Stable carbon and oxygen isotope ratios of benthic foraminifera


Autoria(s): Curry, William B; Duplessy, Jean-Claude; Labeyrie, Laurent D; Shackleton, Nicholas J
Cobertura

MEDIAN LATITUDE: 7.124039 * MEDIAN LONGITUDE: -16.093876 * SOUTH-BOUND LATITUDE: -43.520000 * WEST-BOUND LONGITUDE: -106.178000 * NORTH-BOUND LATITUDE: 64.783000 * EAST-BOUND LONGITUDE: 134.130000 * DATE/TIME START: 1963-04-07T00:00:00 * DATE/TIME END: 1984-11-09T00:00:00

Data(s)

28/07/1988

Resumo

Carbon isotopic measurements on the benthic foraminiferal genus Cibicidoides document that mean deep ocean delta13C values were 0.46 per mil lower during the last glacial maximum than during the Late Holocene. The geographic distribution of delta13C was altered by changes in the production rate of nutrient-depleted deep water in the North Atlantic. During the Late Holocene, North Atlantic Deep Water, with high delta13C values and low nutrient values, can be found throughout the Atlantic Ocean, and its effects can be traced into the southern ocean where it mixes with recirculated Pacific deep water. During the glaciation, decreased production of North Atlantic Deep Water allowed southern ocean deep water to penetrate farther into the North Atlantic and across low-latitude fracture zones into the eastern Atlantic. Mean southern ocean delta13C values during the glaciation are lower than both North Atlantic and Pacific delta13C values, suggesting that production of nutrient-depleted water occurred in both oceans during the glaciation. Enriched 13C values in shallow cores within the Atlantic Ocean indicate the existence of a nutrient-depleted water mass above 2000 m in this ocean.

Formato

application/zip, 51 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.726195

doi:10.1594/PANGAEA.726195

Idioma(s)

en

Publicador

PANGAEA

Relação

Boyle, Edwards A; Keigwin, Lloyd D (1985): Comparison of Atlantic and Pacific paleochemical records for the last 215.000 years: changes in deep ocean circulation and chemical inventories. Earth and Planetary Science Letters, 76(1-2), 135-150, doi:10.1016/0012-821X(85)90154-2

Curry, William B; Duplessy, Jean-Claude; Labeyrie, Laurent D; Shackleton, Nicholas J (1988): Changes in the distribution of d13C of deep water Sigma-CO2 between the last glaciation and the Holocene. Paleoceanography, 3(3), 317-341, doi:10.1029/PA003i003p00317

Curry, William B; Lohmann, G P (1983): Reduced advection into Atlantic Ocean deep eastern basins during last glaciation maximum. Nature, 306, 577-580, doi:10.1038/306577a0

Curry, William B; Lohmann, G P; Lohmann, Gerrit (1985): Carbon deposition rates and deepwater residence time in the equatorial Atlantic Ocean throughout the last 160,000 years. In: Sunquist, E T & Broecker, W S (eds.), The Carbon Cycle and Atmospheric CO2: Natural variations Archean to Present. Geophys., 32, 285-302

Labeyrie, Laurent D; Duplessy, Jean-Claude; Blanc, PL (1987): Variations in mode of formation and temperature of oceanic deep waters over the past 125,000 years. Nature, 327, 477-482, doi:10.1038/327477a0

Mix, Alan C; Fairbanks, Richard G (1985): North Atlantic surface-ocean control of Pleistocene deep-ocean circulation. Earth and Planetary Science Letters, 73(2-4), 231-243, doi:10.1016/0012-821X(85)90072-X

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Sarnthein, Michael; Winn, Kyaw; Duplessy, Jean-Claude; Fontugne, Michel R (1988): Global variations of surface ocean productivity in low and mid latitudes: influence on CO2 reservoirs of the deep ocean and atmosphere during the last 21,000 years. Paleoceanography, 3(3), 361-399, doi:10.1029/PA003i003p00361

Palavras-Chave #0010PG; 0016PG; 0021PG; 0026PG; 0029PG; 0032PG; 0036PG; 0038PG; 0044PG; 0050PG; 0055PG; 0058PG; 0066PG; 0071PG; 0075PG; 0082PG; 0091PG; Age; AGE; Age, calculated calendar years; Age model; Age model, stable isotope stratigraphy; APSARA2; Atlantic Ocean; BT4; C. wuellerstorfi d13C; C. wuellerstorfi d18O; Calculated; calculated ages; Calculated from weight/volume; CH72-02; CH73-139; CH73-139C; CH74-227; CH75-03; CH75-04; CH7X; CH8X; CHN82-24; Cibicidoides spp., d13C; Cibicidoides spp., d18O; Cibicidoides spp. d13C; Cibicidoides spp. d18O; Cibicidoides wuellerstorfi, d13C; Cibicidoides wuellerstorfi, d18O; DBD; Density, dry bulk; Depth; DEPTH, sediment/rock; East Atlantic; EN06601; EN066-10PG; EN066-16PG; EN066-21PG; EN066-26PG; EN066-29PG; EN066-32PG; EN066-36PG; EN066-38PG; EN066-44PG; Endeavor; GC; GIK/IfG; GIK12392-1; GLAMAP; Gravity corer; Indian Ocean; Institute for Geosciences, Christian Albrechts University, Kiel; Isotope ratio mass spectrometry; Jean Charcot; KAL; Kasten corer; KN07304-0003PG; KN07307; KN11002; Knorr; KNR110-50; KNR110-55; KNR110-58; KNR110-66; KNR110-71; KNR110-75; KNR110-82; KNR110-91; M12392-1; M25; Marion Dufresne; MD10; MD38; MD76-125; MD76-135; MD79-254; MD84-527; Meteor (1964); MIDLANTE2; North Atlantic; OSIRIS4; OSIRIS II; Pacific Ocean; Paleoproductivity as carbon; PC; Piston corer; Pnew; PP; PP calculated (Sarnthein et al. 1992 in Summeshayes, Geol Soc Spec Pub 63); Productivity of carbon; RC11; RC11-120; RC13; RC13-228; RC13-229; Robert Conrad; Sedimentation rate; Sed rate; South Atlantic; South Indian Ocean; TR163-31; V19; V19-30; V22; V22-197; V25; V25-59; V26; V26-176; V28; V28-14; V28-304; V30; V30-49; V35; V35-5; Vema
Tipo

Dataset