classify the permanent alkaline "soda type" and various other types of temporary alkaline waters.
1
Considering the rank of all dominant ions, the dataset was further divided into 30 chemical subtypes.
2
Soda brine classifications were organized into Soda and Soda-Saline types based on the relative ranking of sodium and carbonate-bicarbonate ions.
3
Soda-Saline waters may represent an intermediate geochemical evolutionary stage between Soda and Saline types, while pH alone cannot reliably distinguish permanent soda waters from other temporary alkaline waters.
4
The study compiled pH and eight-major-ion data from Eurasian inland saline waters across eight countries and a broad salinity range.
5
Using dominant-ion thresholds above 25 equivalent percent, four major water types were identified: Na-HCO3 (10.0%), Na-HCO3+CO3 (31.4%), Na-Cl (45.9%), and Na-SO4 (12.7%).

Eurasian inland saline surface waters, including soda lakes and pans, across a broad salinity (TDS) range

Their chemical classification and defining properties based on ionic composition, dominant-ion ranking, pH, salinity, and evolutionary distinctions between Soda, Soda-Saline, and Saline types

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2018-08-20
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Emil Boros
Marina Kolpakova
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