Mineralogical studies of sulfide samples and volatile concentrations of basalt glasses from the southern Juan de Fuca Ridge
- 10 October 1987
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 92 (B11) , 11373-11379
- https://doi.org/10.1029/jb092ib11p11373
Abstract
Sulfide samples obtained from the U.S. Geological Survey's DSRV Alvin dives on the southern Juan de Fuca Ridge closely resemble those from the same area described by Koski et al. (1984). Major minerals include sphalerite, wurtzite, pyrite, marcasite, isocubanite, anhydrite, and chalcopyrite. Equilibrium, if attained at all, during deposition of most sulfides was a transient event over a few tens of micrometers at most and was perturbed by rapid temperature and compositional changes of the circulating fluid. Two new minerals were found: one, a hydrated Zn, Fe hydroxy-chlorosulfate, and the other, a (Mn, Mg, Fe) hydroxide or hydroxy-hydrate. Both were formed at relatively low temperatures. Lizardite, starkeyite, and anatase were found for the first time in such an environment. Sulfide geothermometry involving the system Cu-Fe-S indicates a vent temperature of <328 degrees C for one sample. Fluid inclusion studies on crystals from the same vicinity of the same sample give pressure-corrected homogenization temperatures of 268 degrees and 285 degrees C. Ice-melting temperatures on inclusions from the same sample are about -2.8 degrees C, indicating that the equivalent salinity of the trapped fluid is about 50% greater than that of seawater. Volatile concentrations from vesicle-free basalt glass from the vent field are about 0.013 wt% CO2 and 0.16 wt% H2O, CO2 contents in these samples yield an entrapment depth of 2200 m of seawater, which is the depth from which the samples were collected.Keywords
This publication has 19 references indexed in Scilit:
- Hydrothermal serpentinization of peridotite within the oceanic crust: Experimental investigations of mineralogy and major element chemistryPublished by Elsevier ,2003
- Formation of massive sulfide deposits on oceanic ridge crests: Incremental reaction models for mixing between hydrothermal solutions and seawaterGeochimica et Cosmochimica Acta, 1984
- Mineralogy and chemistry of massive sulfide deposits from the Juan de Fuca RidgeGSA Bulletin, 1984
- $ANBA; a rapid, combined data acquisition and correction program for the SEMQ electron microprobeOpen-File Report, 1983
- Fluid inclusion studies of deep-sea hydrothermal sulphide deposits on the East Pacific Rise near 21°NChemical Geology, 1982
- The nature and distribution of carbon in submarine basalts and peridotite nodulesEarth and Planetary Science Letters, 1981
- The Concentration of $$CO_{2}$$ in Submarine Tholeiitic BasaltsThe Journal of Geology, 1981
- Mineral equilibria in the MgO-SiO 2 -H 2 O system; II, Talc-antigorite-forsterite-anthophyllite-enstatite stability relations and some geologic implications in the systemAmerican Journal of Science, 1977
- Mineral equilibria in the MgO-SiO 2 -H 2 O system; I, Talc-chrysotile-forsterite-brucite stability relationsAmerican Journal of Science, 1977
- Formation and structure of 5/1/2 zinc hydroxychlorosulfateThe Science of Nature, 1964