Lánczos T., Milička J. & Pereszlényi M., 2011: Geochemické indikátory uzavretosti geologických štruktúr v Dunajskej panve; implikácie pre budovanie podzemných zásobníkov plynu. Acta Geologica Slovaca, 3, 1, 43–56.
Geochemické indikátory uzavretosti geologických štruktúr v Dunajskej panve; implikácie pre budovanie podzemných zásobníkov plynu
Geochemical indicators of hydrogeologically isolated structures in the Danube basin; implications for potential gas storage objects
Tomáš Lánczos1, Ján Milička1 & Miroslav Pereszlényi2
1Katedra geochémie, Prírodovedecká fakulta, Univerzita Komenského v Bratislave, Mlynská dolina G, 842 15 Bratislava; lanczos@ fns.uniba.sk
2EURO - GEOLOGIC, a.s. Tomášikova 223/26, 82101 Bratislava II – Ružinov; mperesz@egeo.sk
Abstract
One of the key conditions for underground gas storage (UGS) objects establishment is the presence of hydrogeologically isolated structures. These are mainly exhausted hydrocarbon deposits and aquifers in the Cenozoic fill and the basement of the Danube Basin. The geochemical indicators used to determine the aquifer isolation level of potential underground gas storage objects are based on the ratio of stagnant and dynamic water components. The most widely used indicator is the rHCO3/rCl molar ratio, assuming that the HCO3- concentration represents the dynamic origin of dissolved rock material by meteoric water and that the Cl- concentration is the stagnant marine component. To distinguish these two components of the water in the aquifers the rHCO3/rCl indicator was combined with other parameters, such as rCl/rSO4 and rCl/rBr molar ratios. As for more aquifers of the Danube Basin contain higher amounts of carbon-dioxide we attemptet to quantify the influence od the carbon dioxide on the water chemistry. The numerical model simulating rock-marine water interactions under different PCO2 temperature and ion-exchange conditions proved the rHCO3/rCl molar ratio increase caused higher carbon dioxide partial pressure for this purpose. Consequently under the conditions of higher partial carbon dioxide pressure the rHCO3/rCl ratio is indicating a lower isolation level of the structure. Taking in account signs of the higher carbon dioxide pressure based on the numerical model combined with the abovementioned geochemical indicators the most convenient aquifers for UGS establishment were identified within the Slovak part of the Danube Basin. These are located within Badenian sediments in the Trakovice and Sereď areas, due to the presence of hydrogeologically isolated structures buried at depth intervals of 800 to 1150 m below ground level. Other potential convertible aquifers are present in the Lower and Middle Badenian sediments in the Komjatice and Želiezovce Depressions, especially in the following localities: Modrany at 1145 to 1670 m below the surface, Vráble approximately up to 2110 m and Zlaté Moravce at 1364 to 1374 m below surface.
Key words: Danube Basin, isolation of hydrogeological structures, underground gas storage objects, geochemical indicators, aquifers, carbon dioxide
Manuskript doručený: 2010-11-23
Manuskript revidovaný: 2011-03-21
Informácie
Pripravované články
AGEOS 2020, roč. 12, č. 2
- Biskupič R.: A new evidence of Vexillum (Gastropoda: Costellariidae) from the middle Miocene (Serravallian) of the Vienna Basin (Slovakia)
- Sobocký T., Ondrejka M., Uher P., Mikuš T. & Konečný P.: Monazite-group minerals and xenotime-(Y) in A-type granitic rocks: chemical composition and in-situ Th–U–total Pb EPMA dating (Velence Hills, Hungary)
- Krejčí O., Krejčí V. & Kašperáková D.: Engineering geological limits of the urban development of the Brno city
- Filek T. & Joniak P.: Small mammal assemblage from lacustrine Late Pleistocene deposits near Ovčiarsko (Northern Slovakia)
- Lačný A., Vojtko R., Velšmid M., Dušeková L. & Papčo J.: Geological control of the origin of dolines in the Plavecký Karst (Malé Karpaty Mts., Slovakia)
- Adamcová R., Kondrcová M., Ottner F. & Wriessnig K.: Adobe material of the Temple of the Sun, Pachacamac, Peru: Engineering geological classification and sustainability assessment as a challenges
- Hodasová K., Krčmář D. & Zatlakovič M.: Assessment of the influence of a building upon groundwater temperature pattern using numerical modelling
Archív
- AGEOS 2020, roč. 12, č. 2
- AGEOS 2020, roč. 12, č. 1
- AGEOS 2019, roč. 11, č. 2
- AGEOS 2019, roč. 11, č. 1
- AGEOS 2018, roč. 10, č. 2
- AGEOS 2018, roč. 10, č. 1
- AGEOS 2017, roč. 9, č. 2
- AGEOS 2017, roč. 9, č. 1
- AGEOS 2016, roč. 8, č. 2
- AGEOS 2016, roč. 8, č. 1
- AGEOS 2015, roč. 7, č. 2
- AGEOS 2015, roč. 7, č. 1
- AGEOS 2014, roč. 6, č. 2
- AGEOS 2014, roč. 6, č. 1
- AGEOS 2013, roč. 5, č. 2
- AGEOS 2013, roč. 5, č. 1
- AGEOS 2012, monografia
- AGEOS 2012, roč. 4, č. 2
- AGEOS 2012, roč. 4, č. 1
- AGEOS 2011, roč. 3, č. 2
- AGEOS 2011, roč. 3, č. 1
- AGEOS 2010, roč. 2, č. 2
- AGEOS 2010, roč. 2, č. 1
- AGEOS 2009, roč. 1, č. 2
- AGEOS 2009, roč. 1, č. 1
- AGEOS 2009, monografia
Návštevnosť
- Spolu: 44955
- Tento rok: 450
- Tento mesiac: 450
- Tento týždeň: 22