IODP Expedition 336: initiation of long-term coupled microbiological, geochemical, and hydrological experimentation within the seafloor at North Pond, western flank of the Mid-Atlantic Ridge
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Published:2014-04-29
Issue:
Volume:17
Page:13-18
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ISSN:1816-3459
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Container-title:Scientific Drilling
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language:en
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Short-container-title:Sci. Dril.
Author:
Edwards K.,Bach W.,Klaus A.,
Abstract
Abstract. Integrated Ocean Drilling Program (IODP) Expedition 336 addressed questions concerning subseafloor microbial life and its relation to seawater circulation and basalt–seawater reactions in the basaltic ocean crust. Sediment and basement samples were recovered at three drill sites located in the North Pond area, an 8 × 15 km large sediment pond on the 8 Ma western flank of the Mid-Atlantic Ridge around 22°45' N and 46°05' W in roughly 4450 m water depth. The average core recovery rate in basement was approx. 31%. The subseafloor depth of the basement holes ranges from 90 to 332 m; sediment thickness is between 36 and 90 m. Two of the holes (U1382A, and U1383C) were equipped with advanced Circulation Obviation Retrofit Kit (CORK) observatories, employing – for the first time – fiberglass casing. Another CORK string was deployed in Deep Sea Drilling Project (DSDP) Hole 395A, but the wellhead broke off upon final installment. Nonetheless, the North Pond observatory is fully operational and post-cruise observatory research is already underway. Combined geochemical and microbiological studies of the drill core samples and experimental CORK materials will help understand (1) the extent and activity of microbial life in basalt and its relation to basalt alteration by circulating seawater, and (2) the mechanism of microbial inoculation of an isolated sediment pond.
Publisher
Copernicus GmbH
Subject
Mechanical Engineering,Energy Engineering and Power Technology
Reference21 articles.
1. Bartetzko, A., Pezard, P., Goldberg, D., Sun, Y.-F., and Becker, K.: Volcanic stratigraphy of DSDP/ODP Hole 395A: An interpretation using well-logging data, Mar. Geophys. Res., 22, 111–127, 2001. 2. Becker, K., Malone, M. J., et al.: Proc. ODP, Init. Repts., 174B: College Station, TX (Ocean Drilling Program), https://doi.org/10.2973/odp.proc.ir.174b.1998, 1998. 3. Becker, K., the Leg 174B Scientific Party, and Davis, E. E.: Leg 174B revisits Hole 395A: logging and long-term monitoring of off-axis hydrothermal processes in young oceanic crust, JOIDES J., 24, 1–3, 1998. 4. Cowen, J. P., Giovannoni, S. J., Kenig, F., Johnson, H. P., Butterfield, D. A., Rappe, M. S., Hutnak, M., and Lam, P.: Fluids from aging ocean crust that support microbial life, Science, 203, 120–123, 2003. 5. Cowen, J. P., Copson, D. A., Jolly, J., Hsieh, C.-C., Lin, H.-T., Glazer, B. T., and Wheat, C. G.: Advanced instrument system for real-time and time-series microbial geochemical sampling of the deep (basaltic) crustal biosphere, Deep-Sea Res. Pt. I, 61, 43–56, 2012.
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