The results of thermodynamic calculations for a water-rock system in the Upper Jurassic deposits of the Arctic regions of Western Siberia are presented. In the area under investigation the groundwaters have been identified with mineralization up to 63.3 g/L and various chemical composition and genesis. Despite the long interaction with the rock (150-160 ma) equilibrium with endogenous minerals (albite, microcline and anorthite) is practically not observed. At the same time, groundwaters are in equilibrium with clay minerals and micas, such as: Caand Na-montmorillonites, kaolinite, paragonite, margarite, illite, muscovite and Mg-chlorite. The establishment of a balance of groundwater with primary aluminosilicate minerals is also affected by ...
The hydrogeochemical regionalisation of the Cretaceous aquifer system has been completed. Also, toge...
AbstractIn the central part of Western Siberia a study of the chemical composition of bog water was ...
© Copyright 2016.The zone of active water exchange of the Vostochno-Zakamsky region of Tatarstan is ...
The results of thermodynamic calculations for a water-rock system in the Upper Jurassic deposits of ...
AbstractThe present study aimed to identify the formation factors of the current hydrogeochemical ch...
Chemical composition and saturation degree of the Annenskiy thermal waters to minerals of water-bear...
The geochemical peculiarities of groundwater in Paleogene deposits in southeastern part of Western S...
The paper describes the calculation results revealing groundwater in equilibrium to carbonates and a...
A deep borehole (1001 m deep) was drilled in a granitic intrusion in Lavia in southwestern Finland i...
Abstract: The available hydrogeochemical data collected over the past four decades in Siberian Arcti...
© 2020 IOP Publishing Ltd. All rights reserved. Authigenic ore mineralization of the Jurassic terrig...
© 2019, International Multidisciplinary Scientific Geoconference. All rights received. Upper Jurassi...
Thermodynamic models of Essentuki and Nagutsky fields of Caucasian Mineral Waters deposits (KMW) are...
The paper considers groundwater composition fluctuation within technogenic zones based on evidence f...
The chemical composition of shallow groundwater in the granitic rock area (Tsukuba-Kaba area, centra...
The hydrogeochemical regionalisation of the Cretaceous aquifer system has been completed. Also, toge...
AbstractIn the central part of Western Siberia a study of the chemical composition of bog water was ...
© Copyright 2016.The zone of active water exchange of the Vostochno-Zakamsky region of Tatarstan is ...
The results of thermodynamic calculations for a water-rock system in the Upper Jurassic deposits of ...
AbstractThe present study aimed to identify the formation factors of the current hydrogeochemical ch...
Chemical composition and saturation degree of the Annenskiy thermal waters to minerals of water-bear...
The geochemical peculiarities of groundwater in Paleogene deposits in southeastern part of Western S...
The paper describes the calculation results revealing groundwater in equilibrium to carbonates and a...
A deep borehole (1001 m deep) was drilled in a granitic intrusion in Lavia in southwestern Finland i...
Abstract: The available hydrogeochemical data collected over the past four decades in Siberian Arcti...
© 2020 IOP Publishing Ltd. All rights reserved. Authigenic ore mineralization of the Jurassic terrig...
© 2019, International Multidisciplinary Scientific Geoconference. All rights received. Upper Jurassi...
Thermodynamic models of Essentuki and Nagutsky fields of Caucasian Mineral Waters deposits (KMW) are...
The paper considers groundwater composition fluctuation within technogenic zones based on evidence f...
The chemical composition of shallow groundwater in the granitic rock area (Tsukuba-Kaba area, centra...
The hydrogeochemical regionalisation of the Cretaceous aquifer system has been completed. Also, toge...
AbstractIn the central part of Western Siberia a study of the chemical composition of bog water was ...
© Copyright 2016.The zone of active water exchange of the Vostochno-Zakamsky region of Tatarstan is ...