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Spero, Howard J; Bijma, Jelle; Lea, David W; Bemis, E B (1997): Seawater carbonate chemistry and carbon and oxygen isotopes during experiments with planktonic foraminifera Orbulina universa and Globigerina bulloides, 1997 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.721923, Supplement to: Spero, HJ et al. (1997): Effect of seawater carbonate concentration on foraminiferal carbon and oxygen isotopes. Nature, 390(6659), 497-500, https://doi.org/10.1038/37333

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Abstract:
Stable oxygen and carbon isotope measurements on biogenic calcite and aragonite have become standard tools for reconstructing past oceanographic and climatic change. In aquatic organisms, 18O/16O ratios in the shell carbonate are a function of the ratio in the sea water and the calcification temperature (Epstein et al., 1953). In contrast, 13C/12C ratios are controlled by the ratio of dissolved inorganic carbon in sea water and physiological processes such as respiration and symbiont photosynthesis (Spero et al., 1991, doi:10.1029/91PA02022). These geochemical proxies have been used with analyses of foraminifera shells to reconstruct global ice volumes (Shackleton and Opdyke, 1973, doi:10.1016/0033-5894(73)90052-5), surface and deep ocean temperatures (Broecker, 1986, doi:10.1016/0033-5894(86)90087-6; Labeyrie et al., 1987, doi:10.1038/327477a0), ocean circulation changes (Duplessy et al., 1988, doi:10.1029/PA003i003p00343) and glacial-interglacial exchange between the terrestrial and oceanic carbon pools (Sackleton, 1977). Here, we report experimental measurements on living symbiotic and non-symbiotic plankton foraminifera (Orbulina universa and Globigerina bulloides respectively) showing that the 13C/12C and 18O/16O ratios of the calcite shells decrease with increasing seawater [CO3 2-]. Because glacial-period oceans had higher pH and [CO3 2-] than today (Sanyal et al., 1995, doi:10.1038/373234a0), these new relationships confound the standard interpretation of glacial foraminiferal stable-isotope data. In particular, the hypothesis that the glacial-interglacial shift in the 13C/12C ratio was due to a transfer of terrestrial carbon into the ocean(Shackleton ,1977) can be explained alternatively by an increase in ocean alkalinity (Lea et al., 1996). A carbonate-concentration effect could also help explain some of the extreme stable-isotope variations during the Proterozoic and Phanerozoic aeons (Kaufman et al., 1993, doi:10.1016/0012-821X(93)90254-7).
Keyword(s):
Biomass/Abundance/Elemental composition; Bottles or small containers/Aquaria (<20 L); Chromista; Coast and continental shelf; Foraminifera; Globigerina bulloides; Heterotrophic prokaryotes; Laboratory experiment; North Pacific; Orbulina universa; Pelagos; Single species; Temperate
Funding:
Seventh Framework Programme (FP7), grant/award no. 211384: European Project on Ocean Acidification
Sixth Framework Programme (FP6), grant/award no. 511106: European network of excellence for Ocean Ecosystems Analysis
Event(s):
Spero_etal_97 * Method/Device: Experiment (EXP)
Comment:
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Lavigne and Gattuso, 2011) was used to compute a complete and consistent set of carbonate system variables, as described by Nisumaa et al. (2010). In this dataset the original values were archived in addition with the recalculated parameters (see related PI).
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Experimental treatmentExp treatSpero, Howard J
Sample IDSample IDSpero, Howard J
SalinitySalSpero, Howard J
Temperature, waterTemp°CSpero, Howard J
Carbonate system computation flagCSC flagNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
pHpHSpero, Howard JTitration potentiometricNBS scale
pHpHNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)Total scale
Alkalinity, totalATµmol/kgSpero, Howard JTitration potentiometric
Carbon, inorganic, dissolvedDICµmol/kgSpero, Howard JCalculated
10 Carbon, inorganic, dissolvedDICµmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
11 Carbonate ion[CO3]2-µmol/kgSpero, Howard JCalculated
12 Carbon dioxideCO2µmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
13 Bicarbonate ion[HCO3]-µmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
14 Carbonate ion[CO3]2-µmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
15 Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
16 Fugacity of carbon dioxide (water) at sea surface temperature (wet air)fCO2water_SST_wetµatmNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
17 Aragonite saturation stateOmega ArgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
18 Calcite saturation stateOmega CalNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
19 Foraminifera, planktic δ13CForam plankt δ13C‰ PDBSpero, Howard JIsotope ratio mass spectrometry
20 Foraminifera, planktic δ18OForam plankt δ18O‰ PDBSpero, Howard JIsotope ratio mass spectrometry
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
1060 data points

Data

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


Exp treat

Sample ID

Sal

Temp [°C]

CSC flag
(Calculated using seacarb afte...)

pH
(NBS scale, Titration potentio...)

pH
(Total scale, Calculated using...)

AT [µmol/kg]
(Titration potentiometric)

DIC [µmol/kg]
(Calculated)
10 
DIC [µmol/kg]
(Calculated using seacarb afte...)
11 
[CO3]2- [µmol/kg]
(Calculated)
12 
CO2 [µmol/kg]
(Calculated using seacarb afte...)
13 
[HCO3]- [µmol/kg]
(Calculated using seacarb afte...)
14 
[CO3]2- [µmol/kg]
(Calculated using seacarb afte...)
15 
pCO2water_SST_wet [µatm]
(Calculated using seacarb afte...)
16 
fCO2water_SST_wet [µatm]
(Calculated using seacarb afte...)
17 
Omega Arg
(Calculated using seacarb afte...)
18 
Omega Cal
(Calculated using seacarb afte...)
19 
Foram plankt δ13C [‰ PDB]
(Isotope ratio mass spectrometry)
20 
Foram plankt δ18O [‰ PDB]
(Isotope ratio mass spectrometry)
Constant alkalinity Dark groupBB 3033.222157.767.63278226942690.39945.392544.52100.401469.511464.721.592.44-1.573.11
Constant alkalinity Dark groupJH 1333.222157.837.70283427162711.811638.772554.57118.461255.271251.171.872.88-1.662.17
Constant alkalinity Dark groupBB 29 abmient33.222158.168.03218419461940.617112.451754.24173.91403.22401.902.754.22-1.652.40
Constant alkalinity Dark groupBB 22 ambient33.222158.188.05224519921986.418312.131788.61185.66392.64391.362.944.51-1.891.86
Constant alkalinity Dark groupJH 833.222158.198.06289425832576.724215.342315.39245.97496.65495.033.895.97-1.851.90
Constant alkalinity Dark groupJH 2733.222158.298.16286924932484.828711.482181.55291.77371.67370.464.627.09-2.011.62
Constant alkalinity Dark groupJH 733.222158.298.16287925022493.728811.522189.29292.89372.89371.674.637.11-2.022.05
Constant alkalinity Dark groupJH 633.222158.448.31252220772067.03236.461733.13327.41209.05208.365.187.95-2.031.64
Constant alkalinity Dark groupJH 2633.222158.508.37287523332321.04086.171902.16412.67199.79199.136.5310.02-2.131.20
Constant alkalinity Dark groupBS4433.222158.638.50265920402026.04543.761564.45457.79121.83121.437.2411.12-2.260.88
Constant alkalinity Dark groupBS2833.222158.658.52267820392023.74703.551546.37473.78115.01114.637.4911.51-2.300.39
Constant alkalinity Dark groupJH 533.222158.638.50281221662151.04814.001660.98486.02129.35128.927.6911.81-2.340.66
Constant alkalinity Dark groupBS633.222158.828.69292220762054.56372.191412.20640.1070.9970.7610.1315.55-2.61-0.91
Constant alkalinity High lightBB 1033.222157.407.27289729502946.147113.812784.3547.943684.653672.620.761.16-1.543.77
Constant alkalinity High lightBB 633.222157.487.35292229432939.05794.722786.5857.703066.663056.650.911.40-1.763.90
Constant alkalinity High lightBB 333.222157.547.41291629132909.36481.782761.8765.642647.862639.211.041.59-1.753.69
Constant alkalinity High lightBB 233.222157.667.53289128412837.48360.452692.5484.401957.271950.871.342.05-1.804.12
Constant alkalinity High lightBB 133.222157.747.61265525772573.59045.492436.1991.821472.941468.131.452.23-1.693.87
Constant alkalinity High lightBB 2033.222157.767.63279827102706.09945.662559.37100.971478.271473.441.602.45-1.813.75
Constant alkalinity High lightBB 1933.222157.867.73280826772673.512335.602513.04124.861152.531148.761.983.03-1.884.21
Constant alkalinity High lightBB 1833.222157.997.86281826262621.516025.542432.86163.10826.89824.192.583.96-1.913.92
Constant alkalinity High lightJH 233.222158.117.98219619811976.515714.361802.82159.32464.86463.342.523.87-2.083.17
Constant alkalinity High lightBS933.222158.097.96286426162610.619819.932389.07201.60645.11643.003.194.90-1.833.03
Constant alkalinity High lightBB 1433.222158.258.12287025212514.226812.862229.41271.93416.49415.134.306.61-2.003.35
Constant alkalinity High lightBS1033.222158.248.11286625252517.526213.212237.58266.71427.75426.354.226.48-1.762.57
Constant alkalinity High lightBB 433.222158.288.15296125832574.829212.202266.30296.30394.99393.704.697.20-1.912.99
Constant alkalinity High lightBS533.222158.348.21270923142305.42959.361996.46299.58303.17302.184.747.28-2.042.79
Constant alkalinity High lightBS3833.222158.398.26275523182308.33278.231968.59331.48266.39265.525.248.05-2.202.21
Constant alkalinity High lightBS333.222158.368.23293625002491.23329.602144.55337.05310.93309.915.338.19-2.102.59
Constant alkalinity High lightBS4633.222158.528.39261620962084.33805.251694.23384.83169.96169.416.099.35-2.492.10
Constant alkalinity High lightBB 2133.222158.558.42281622402227.04305.171786.90434.93167.29166.746.8810.57-2.402.40
Constant alkalinity High lightBB 533.222158.498.36311225442532.04366.922083.38441.71223.91223.186.9910.73-2.142.63
Constant alkalinity High lightBB 1733.222158.778.64308222482228.56362.761585.33640.4089.4389.1310.1315.56-2.740.30
Constant alkalinity High lightBS433.222158.828.69291020662045.46352.181406.01637.2170.6970.4610.0815.48-3.010.36
Constant alkalinity High lightBB 1533.222158.818.68308622112190.06682.411516.02671.5777.9877.7310.6216.31-2.800.30
Constnt CO2 Dark groupJH4133.222157.777.64215220732069.67534.101956.4979.011103.921100.321.251.92-1.692.71
Constnt CO2 Dark groupbs1233.222157.907.77213820142010.69924.331883.65102.62787.87785.301.622.49-1.552.28
Constnt CO2 Dark groupJH3133.222158.178.04219319481943.817212.171753.75177.88393.99392.702.814.32-1.681.94
Constnt CO2 Dark groupJH3533.222158.208.07224819831978.418611.491774.10192.81371.96370.753.054.68-1.662.39
Constnt CO2 Dark groupJH3933.222158.418.28245420422030.02916.871719.89303.25222.27221.554.807.37-1.752.13
Constnt CO2 Dark groupJH4633.222158.618.48263620372024.74293.981579.38441.34128.79128.376.9810.72-2.271.25
Constnt CO2 Dark groupbs4433.222158.638.50265920402026.04433.761564.45457.79121.83121.437.2411.12-2.260.88
Constnt CO2 Dark groupbs2833.222158.658.52267820392023.74583.551546.37473.78115.01114.637.4911.51-2.300.39
Constnt CO2 Dark groupbs4233.222158.828.69260518331812.75511.941246.09564.6762.6662.458.9313.72-2.53-0.29
Constnt CO2 Dark groupbs2233.222158.898.76310421452120.57221.831382.50736.1759.1658.9711.6517.88-3.03-1.40
Constnt CO2 High lightJH4033.222157.877.74214820352031.39526.421907.9296.96855.47852.681.532.36-2.143.88
Constnt CO2 High lightbs1133.222157.917.78213420062003.010323.671874.81104.53766.22763.721.652.54-1.763.35
Constnt CO2 High lightJH3033.222158.178.04218919461940.117412.141750.40177.55393.21391.932.814.31-1.973.39
Constnt CO2 High lightJH3433.222158.208.07224819831978.419011.491774.10192.81371.96370.753.054.68-2.032.99
Constnt CO2 High lightJH3833.222158.418.28245520432030.92976.871720.67303.36222.39221.674.807.37-2.193.08
Constnt CO2 High lightJH4533.222158.618.48263920382027.24393.981581.36441.86128.96128.546.9910.73-2.621.69
Constnt CO2 High lightbs4333.222158.638.50265720392024.44533.761563.25457.39121.74121.347.2411.11-2.061.79
Constnt CO2 High lightbs2733.222158.648.51267520452030.24633.671559.58466.95118.69118.307.3911.34-2.401.21