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  • Baltic Sea  (1)
  • Bottle, Ruttner; Calculated; Cavity ring-down spectroscopy (CRDS), L2130-i, Picarro Inc.; Chara_Seen; Chara Lakes; Conductivity, electrical; DATE/TIME; DEPTH, water; Depth, water, bottom/maximum; Depth, water, top/minimum; Depth of Secchi Disk; Dreetzsee; Dreetzsee, Germany; Dunkelsee; Dunkelsee, Germany; Event label; Germany; Giesenschlagsee_Middle; Giesenschlagsee_North; Giesenschlagsee_South; Giesenschlagsee Middle, Germany; Giesenschlagsee North, Germany; Giesenschlagsee South, Germany; Glambecksee; Glambecksee, Germany; Gottssee; Gottssee, Germany; Gr_Bodensee; Gr_Gollinsee; Gr_Griebchensee; Gr_Kronsee; Gr_Petznicksee; Gr_Tietzen; Gr_Weisser_See; Großer Bodensee, Germany; Großer Gollinsee, Germany; Großer Griebchensee, Germany; Großer Kronsee, Germany; Großer Petznicksee, Germany; Großer Tietzen, Germany; Großer Weißer See, Germany; Hinbergsee; Hinbergsee, Germany; Kl_Peetzigsee; Kleiner Peetzigsee, Germany; Krueselinsee; Krüselinsee, Germany; lakes; Latitude of event; Longitude of event; Oxygen, dissolved; Oxygen saturation; pH; ponds; Rohrhalmgrund; Rohrhalmgrund, Germany; RWS; Sabinensee; Sabinensee, Germany; SD; Secchi disk; Temperature, water; Warnitzsee; Warnitzsee, Germany; Waschsee; Waschsee, Germany; water isotopes; WTW probe, hand-held; Wuckersee; Wuckersee, Germany; δ18O, water; δ18O, water, standard deviation; δ Deuterium, water; δ Deuterium, water, standard deviation  (1)
  • Zingst  (1)
  • 2020-2024  (2)
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  • 2020-2024  (2)
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  • 1
    Publication Date: 2023-01-27
    Description: River estuaries are characterized by mixing processes between freshwater discharge and marine water masses. Since the first are depleted in heavier stable isotopes compared with the marine realm, estuaries often show a linear correlation between salinity and water stable isotopes (δ18O and δ2H values). In this study, we evaluated spatial and seasonal isotope dynamics along three estuarine lagoon transects, located at the northern German Baltic Sea coast. The data show strong seasonality of isotope values, even at locations located furthest from the river mouths. They further reveal a positive and linear salinity‐isotope correlation in spring, but ‐in two of the three studied transects‐ hyperbolic and partially reverse correlations in summers. We conclude that additional hydrological processes partially overprint the two‐phase mixing correlation during summers: aside from the isotope seasonality of the riverine inflows, the shallow inner lagoons in the studied estuaries are influenced by evaporation processes. In contrast the estuarine outflow regions are under impact of significant salinity and isotope fluctuations of the Baltic Sea. Deciphering those processes is crucial for the understanding of water isotope and salinity dynamics. This is also of relevance in context of ecological studies, for example, when interpreting oxygen and hydrogen isotope data in aquatic organisms that depend on ambient estuarine waters.
    Description: Spatial and seasonal water isotope dynamics were evaluated along three estuarine lagoon transects at the German Baltic Sea coast. Data reveal a positive and linear salinity‐isotope correlation in spring, but partially reverse correlations in summers. The results show that evaporation processes in the shallow inner lagoons and varying Baltic Sea influence in the outer estuary regions are able to overprint the two‐phase mixing correlation between riverine and marine water masses.
    Description: Deutsche Forschungsgemeinschaft http://dx.doi.org/10.13039/501100001659
    Description: https://doi.org/10.1594/PANGAEA.937990
    Keywords: ddc:551 ; δ2H ; δ18O ; Baltic Sea ; bodden ; Rügen ; salinity ; Schlei ; Zingst
    Language: English
    Type: doc-type:article
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2024-04-23
    Description: Water isotopes (δ²H and δ¹⁸O) were analyzed in samples from a range of relatively small lakes and ponds in northeastern Germany. The sampled water bodies are not connected to major river systems but are either fed by groundwater or small creeks. Water chemical parameters were determined in-situ with a portable WTW-multiparameter probe. Water samples were collected in different seasons of the years 2020, 2022 and 2023. Here, composite samples were taken from the lake centers with a Ruttner Water Sampler in 2 m intervals from the lake surface to bottom. In some cases, only a surface sample was collected from 50 cm depth using a pipette. Samples were filtered and transferred into a measurement vial. Stable isotope analysis was conducted at IGB Berlin, using a Picarro L2130-i cavity ring-down spectrometer. Measurement uncertainty was quantified to 〈0.5 ‰ for δ²H and 〈0.2 ‰ for δ¹⁸O. The data give information about the seasonal and spatial stable isotope variability at the sampled lacustrine systems.
    Keywords: Bottle, Ruttner; Calculated; Cavity ring-down spectroscopy (CRDS), L2130-i, Picarro Inc.; Chara_Seen; Chara Lakes; Conductivity, electrical; DATE/TIME; DEPTH, water; Depth, water, bottom/maximum; Depth, water, top/minimum; Depth of Secchi Disk; Dreetzsee; Dreetzsee, Germany; Dunkelsee; Dunkelsee, Germany; Event label; Germany; Giesenschlagsee_Middle; Giesenschlagsee_North; Giesenschlagsee_South; Giesenschlagsee Middle, Germany; Giesenschlagsee North, Germany; Giesenschlagsee South, Germany; Glambecksee; Glambecksee, Germany; Gottssee; Gottssee, Germany; Gr_Bodensee; Gr_Gollinsee; Gr_Griebchensee; Gr_Kronsee; Gr_Petznicksee; Gr_Tietzen; Gr_Weisser_See; Großer Bodensee, Germany; Großer Gollinsee, Germany; Großer Griebchensee, Germany; Großer Kronsee, Germany; Großer Petznicksee, Germany; Großer Tietzen, Germany; Großer Weißer See, Germany; Hinbergsee; Hinbergsee, Germany; Kl_Peetzigsee; Kleiner Peetzigsee, Germany; Krueselinsee; Krüselinsee, Germany; lakes; Latitude of event; Longitude of event; Oxygen, dissolved; Oxygen saturation; pH; ponds; Rohrhalmgrund; Rohrhalmgrund, Germany; RWS; Sabinensee; Sabinensee, Germany; SD; Secchi disk; Temperature, water; Warnitzsee; Warnitzsee, Germany; Waschsee; Waschsee, Germany; water isotopes; WTW probe, hand-held; Wuckersee; Wuckersee, Germany; δ18O, water; δ18O, water, standard deviation; δ Deuterium, water; δ Deuterium, water, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 628 data points
    Location Call Number Expected Availability
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