Temporal characterization of the isotope hydrobiogeochemistry composition of the Warnow River
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PANGAEA
2024
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| _version_ | 1867170124548538368 |
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| author | Ehlert von Ahn, Cátia Milene Böttcher, Michael Ernst Westphal, Julia Rach, Benjamin Jenner, Anna Schmiedinger, Iris Saban, Rhodelyn Nantke, Carla K M |
| author_facet | Ehlert von Ahn, Cátia Milene Böttcher, Michael Ernst Westphal, Julia Rach, Benjamin Jenner, Anna Schmiedinger, Iris Saban, Rhodelyn Nantke, Carla K M |
| collection | Datos científicos de ciencias marinas y ambientales |
| contents | A temporal study of the isotopic hidrobiogeochemical composition of the Warnow River, which drains into the southern Baltic Sea, has been carried out. The sampling covered five years (2017-2021) and it was carried out at a site just before the river reaches the estuary. Surface water was sampled by using a telescopic rod and a plastic beaker and preserved for further analysis. Major and trace elements and selected nutrients were measured using an ICP-OES (iCAP, 7400, Duo Thermo Fischer Scientific). Concentrations of NH4 and NO3 were measured using a QuAAtro autoanalyzer system. Dissolved inorganic carbon (DIC), and δ13CDIC were measured using an isotope gas mass spectrometer (MAT 253) coupled to a Gasbench II. Dissolved organic carbon (DOC) and δ13CDOC using an Elementar iso TOC cube with Thermo Electron MAT 253 mass spectrometry, δ18OH2O, and δ2HH2O using a CRDS system (laser cavity-ring-down-spectroscopy, Picarro L2140- I). δ34S and δ18O of SO4 using a gas-isotope mass spectrometer MAT253 (Thermo-Finnigan) with EA-Isolink (Thermo-Fisher-Scientific). 224Ra using a Radium Delayed Coincidence Counters (RaDeCC). |
| format | Dataset Open Access |
| id | pangaea_https___doi_org_10_1594_PANGAEA_968586 |
| institution | PANGAEA |
| language | en |
| publishDate | 2024 |
| publisher | PANGAEA |
| record_format | pangaea |
| spellingShingle | Temporal characterization of the isotope hydrobiogeochemistry composition of the Warnow River Ehlert von Ahn, Cátia Milene Böttcher, Michael Ernst Westphal, Julia Rach, Benjamin Jenner, Anna Schmiedinger, Iris Saban, Rhodelyn Nantke, Carla K M Ammonium; Barium; Calcium; Carbon, inorganic, dissolved; Carbon, organic, dissolved; Cavity Ring-Down Spectrometer (CRDS), PICARRO, L2140i; Conductivity, electrolytic; Date/Time of event; DEPTH, water; Event label; Gas Bench System coupled to an MAT 253 (Thermo Fisher Scientific, USA); Inductively coupled plasma–optical emission spectrometer (ICP-OES), Thermo Fisher Scientific Inc., iCAP 7400; Iron; Latitude of event; Lithium; Longitude of event; Lowland catchment; Magnesium; Managed River; Manganese; Multiisotopes; Nitrate; Oxygen; pH, NBS scale; Phosphorus; Potassium; Radium-224 excess; Radium delayed coincidence counter, Scientific Computer Instrument; See description in dataset comment; Segmented continuous flow analyzer, SEAL Analytical, QuAAtro; Silicon; Sodium; southern Baltic Sea; Station label; Strontium; Sulfate; Telescopic rod with plastic beaker; Temperature, water; Warnow River, Mecklenburg-Vorpommern, Germany; WR_010617; WR_021117; WR_040517; WR_050420; WR_051017; WR_060417; WR_060719; WR_060921; WR_061217; WR_070119; WR_070917; WR_071119; WR_080617; WR_090919; WR_110119; WR_110517; WR_120319; WR_130417; WR_130717; WR_140721; WR_150119; WR_150617; WR_150818; WR_150917; WR_151117; WR_160317; WR_160718; WR_160821; WR_170817; WR_170920; WR_180517; WR_180822; WR_180918; WR_181017; WR_181121; WR_190618; WR_191219; WR_200120; WR_200220; WR_200417; WR_200717; WR_201221; WR_210421; WR_211210; WR_211218; WR_220221; WR_220617; WR_221117; WR_230119; WR_23081; WR_240317; WR_241018; WR_250817; WR_251017; WR_251120; WR_260517; WR_261118; WR_270319; WR_270417; WR_280219; WR_280917; WR_281019; WR_281020; WR_281021; WR_290121; WR_290321; WR_300317; WR_300419; WR_310521; WR_310817; δ13C, dissolved inorganic carbon; δ13C, dissolved organic carbon; δ18O, sulfate; δ18O, water; δ34S, sulfate; δ Deuterium, water A temporal study of the isotopic hidrobiogeochemical composition of the Warnow River, which drains into the southern Baltic Sea, has been carried out. The sampling covered five years (2017-2021) and it was carried out at a site just before the river reaches the estuary. Surface water was sampled by using a telescopic rod and a plastic beaker and preserved for further analysis. Major and trace elements and selected nutrients were measured using an ICP-OES (iCAP, 7400, Duo Thermo Fischer Scientific). Concentrations of NH4 and NO3 were measured using a QuAAtro autoanalyzer system. Dissolved inorganic carbon (DIC), and δ13CDIC were measured using an isotope gas mass spectrometer (MAT 253) coupled to a Gasbench II. Dissolved organic carbon (DOC) and δ13CDOC using an Elementar iso TOC cube with Thermo Electron MAT 253 mass spectrometry, δ18OH2O, and δ2HH2O using a CRDS system (laser cavity-ring-down-spectroscopy, Picarro L2140- I). δ34S and δ18O of SO4 using a gas-isotope mass spectrometer MAT253 (Thermo-Finnigan) with EA-Isolink (Thermo-Fisher-Scientific). 224Ra using a Radium Delayed Coincidence Counters (RaDeCC). |
| title | Temporal characterization of the isotope hydrobiogeochemistry composition of the Warnow River |
| topic | Ammonium; Barium; Calcium; Carbon, inorganic, dissolved; Carbon, organic, dissolved; Cavity Ring-Down Spectrometer (CRDS), PICARRO, L2140i; Conductivity, electrolytic; Date/Time of event; DEPTH, water; Event label; Gas Bench System coupled to an MAT 253 (Thermo Fisher Scientific, USA); Inductively coupled plasma–optical emission spectrometer (ICP-OES), Thermo Fisher Scientific Inc., iCAP 7400; Iron; Latitude of event; Lithium; Longitude of event; Lowland catchment; Magnesium; Managed River; Manganese; Multiisotopes; Nitrate; Oxygen; pH, NBS scale; Phosphorus; Potassium; Radium-224 excess; Radium delayed coincidence counter, Scientific Computer Instrument; See description in dataset comment; Segmented continuous flow analyzer, SEAL Analytical, QuAAtro; Silicon; Sodium; southern Baltic Sea; Station label; Strontium; Sulfate; Telescopic rod with plastic beaker; Temperature, water; Warnow River, Mecklenburg-Vorpommern, Germany; WR_010617; WR_021117; WR_040517; WR_050420; WR_051017; WR_060417; WR_060719; WR_060921; WR_061217; WR_070119; WR_070917; WR_071119; WR_080617; WR_090919; WR_110119; WR_110517; WR_120319; WR_130417; WR_130717; WR_140721; WR_150119; WR_150617; WR_150818; WR_150917; WR_151117; WR_160317; WR_160718; WR_160821; WR_170817; WR_170920; WR_180517; WR_180822; WR_180918; WR_181017; WR_181121; WR_190618; WR_191219; WR_200120; WR_200220; WR_200417; WR_200717; WR_201221; WR_210421; WR_211210; WR_211218; WR_220221; WR_220617; WR_221117; WR_230119; WR_23081; WR_240317; WR_241018; WR_250817; WR_251017; WR_251120; WR_260517; WR_261118; WR_270319; WR_270417; WR_280219; WR_280917; WR_281019; WR_281020; WR_281021; WR_290121; WR_290321; WR_300317; WR_300419; WR_310521; WR_310817; δ13C, dissolved inorganic carbon; δ13C, dissolved organic carbon; δ18O, sulfate; δ18O, water; δ34S, sulfate; δ Deuterium, water |
| url | https://doi.org/10.1594/PANGAEA.968586 |