Isotope analysis, age calculation and calcite concentration from IODP Hole 310-M0005D


Autoria(s): Thomas, Alexander L; Fujita, Kazuhiko; Iryu, Yasufumi; Bard, Edouard; Cabioch, Guy; Camoin, Gilbert; Cole, Julia E; Deschamps, Pierre; Durand, Nicolas; Hamelin, Bruno; Heindel, Katrin; Henderson, Gideon M; Mason, Andrew J; Matsuda, Hiroki; Menabreaz, Lucie; Omori, Akitoshi; Quinn, Terry; Sakai, Saburo; Sato, Tokiyuki; Sugihara, Kaoru; Takahashi, Yasunari; Thouveny, Nicolas; Tudhope, Alexander W; Webster, Jody M; Westphal, Hildegard; Yokoyama, Yusuke
Cobertura

LATITUDE: -17.766520 * LONGITUDE: -149.550790 * DATE/TIME START: 2005-10-10T22:55:00 * DATE/TIME END: 2005-10-12T03:33:00

Data(s)

27/08/2012

Resumo

We present uranium-thoriumchronology for a 102 mcore through a Pleistocene reef at Tahiti (French Polynesia) sampled during IODP Expedition 310 "Tahiti Sea Level". We employ total and partial dissolution procedures on the older coral samples to investigate the diagenetic overprint of the uranium-thoriumsystem. Although alteration of the U-Th system cannot be robustly corrected, diagenetic trends in the U-Th data, combined with sea level and subsidence constraints for the growth of the corals enables the age of critical samples to be constrained to marine isotope stage 9. We use the ages of the corals, together with d18O based sea-level histories, to provide maximum constraints on possible paleo water-depths. These depth constraints are then compared to independent depth estimates based on algal and foraminiferal assemblages, microbioerosion patterns, and sedimentary facies, confirming the accuracy of these paleo water-depth estimates. We also use the fact that corals could not have grown above sea level to place amaximumconstraint on the subsidence rate of Tahiti to be 0.39 m ka**-1,with the most likely rate being close to the existing minimum estimate of 0.25m ka**-1.

Formato

application/zip, 2 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.787783

doi:10.1594/PANGAEA.787783

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Thomas, Alexander L; Fujita, Kazuhiko; Iryu, Yasufumi; Bard, Edouard; Cabioch, Guy; Camoin, Gilbert; Cole, Julia E; Deschamps, Pierre; Durand, Nicolas; Hamelin, Bruno; Heindel, Katrin; Henderson, Gideon M; Mason, Andrew J; Matsuda, Hiroki; Menabreaz, Lucie; Omori, Akitoshi; Quinn, Terry; Sakai, Saburo; Sato, Tokiyuki; Sugihara, Kaoru; Takahashi, Yasunari; Thouveny, Nicolas; Tudhope, Alexander W; Webster, Jody M; Westphal, Hildegard; Yokoyama, Yusuke (2012): Assessing subsidence rates and paleo water-depths for Tahiti reefs using U-Th chronology of altered corals. Marine Geology, 295-298, 86-94, doi:10.1016/j.margeo.2011.12.006

Palavras-Chave #230Th/238U; 230Th/238U std dev; 232Th; 232Th/238U; 232Th/238U std dev; 232Th std dev; 234U/238U; 234U/238U std dev; 238U; 238U std dev; 2s; 310-M0005D; Age, standard deviation; Age model; Age std dev; Cal; Calcite; Calcite, standard deviation; Calculated; Cal std dev; Closed system; Depth; DEPTH, sediment/rock; DP Hunter; DRILL; Drilling/drill rig; Exp310; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; Label; Lab no; Multi-collector inductively coupled plasma - mass spectrometer (MC-ICP-MS); ODP sample designation; Open system; Reference; Reference/source; Residual; Sample, optional label/labor no; Sample code/label; Sub-sample ID; TAH-03A-4C; Tahiti, offshore Maraa; Tahiti Sea Level; Thorium 230/Uranium 238 activity ratio; Thorium 230/Uranium 238 activity ratio, standard deviation; Thorium 232; Thorium 232, standard deviation; Thorium 232/Uranium 238 activity ratio; Thorium 232/Uranium 238 activity ratio, standard deviation; Total dissolution of sample, with no leaching procedure.; Uranium 234/Uranium 238 activity ratio; Uranium 234/Uranium 238 activity ratio, standard deviation; Uranium 238; Uranium 238, standard deviation
Tipo

Dataset