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dc.contributor.authorKanduč, Tjaša
dc.contributor.authorGeršl, Milan
dc.contributor.authorGeršlová, Eva
dc.contributor.authorMcIntosh, Jennifer
dc.date.accessioned2023-08-10T00:03:11Z
dc.date.available2023-08-10T00:03:11Z
dc.date.issued2023
dc.identifier.issn1380-6165 Sherpa/RoMEO, JCR
dc.identifier.urihttps://repozitar.mendelu.cz/xmlui/handle/20.500.12698/1747
dc.description.abstractThis study investigated weathering and hydrobiogeochemical processes in a silicate dominated watershed (Svratka river) in the Czech Republic in comparison with nearby carbonate dominated catchments. Elemental and isotopic analysis of river waters, particulates and sediments provided a more holistic view of weathering contributions, anthropogenic contamination, biological activity and evasion or sinks of CO2 to the atmosphere. In water samples, we determined total alkalinity after Gran 1974, and cations and anions were determined with inductively coupled plasma-optical emission spectrometer and ion chromatograph. δ13CDIC in water samples was determined with isotope ratio mass spectrometer. pCO2 and saturation indexes of calcite and dolomite were calculated with PHREEQC speciation program. Evasion fuxes were calculated after Broecker, 1974. Isotopic composition of carbon and nitrogen in particulate matter and sediments were determined with isotope ratio mass spectrometer. Mineral composition of sediments was determined with XRD method and elements with XRF method. Further enrichment factors of elements were calculated. The Svratka river, which is the major tributary of the Dyje river, is dominated by Ca2+ > Na+ > Mg2+ > K+ and HCO3 MINUS SIGN (as total alkalinity). Partial pressure (pCO2) concentrations range from close to 0-572-fold of atmospheric pressure. Isotopic composition of carbon in dissolved inorganic carbon (δ13CDIC) value ranged fromMINUS SIGN 13.3 toMINUS SIGN 8.0%o refecting degradation of organic matter and exchange with the atmosphere. Bicarbonate weathering intensity for the Svratka river at its mouth is 11.8 mol/(lDOT OPERATOR  km2 DOT OPERATOR  s), more on par with silicate terrains and lower than nearby carbonate watersheds. Isotopic composition of carbon (δ13C) and isotopic composition of nitrogen (δ15N) values of river sediment refect soil and temperate plant (C3 plant) values, while higher δ15N values could be attributed to application of organic fertilizers in lower reaches. The river sediments, which came from weathering of crystalline rocks, are dominated by silt size, geochemically less mature quartz, feldspar and muscovite particles. All the stream sediments examined revealed slightly increased amounts of Zn, Cu and Pb. However, using Al as the normalization element to calculate enrichment factors, Zn, Cu and Pb are only elevated downstream, related to industrial contamination. This study is important for local and global level since it deals with contribution of weathering rates and contribution of CO2 to the atmosphere in silicate watershed.en
dc.format145-171
dc.publisherSpringer Switzerland
dc.relation.ispartofAquatic Geochemistry
dc.relation.urihttps://doi.org/10.1007/s10498-023-09414-3
dc.rightsCC BY 4.0
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subjectRiver systemsen
dc.subjectSilicate catchmenten
dc.subjectStable isotopesen
dc.subjectMineral and elemental compositionen
dc.subjectWeathering intensityen
dc.subjectSvratka riveren
dc.titleTemporal and Seasonal Variations of Silicate Svratka River and Sediment Characterization, Czech Republic: Geochemical and Stable Isotopic Approachen
dc.typeJ_ČLÁNEK
dc.date.updated2023-08-10T00:03:10Z
dc.description.versionOA
local.identifier.doi10.1007/s10498-023-09414-3
local.identifier.scopus2-s2.0-85159657946
local.identifier.wos000990963700001
local.number3
local.volume29
local.identifier.obd43924947
local.identifier.e-issn1573-1421
dc.identifier.orcidGeršl, Milan 0000-0002-7721-3309
local.contributor.affiliationAF


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