HR: 1340h
AN: B13A-0169 [Abstracts]
TI: Continuing Evolution of the Hydrothermal System at the RIDGE2000 ISS, $9-10\deg$N EPR:
1991-2004
AU: * Von Damm, K L
EM: kvd@eos.sr.unh.edu
AF: Complex Systems Research Center, EOS, University of New Hampshire, Durham, NH 03824-3525
United States
AU: Parker, C M
EM: cheryl.parker@unh.edu
AF: Complex Systems Research Center, EOS, University of New Hampshire, Durham, NH 03824-3525
United States
AU: Beers, K A
EM: kbeers@unh.edu
AF: Complex Systems Research Center, EOS, University of New Hampshire, Durham, NH 03824-3525
United States
AU: Hyde, A A
EM: aahyde@cisunix.unh.edu
AF: Complex Systems Research Center, EOS, University of New Hampshire, Durham, NH 03824-3525
United States
AB:
We have been studying the evolution of the chemical composition of the mid-ocean ridge (MOR) hydrothermal system on the East
Pacific Rise from $9\deg$46-51'N since it was impacted by volcanic eruptions in 1991/2. We have been using the chemical and
temperature data to infer the processes that are occurring subseafloor in the upper oceanic crust. As of March 2004, the
chemical compositions of the vent fluids from this site have not yet stabilized. This observation is helping us to better
understand not only the impact of magmatic events on these systems, but also the time scales on which they occur. Centered
at the RIDGE2000 ISS "bull's-eye" at 9$\deg$50'N we have noted a striking increase in the number of hydrothermal vents as
well as in their measured fluid temperatures beginning after ~2000. In November 2003 we first noted the formation of a black
smoker vent at the Tica site (measured T=$342\deg$C). In March 2004 we identified another new area of robust flow near the
Bio9 vents at $9\deg$50'N, the 'Alvinellid Mat,' that we anticipate will form an additional black smoker to the three
currently active at this site. In March 2004 we measured temperatures of $388\deg$C in fluids from both the Bio9 and Bio9'
smokers, putting them essentially on the two phase curve for seawater at this depth. For all of the Bio9 vents, as well as
Tica, the fluids contain less than 300 mmoles/kg of Cl, approximately half the local seawater concentration. These high
temperature and low Cl concentrations are accompanied by unusually low Si concentrations, $<$9.5 mmoles/kg. These data
suggest a relatively shallow depth of reaction for the fluids, within a few hundred meters of the seafloor. These are the
hottest temperatures measured in the Bio9 vents since the eruption in 1992. In contrast, the temperatures at P vent, about
60m south have cooled by $\sim$$15\deg$C since 2002. About 400m south, the chlorinity of the fluids from Ty and Io vents
have increased, and Tube Worm Pillar, about 400m further south has become inactive. Therefore the changes in the vent fluids
vary widely and often in opposite senses, over $\sim$1.5km of very hydrothermally active ridge. A more complete discussion
of the changes and our interpretation of their implications for processes occurring subseafloor will be presented.
DE: 9355 Pacific Ocean
DE: 4832 Hydrothermal systems
DE: 3015 Heat flow (benthic) and hydrothermal processes
DE: 3035 Midocean ridge processes
DE: 1050 Marine geochemistry (4835, 4850)
SC: Biogeosciences [B]
MN: 2004 AGU Fall Meeting