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Zahajská, Petra; Frings, Patrick J; Gaspard, François; Opfergelt, Sophie; Stadmark, Johanna; Fritz, Sherilyn C; Cartier, Rosine; Conley, Daniel J (2024): Water samples analysis of Yellowstone Lake, USA [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.966558, In: Zahajská, P et al. (2024): The Holocene silicon biogeochemistry of Yellowstone Lake, USA [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.966605

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Published: 2024-03-19DOI registered: 2024-04-17

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Keyword(s):
Diatom; germanium; Holocene; Lake; sediment; Silicon isotopes; Yellowstone
Funding:
Swedish Research Council (VR), grant/award no. 1515377: HD-YLAKE
Coverage:
Median Latitude: 44.499330 * Median Longitude: -110.424326 * South-bound Latitude: 44.400390 * West-bound Longitude: -110.586890 * North-bound Latitude: 44.566640 * East-bound Longitude: -110.273710
Date/Time Start: 2016-08-16T00:00:00 * Date/Time End: 2018-08-30T00:00:00
Event(s):
Arnica_Creek_2  * Latitude: 44.492900 * Longitude: -110.550900 * Date/Time: 2017-06-22T00:00:00 * Location: USA
Arnica_Creek_3  * Latitude: 44.475400 * Longitude: -110.535900 * Date/Time: 2018-08-28T00:00:00 * Method/Device: Water sample (WS)
Big_Thumb_Creek_2  * Latitude: 44.400390 * Longitude: -110.586890 * Date/Time: 2017-06-22T00:00:00 * Location: USA
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventZahajská, Petra
Latitude of eventLatitudeZahajská, Petra
Longitude of eventLongitudeZahajská, Petra
Date/Time of eventDate/TimeZahajská, Petra
LocationLocationZahajská, Petra
Silica, dissolvedDSiµmol/lZahajská, Petrasee commentMolybdate-blue silicon measurements using Wet Chemistry Analyser (Spectrophotometer), SmartChem (KPM Analytics), SmartChem 200
Silica, dissolved, standard deviationDSiO2 std dev±Zahajská, PetraCalculated1SD in µmol/l
Silica, dissolved, standard deviationDSiO2 std dev±Zahajská, PetraCalculated1SD in %
δ30Siδ30Si‰ NBSZahajská, PetraMulti-Collector Inductively Coupled Plasma Mass Spectrometer (MC-ICP-MS), Nu Instruments; Thermo Fisher, NuPlasma II HR/Neptune
10 δ30Si, standard deviationδ30Si std dev±Zahajská, PetraMulti-Collector Inductively Coupled Plasma Mass Spectrometer (MC-ICP-MS), Nu Instruments; Thermo Fisher, NuPlasma II HR/Neptune1 SD
11 Number of measurementsn#Zahajská, Petra
12 Germanium/Silicon ratioGe/Siµmol/molZahajská, Petrasee commentInductively Coupled Plasma Optical Emission Spectrometer, Thermo Fisher, iCAP 6500 ICP-OES and Inductively Coupled Plasma Mass Spectrometer, Thermo Fisher Scientific, iCAP Q ICP-MS
13 Germanium/Silicon ratio, standard deviationGe/Si std dev±Zahajská, Petrasee commentInductively Coupled Plasma Optical Emission Spectrometer, Thermo Fisher, iCAP 6500 ICP-OES and Inductively Coupled Plasma Mass Spectrometer, Thermo Fisher Scientific, iCAP Q ICP-MS
14 RegimeRegimeZahajská, Petra
15 Area/localityAreaZahajská, Petra
16 Sample code/labelSample labelZahajská, PetraVent Name
17 Sample code/labelSample labelZahajská, PetraAlternative vent Name
18 Analytical methodAnalyt methodZahajská, PetraDsi method
19 LaboratoryLabZahajská, PetraDsi laboratory
20 LaboratoryLabZahajská, PetraSi isotopes Laboratory
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
500 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Event

Latitude

Longitude

Date/Time

Location

DSi [µmol/l]
(Molybdate-blue silicon measur...)

DSiO2 std dev [±]
(1SD in µmol/l, Calculated)

DSiO2 std dev [±]
(1SD in %, Calculated)

δ30Si [‰ NBS]
(Multi-Collector Inductively C...)
10 
δ30Si std dev [±]
(1 SD, Multi-Collector Inducti...)
11 
n [#]
12 
Ge/Si [µmol/mol]
(Inductively Coupled Plasma Op...)
13 
Ge/Si std dev [±]
(Inductively Coupled Plasma Op...)
14 
Regime
15 
Area
16 
Sample label
(Vent Name)
17 
Sample label
(Alternative vent Name)
18 
Analyt method
(Dsi method)
19 
Lab
(Dsi laboratory)
20 
Lab
(Si isotopes Laboratory)
Arnica_Creek_2 44.4929-110.55092017-06-22Arnica creek657.08117.670.370.0515.670.1high-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Big_Thumb_Creek_2 44.4004-110.58692017-06-22Big Thumb creek216.8642.110.860.0210.880.1high-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Bridge_Creek_2 44.5319-110.49232017-06-22Bridge creek741.13104.190.710.0712.080.1high-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Little_Thumb_Creek_2 44.4547-110.58032017-06-22Little thumb creek135.3122.801.090.1150.980.1high-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
Pelican_Creek_2 44.5618-110.35982017-06-22Pelican creek458.5215.810.780.0713.120.1high-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Sedge_Creek_2 44.5452-110.27372017-06-22Sedge creek307.237.490.770.0516.020.1high-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Yellowstone_River_4 44.5666-110.38122017-06-22Yellowstone River outlet208.044.661.730.08318.210.1high-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
Arnica_Creek_3 44.4754-110.53592018-08-28Arnica creek968.3135.450.400.0414.580.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Big_Thumb_Creek_3 44.4048-110.56742018-08-30Big Thumb creek1675.4861.581.190.0317.040.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Bridge_Creek_3 44.5268-110.44842018-08-28Bridge creek1530.3554.920.480.0112.640.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Little_thumb_Creek_3 44.4366-110.57962018-08-28Little thumb creek549.5619.470.920.0641.470.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
Pelican_Creek_3 44.5606-110.35252018-08-28Pelican creek1057.5118.311.170.0618.950.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Sedge_Creek_3 44.5239-110.27862018-08-28Sedge creek584.8433.451.050.05111.350.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Yellowstone_River_1 44.5666-110.38122016-09-21Yellowstone River outlet194.892.502.050.06420.130.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
Yellowstone_River_144.5666-110.38122016-09-21Yellowstone River outlet dupl.194.892.502.170.03120.130.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Yellowstone_River_2 44.5666-110.38122016-09-24Yellowstone River outlet193.399.491.890.091023.290.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
Yellowstone_River_244.5666-110.38122016-09-24Yellowstone River outlet dupl.193.399.492.010.09223.290.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (Neptune) at Université catholique Louvain-la-Neuve, Belgium
Yellowstone_River_3 44.5666-110.38122016-10-09Yellowstone River outlet214.7031.621.450.09413.600.1low-flowYellowstone Lake tributariesSmartChemConcentration measured by molybdate-blue spectrophotometry AMS SmartChem 200, Lund University, SwedenSamples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL18F06 44.4163-110.52532018-08-07YL18F062597.35<10-0.320.053West Thumb vent field20180807-6OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL18F12 44.4164-110.52502018-08-10YL18F124595.38<10-0.360.083West Thumb vent field20180810-1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL18F1244.4164-110.52502018-08-10YL18F124595.38<10-0.320.055West Thumb vent field20180810-1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL18F1244.4164-110.52502018-08-10YL18F124595.38<10-0.400.053West Thumb vent field20180810-1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL18F13 44.4164-110.52502018-08-10YL18F134495.52<100.250.082West Thumb vent field20180810-1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL18F1344.4164-110.52502018-08-10YL18F134495.52<100.210.013West Thumb vent field20180810-1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL18F1344.4164-110.52502018-08-10YL18F13 dupl4495.52<100.240.085West Thumb vent field20180810-1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL18F14 44.4164-110.52502018-08-10YL18F142697.21<10-0.150.063West Thumb vent field20180807-12OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL16F06 44.5108-110.35662016-08-16YL16F06539.41<100.690.08310.870.1Deep Hole vent field20160816-2SI-VF-7OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL16F0644.5108-110.35662016-08-16YL16F06539.41<100.620.14310.870.1Deep Hole vent field20160816-2SI-VF-7OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL16F07 44.5107-110.35652016-08-16YL16F07229.84<100.970.15325.540.1Deep Hole vent field20160816-8SI-VF-8OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL16F10 44.5108-110.35662016-08-17YL16F10389.62<100.900.08311.200.1Deep Hole vent field20160817-3SI-VF-10OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL16F12 44.5167-110.35662016-08-17YL16F12449.53<100.480.03312.740.1Deep Hole vent field20160817-6SI-VF-12OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL16F1244.5167-110.35662016-08-17YL16F12 dupl449.53<100.490.08512.740.1Deep Hole vent field20160817-6SI-VF-12OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL16F14 44.5190-110.35662016-08-19YL16F14539.41<100.440.08314.610.1Deep Hole vent fieldVent 1SI-VF-15OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured by MC-ICP-MS (NuPlasma II) at Vegacenter, NRM, Stockholm, Sweden
YL16F1444.5190-110.35662016-08-19YL16F14 dupl539.41<100.410.01214.610.1Deep Hole vent fieldVent 1SI-VF-15OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL17F01 44.5107-110.35662017-08-10YL17F01419.58<100.060.093Deep Hole vent fieldVent 1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL17F02 44.5107-110.35662017-08-10YL17F02409.59<100.110.232Deep Hole vent fieldVent 1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL17F03 44.5107-110.35662017-08-10YL17F03429.56<100.370.143Deep Hole vent field20170810-5OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL17F08 44.5107-110.35662017-08-13YL17F08269.79<101.100.093Deep Hole vent fieldVent 1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL18F02 44.5107-110.35662018-08-04YL18F02419.58<100.140.103Deep Hole vent fieldVent 1OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany
YL18F04 44.5107-110.35662018-08-04YL18F04279.77<100.840.043Deep Hole vent fieldVent 2OESConcentrations measured by ICP-OES (Thermo Scientific iCAP 6500 duo) at the University of Minnesota (UMN) Department of Earth Sciences (Fowler et al. 2019a,b)Samples were measured on MC-ICP-MS (Neptune) at GFZ, Potsdam, Germany