(Appendix) Petrographic information, trace element and Sr isotope ratios of Pito Deep samples


Autoria(s): Barker, AK; Coogan, Laurence A; Gillis, Kathryn M; Weis, Dominique A M
Cobertura

MEDIAN LATITUDE: -22.946098 * MEDIAN LONGITUDE: -111.932889 * SOUTH-BOUND LATITUDE: -22.983187 * WEST-BOUND LONGITUDE: -112.060846 * NORTH-BOUND LATITUDE: -22.877970 * EAST-BOUND LONGITUDE: -111.875272 * MINIMUM ELEVATION: -4087.0 m * MAXIMUM ELEVATION: 3117.0 m

Data(s)

21/05/2008

Resumo

Fluid flow through the axial hydrothermal system at fast spreading ridges is investigated using the Sr-isotopic composition of upper crustal samples recovered from a tectonic window at Pito Deep (NE Easter microplate). Samples from the sheeted dike complex collected away from macroscopic evidence of channelized fluid flow, such as faults and centimeter-scale hydrothermal veins, show a range of 87Sr/86Sr from 0.7025 to 0.7030 averaging 0.70276 relative to a protolith with 87Sr/86Sr of ~0.7024. There is no systematic variation in 87Sr/86Sr with depth in the sheeted dike complex. Comparison of these new data with the two other localities that similar data sets exist for (ODP Hole 504B and the Hess Deep tectonic window) reveals that the extent of Sr-isotope exchange is similar in all of these locations. Models that assume that fluid-rock reaction occurs during one-dimensional (recharge) flow lead to significant decreases in the predicted extent of isotopic modification of the rock with depth in the crust. These model results show systematic misfits when compared with the data that can only be avoided if the fluid flow is assumed to be focused in isolated channels with very slow fluid-rock exchange. In this scenario the fluid at the base of the crust is little modified in 87Sr/86Sr from seawater and thus unlike vent fluids. Additionally, this model predicts that some rocks should show no change from the fresh-rock 87Sr/86Sr, but this is not observed. Alternatively, models in which fluid-rock reaction occurs during upflow (discharge) as well as downflow, or in which fluids are recirculated within the hydrothermal system, can reproduce the observed lack of variation in 87Sr/86Sr with depth in the crust. Minimum time-integrated fluid fluxes, calculated from mass balance, are between 1.5 and 2.6 * 10**6 kg/m**2 for all areas studied to date. However, new evidence from both the rocks and a compilation of vent fluid compositions demonstrates that some Sr is leached from the crust. Because this leaching lowers the fluid 87Sr/86Sr without changing the rock 87Sr/86Sr, these mass balance models must underestimate the time-integrated fluid flux. Additionally, these values do not account for fluid flow that is channelized within the crust.

Formato

text/tab-separated-values, 3523 data points

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.782664

doi:10.1594/PANGAEA.782664

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Barker, AK; Coogan, Laurence A; Gillis, Kathryn M; Weis, Dominique A M (2008): Strontium isotope constraints on fluid flow in the sheeted dike complex of fast spreading crust: Pervasive fluid flow at Pito Deep. Geochemistry, Geophysics, Geosystems, 9, Q06010, doi:10.1029/2007GC001901

Palavras-Chave #-; Al-4076; Al-4081; Al-4082; Al-4086; Alteration; ALVIN; Area/locality; AT11-23; Atlantis (1997); Barium; Caesium; Cerium; Chromium; Cobalt; Copper; Depth, bathymetric; Depth, relative; Dysprosium; Epidote; Erbium; Europium; Event label; Gadolinium; Grain size description; Hafnium; Holmium; ICP-MS, Inductively coupled plasma - mass spectrometry; J2-119-1; J2-119-2; J2-123-4; J2-123-5; Lanthanum; LATITUDE; Lead; LONGITUDE; Lutetium; Mineral assemblage; Neodymium; Nickel; Praseodymium; Remote operated vehicle Jason II; ROVJ; Rubidium; Samarium; Sample code/label; Sample code/label 2; Sample comment; Scandium; Strontium; Strontium 87/Strontium 86, error; Strontium 87/Strontium 86 ratio; Submersible Alvin; Terbium; Thorium; Thulium; Titanium; Uranium; Vanadium; Western Pacific; Ytterbium; Yttrium; Zinc; Zirconium
Tipo

Dataset