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O. S. Ashford, Guan, S., Capone, D., Rigney, K., Rowley, K., Orphan, V., Mullin, S. W., Dawson, K. S., Cortes, J., Rouse, G. W., Mendoza, G. F., Lee, R. W., Cordes, E. E., and Levin, L. A., A chemosynthetic ecotone—“chemotone”—in the sediments surrounding deep‐sea methane seeps, Limnology and Oceanography, 2021.
G. W. Luther, Gartman, A., Yuecel, M., Madison, A. S., Moore, T. S., Nees, H. A., Nuzzio, D. B., Sen, A., Lutz, R. A., Shank, T. M., and Fisher, C. R., Chemistry, Temperature, and Faunal Distributions at Diffuse-Flow Hydrothermal Vents Comparison of Two Geologically Distinct Ridge Systems, Oceanography, vol. 25, pp. 234–245, 2012.
G. W. Luther, Gartman, A., Yuecel, M., Madison, A. S., Moore, T. S., Nees, H. A., Nuzzio, D. B., Sen, A., Lutz, R. A., Shank, T. M., and Fisher, C. R., Chemistry, Temperature, and Faunal Distributions at Diffuse-Flow Hydrothermal Vents Comparison of Two Geologically Distinct Ridge Systems, Oceanography, vol. 25, pp. 234–245, 2012.
D. J. Colodner, Lin, J., VonDamm, K., Buttermore, L. G., Kozlowski, R., Charlou, J. L., Donval, J. P., and Wilson, C., Chemistry of Lucky Strike fluids: Initial results, EOS, Transactions, American Geophysical Union, vol. 74, p. 99, 1993.
D. T. Rickard and Luther, G. W., Chemistry of iron sulfides, Chemical Reviews, vol. 107, pp. 514–582, 2007.
D. Grimaud, Ishibashi, J. I., Lagabrielle, Y., Auzende, J. M., and Urabe, T., Chemistry of hydrothermal fluids from the 17 degrees S active site on the North Fiji Basin Ridge (SW Pacific), Chemical Geology, vol. 93, pp. 209–218, 1991.
A. C. Campbell, Palmer, M. R., Klinkhammer, G. P., Bowers, T. S., Edmond, J. M., Lawrence, J. R., Casey, J. F., Thompson, G., Humphris, S. E., Rona, P. A., and Karson, J. A., Chemistry of hot springs on the Mid-Atlantic Ridge, Nature, vol. 335, pp. 514–519, 1988.
G. W. Luther, Rozan, T. F., Taillefert, M., Nuzzio, D. B., Di Meo, C. A., Shank, T. M., Lutz, R. A., and Cary, S. C., Chemical speciation drives hydrothermal vent ecology, Nature, vol. 410, pp. 813–816, 2001.
G. W. Luther, Rozan, T. F., Taillefert, M., Nuzzio, D. B., Di Meo, C. A., Shank, T. M., Lutz, R. A., and Cary, S. C., Chemical speciation drives hydrothermal vent ecology, Nature, vol. 410, pp. 813–816, 2001.
J. E. Lupton, Baker, E. T., Mottl, M. J., Sansone, F. J., Wheat, C. G., Resing, J. A., Massoth, G. J., Measures, C. I., and Feely, R. A., Chemical and physical diversity of hydrothermal plumes along the East Pacific Rise, 8 degrees 45' N to 11 degrees 50' N, Geophysical Research Letters, vol. 20, pp. 2913–2916, 1993.
K. W. W. Sims, Goldstein, S. J., Blichert-Toft, J., Perfit, M. R., Kelemen, P., Fornari, D. J., Michael, P. J., Murrell, M. T., Hart, S. R., DePaolo, D. J., Layne, G. D., Ball, L. A., Jull, M., and Bender, J., Chemical and isotopic constraints on the generation and transport of magma beneath the East Pacific Rise, Geochimica et Cosmochimica Acta, vol. 66, pp. 3481–3504, 2002.
B. E. Laue and Nelson, D. C., Characterization of the gene encoding the autotrophic ATP sulfurylase from the bacterial endosymbiont of the hydrothermal vent tube worm Riftia pachyptila, Journal of Bacteriology, vol. 176, pp. 3723–3729, 1994.
H. T. Mullins, Lynts, G. W., Neumann, A. C., and Ball, M. M., Characteristics of deep Bahama channels in relation to hydrocarbon potential, AAPG Bulletin, vol. 62, pp. 693–704, 1978.
A. Teske, McKay, L. J., Ravelo, A. C., Aiello, I., Mortera, C., Nunez-Useche, F., Canet, C., Chanton, J. P., Brunner, B., Hensen, C., Ramirez, G. A., Sibert, R. J., Turner, T., White, D., Chambers, C. R., Buckley, A., Joye, S. B., Soule, S. A., and Lizarralde, D., Characteristics and Evolution of sill-driven off-axis hydrothermalism in Guaymas Basin - the Ringvent site, SCIENTIFIC REPORTS, vol. 9, 2019.
R. J. W. Turner, Ames, D. E., Franklin, J. M., Goodfellow, W. D., Leitch, C. H. B., and Höy, T., Character of active hydrothermal mounds and near by altered hemipelagic sediments in the hydrothermal areas of Middle Valley, northern Juan de Fuca Ridge: data on shallow cores, Canadian Mineralogist, vol. 31, pp. 973–996, 1993.
M. Yanagibayashi, Kato, C., Li, L., Nogi, Y., Inada, T., Taira, K., Kikuma, T., Suzuki, K., and Horikoshi, K., Changes in bacterial community in Japan Trench sediment during cultivation without decompression, JAMSTEC Journal of Deep Sea Research, pp. 553–560, 1999.
D. R. Toomey, Allen, R. M., Barclay, A. H., Bell, S. W., Bromirski, P. D., Carlson, R. L., Chen, X., Collins, J. A., Dziak, R. P., Evers, B., Forsyth, D. W., Gerstoft, P., Hooft, E. E. E., Livelybrooks, D., Lodewyk, J. A., Luther, D. S., McGuire, J. J., Schwartz, S. Y., Tolstoy, M., Trehu, A. M., Weirathmueller, M., and Wilcock, W. S. D., THE CASCADIA INITIATIVE A Sea Change In Seismological Studies of Subduction Zones, OCEANOGRAPHY, vol. 27, pp. 138–150, 2014.
D. R. Toomey, Allen, R. M., Barclay, A. H., Bell, S. W., Bromirski, P. D., Carlson, R. L., Chen, X., Collins, J. A., Dziak, R. P., Evers, B., Forsyth, D. W., Gerstoft, P., Hooft, E. E. E., Livelybrooks, D., Lodewyk, J. A., Luther, D. S., McGuire, J. J., Schwartz, S. Y., Tolstoy, M., Trehu, A. M., Weirathmueller, M., and Wilcock, W. S. D., THE CASCADIA INITIATIVE A Sea Change In Seismological Studies of Subduction Zones, OCEANOGRAPHY, vol. 27, pp. 138–150, 2014.
D. R. Toomey, Allen, R. M., Barclay, A. H., Bell, S. W., Bromirski, P. D., Carlson, R. L., Chen, X., Collins, J. A., Dziak, R. P., Evers, B., Forsyth, D. W., Gerstoft, P., Hooft, E. E. E., Livelybrooks, D., Lodewyk, J. A., Luther, D. S., McGuire, J. J., Schwartz, S. Y., Tolstoy, M., Trehu, A. M., Weirathmueller, M., and Wilcock, W. S. D., THE CASCADIA INITIATIVE A Sea Change In Seismological Studies of Subduction Zones, OCEANOGRAPHY, vol. 27, pp. 138–150, 2014.
B. N. Orcutt, Sylvan, J. B., Rogers, D. R., Delaney, J., Lee, R. W., and Girguis, P. R., Carbon fixation by basalt-hosted microbial communities, FRONTIERS IN MICROBIOLOGY, vol. 6, 2015.
C. Basak, Rathburn, A. E., Perez, M. E., Martin, J. B., Kluesner, J. W., Levin, L. A., De Deckker, P., Gieskes, J. M., and Abriani, M., Carbon and oxygen isotope geochemistry of live (stained) benthic foraminifera from the Aleutian Margin and the Southern Australian Margin, Marine Micropaleontology, vol. 70, pp. 89–101, 2009.
C. J. Hahn, Laso-Perez, R., Vulcano, F., Vaziourakis, K. M., Stokke, R., Steen, I. H., Teske, A., Boetius, A., Liebeke, M., Amann, R., Knittel, K., and Wegener, G., "Candidatus Ethanoperedens," a Thermophilic Genus of Archaea Mediating the Anaerobic Oxidation of Ethane, Mbio, vol. 11, 2020.
C. J. Hahn, Laso-Perez, R., Vulcano, F., Vaziourakis, K. M., Stokke, R., Steen, I. H., Teske, A., Boetius, A., Liebeke, M., Amann, R., Knittel, K., and Wegener, G., "Candidatus Ethanoperedens," a Thermophilic Genus of Archaea Mediating the Anaerobic Oxidation of Ethane, Mbio, vol. 11, 2020.
R. A. Lutz, Kennish, M. J., Pooley, A. S., and Fritz, L. W., Calcium carbonate dissolution rates in hydrothermal vent fields of the Guaymas Basin, Journal of Marine Research, vol. 52, pp. 969–982, 1994.
M. J. Kennish and Lutz, R. A., Calcium carbonate dissolution rates in deep-sea bivalve shells on the East Pacific Rise at 21 degrees N: results of an 8- year in-situ experiment, Palaeogeography, Palaeoclimatology, Palaeoecology, vol. 154, pp. 293–299, 1999.

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