Beryllium, thorium and protactinium isotope ratios in sediments from the Galapagos microplate


Autoria(s): Frank, Martin; Eckhardt, Joerg-Detlef; Eisenhauer, Anton; Kubik, Peter W; Dittrich-Hannen, Beate; Segl, Monika; Mangini, Augusto
Cobertura

MEDIAN LATITUDE: 1.321056 * MEDIAN LONGITUDE: -101.762611 * SOUTH-BOUND LATITUDE: 1.231833 * WEST-BOUND LONGITUDE: -102.063500 * NORTH-BOUND LATITUDE: 1.499500 * EAST-BOUND LONGITUDE: -101.612167 * DATE/TIME START: 1989-01-14T00:00:00 * DATE/TIME END: 1989-01-18T00:00:00

Data(s)

27/07/1994

Resumo

Biogenic particle fluxes from highly productive surface waters, boundary scavenging, and hydrothermal activity are the main factors influencing the deposition of radionuclides in the area of the Galapagos microplate, eastern Equatorial Pacific. In order to evaluate the importance of these three processes throughout the last 100 kyr, concentrations of the radionuclides 10Be, 230Th, and 231Pa, and of Mn and Fe were measured at high resolution in sediment samples from two gravity cores KLH 068 and KLH 093. High biological productivity in the surface waters overlying the investigated area has led to 10Be and 231Pa fluxes exceeding production during at least the last 30 kyr and probably the last 100 kyr. However, during periods of high productivity at the up welling centers off Peru and extension of the equatorial high-productivity zone, a relative loss of 10Be and 231Pa may have occurred in these sediment cores because of boundary scavenging. The effects of hydrothermal activity were investigated by comparing the 230Thex concentrations to the Mn/Fe ratios and by comparing the fluxes of 230Th and 10Be which exceed production. The results suggest an enhanced hydrothermal influence during isotope stages 4 and 5 and to a lesser extent during isotope stage 1 in core KLH 093. During isotope stages 2 and 3, the hydrothermal supply of Mn was deposited elsewhere, probably because of changes in current regime or deep water oxygenation. A strong increase of the Mn/Fe ratio at the beginning of climatic stage 1 which is not accompanied by an increase of the 230Thex concentration is interpreted to be an effect of Mn remobilization and reprecipitation in the sediment.

Formato

application/zip, 3 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.726083

doi:10.1594/PANGAEA.726083

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Frank, Martin; Eckhardt, Joerg-Detlef; Eisenhauer, Anton; Kubik, Peter W; Dittrich-Hannen, Beate; Segl, Monika; Mangini, Augusto (1994): Beryllium 10, thorium 230, and protactinium 231 in Galapagos microplate sediments: Implications of hydrothermal activity and paleoproductivity changes during the last 100,000 years. Paleoceanography, 9(4), 559-578, doi:10.1029/94PA01132

Palavras-Chave #>100 µm size fraction; 10Be; 10Be std dev; 1 sigma; 230Th sup unc; 230Th sup unc std dev; 230Th xs; 230Th xs std dev; 231Pa; 231Pa std dev; 232Th; 232Th std dev; 234U; 234U/238U; 234U/238U std dev; 234U std dev; Age; AGE; Age, maximum/old; Age, minimum/young; Age, standard deviation; Age max; Age min; Age model; Age model, Martinson et al (1987); Age model, optional; Age model opt; Age std dev; Al2O3; Alpha-spectrometry; Aluminium oxide; Beryllium 10; Beryllium 10, standard deviation; CaCO3; Calcium carbonate; d18O ages; DBD; Density, dry bulk; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; Electron spin resonance (ESR); Equatorial East Pacific; ESR dating; ESR dating, lower boundary; ESR dating, upper boundary; Fe2O3; HYMAS II; Iron oxide, Fe2O3; Isotope ratio mass spectrometry; K; KAL; Kasten corer; KLH068; KLH093; Manganese oxide; MnO; N. dutertrei d18O; Neogloboquadrina dutertrei, d18O; Potassium; Protactinium 231; Protactinium 231, standard deviation; SO60; SO60-68; SO60-93; Sonne; Thorium 230, supported, uncorrected; Thorium 230, supported, uncorrected standard deviation; Thorium 230 excess; Thorium 230 excess, standard deviation; Thorium 232; Thorium 232, standard deviation; Uranium 234; Uranium 234, standard deviation; Uranium 234/Uranium 238 activity ratio; Uranium 234/Uranium 238 activity ratio, standard deviation; X-ray fluorescence (XRF)
Tipo

Dataset