Lake Velence is a shallow soda lake whose water level and water quality show a severely deteriorating tendency in recent years. Until recently, the groundwater component in the lake’s water budget has not been taken into consideration. To integrate the lake into the groundwater flow system at the regional scale, methods of “basin hydraulics” were applied. In addition, 17 water samples were collected for δ2 H and δ18 O, and for ΣU,226 Ra and222 Rn activity measurements to use these parameters as environmental tracers of groundwater contribution. Groundwater mapping revealed that groundwater recharges in Velence Hills and the local elevations south of the lake, whereas discharge occurs by the lake’s shoreline and along surface watercourses. The results indicated that Lake Velence is the discharge point of local groundwater flow systems known to be more sensitive to climate changes and anthropogenic activities (e.g., contamination, overexploitation). Groundwater and lake water have similar uranium activity concentrations serving as another sign of groundwater inflow into the lake. Therefore, it is necessary to consider both the groundwater component in the lake’s water management and its vulnerability regarding local and short-term changes in the catchment area.

Integration of a shallow soda lake into the groundwater flow system by using hydraulic evaluation and environmental tracers / P. Baják, K.H.. - In: WATER. - ISSN 2073-4441. - 14:6(2022 Mar 18), pp. 951.1-951.20. [10.3390/w14060951]

Integration of a shallow soda lake into the groundwater flow system by using hydraulic evaluation and environmental tracers

P. Baják
Primo
;
2022

Abstract

Lake Velence is a shallow soda lake whose water level and water quality show a severely deteriorating tendency in recent years. Until recently, the groundwater component in the lake’s water budget has not been taken into consideration. To integrate the lake into the groundwater flow system at the regional scale, methods of “basin hydraulics” were applied. In addition, 17 water samples were collected for δ2 H and δ18 O, and for ΣU,226 Ra and222 Rn activity measurements to use these parameters as environmental tracers of groundwater contribution. Groundwater mapping revealed that groundwater recharges in Velence Hills and the local elevations south of the lake, whereas discharge occurs by the lake’s shoreline and along surface watercourses. The results indicated that Lake Velence is the discharge point of local groundwater flow systems known to be more sensitive to climate changes and anthropogenic activities (e.g., contamination, overexploitation). Groundwater and lake water have similar uranium activity concentrations serving as another sign of groundwater inflow into the lake. Therefore, it is necessary to consider both the groundwater component in the lake’s water management and its vulnerability regarding local and short-term changes in the catchment area.
English
soda lake; climate change; water budget; groundwater; basin hydraulics; stable isotopes; uranium
Settore GEOS-03/B - Geologia applicata
Articolo
Esperti anonimi
Pubblicazione scientifica
Goal 14: Life below water
Goal 3: Good health and well-being
Goal 6: Clean water and sanitation
   Excellency Network Building for Comprehensive Research and Assessment of Geofluids (ENeRAG)
   ENeRAG
   EUROPEAN COMMISSION
   H2020
   810980
18-mar-2022
MDPI
14
6
951
1
20
20
Pubblicato
Periodico con rilevanza internazionale
https://www.mdpi.com/2073-4441/14/6/951
scopus
Aderisco
info:eu-repo/semantics/article
Integration of a shallow soda lake into the groundwater flow system by using hydraulic evaluation and environmental tracers / P. Baják, K.H.. - In: WATER. - ISSN 2073-4441. - 14:6(2022 Mar 18), pp. 951.1-951.20. [10.3390/w14060951]
open
Prodotti della ricerca::01 - Articolo su periodico
10
262
Article (author)
Periodico con Impact Factor
P. Baják, K. Hegedűs-Csondor, M. Tiljander, K. Korkka-Niemi, H. Surbeck, B. Izsák, M. Vargha, Á. Horváth, T. Pándics, A. Erőss...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1258577
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