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2015
J. M. McDermott, Ono, S., Tivey, M. K., Seewald, J. S., and Shanks, W. C., Identification of sulfur sources and isotopic equilibria in submarine hot-springs using multiple sulfur isotopes, Geochimica et Cosmochimica Acta, vol. 160, pp. 169–187, 2015.
J. M. McDermott, Ono, S., Tivey, M. K., Seewald, J. S., and Shanks, W. C., Identification of sulfur sources and isotopic equilibria in submarine hot-springs using multiple sulfur isotopes, Geochimica et Cosmochimica Acta, vol. 160, pp. 169–187, 2015.
T. M. McCollom, Seewald, J. S., and German, C. R., Investigation of extractable organic compounds in deep-sea hydrothermal vent fluids along the Mid-Atlantic Ridge, GEOCHIMICA ET COSMOCHIMICA ACTA, vol. 156, pp. 122–144, 2015.
W. E. Seyfried, Pester, N. J., Tutolo, B. M., and Ding, K., The Lost City hydrothermal system: Constraints imposed by vent fluid chemistry and reaction path models on subseafloor heat and mass transfer processes, Geochimica et Cosmochimica Acta, vol. 163, pp. 59–79, 2015.
L. N. Germanovich, Hurt, R. S., Smith, J. E., Genc, G., and Lowell, R. P., Measuring fluid flow and heat output in seafloor hydrothermal environments, Journal of Geophysical Research: Solid Earth, vol. 120, pp. 8031–8055, 2015.
C. E. O'Brien, Giovannelli, D., Govenar, B. W., Luther, G. W., Lutz, R. A., Shank, T. M., and Vetriani, C., Microbial biofilms associated with fluid chemistry and megafaunal colonization at post-eruptive deep-sea hydrothermal vents, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 31–40, 2015.
M. D. Lee, Walworth, N. G., Sylvan, J. B., Edwards, K. J., and Orcutt, B. N., Microbial Communities on Seafloor Basalts at Dorado Outcrop Reflect Level of Alteration and Highlight Global Lithic Clades, FRONTIERS IN MICROBIOLOGY, vol. 6, 2015.
J. J. Scott, Breier, J. A., Luther, G. W., and Emerson, D., Microbial Iron Mats at the Mid-Atlantic Ridge and Evidence that Zetaproteobacteria May Be Restricted to Iron-Oxidizing Marine Systems, PLoS ONE, vol. 10, p. e0119284, 2015.
K. G. Bemis, Silver, D., Xu, G., Light, R., Jackson, D. R., Jones, C. D., Ozer, S., and Liu, L., The path to COVIS: A review of acoustic imaging of hydrothermal flow regimes, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 159–176, 2015.
J. M. McDermott, Seewald, J. S., German, C. R., and Sylva, S. P., Pathways for abiotic organic synthesis at submarine hydrothermal fields, PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, vol. 112, pp. 7668–7672, 2015.
J. M. McDermott, Seewald, J. S., German, C. R., and Sylva, S. P., Pathways for abiotic organic synthesis at submarine hydrothermal fields, PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, vol. 112, pp. 7668–7672, 2015.
D. C. Reed, Breier, J. A., Jiang, H., Anantharaman, K., Klausmeier, C. A., Toner, B. M., Hancock, C., Speer, K., Thurnherr, A. M., and Dick, G. J., Predicting the response of the deep-ocean microbiome to geochemical perturbations by hydrothermal vents, ISME JOURNAL, vol. 9, pp. 1857–1869, 2015.
M. J. Ajemian, Wetz, J. Jarrell, Shipley-Lozano, B., and Stunz, G. W., Rapid assessment of fish communities on submerged oil and gas platform reefs using remotely operated vehicles, FISHERIES RESEARCH, vol. 167, pp. 143–155, 2015.
M. J. Ajemian, Wetz, J. Jarrell, Shipley-Lozano, B., and Stunz, G. W., Rapid assessment of fish communities on submerged oil and gas platform reefs using remotely operated vehicles, FISHERIES RESEARCH, vol. 167, pp. 143–155, 2015.
K. Streit, Bennett, S. A., Van Dover, C. L., and Coleman, M., Sources of organic carbon for Rimicaris hybisae: Tracing individual fatty acids at two hydrothermal vent fields in the Mid-Cayman rise, DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, vol. 100, pp. 13–20, 2015.
A. M. Quattrini, Baums, I. B., Shank, T. M., Morrison, C., and Cordes, E. E., Testing the depth-differentiation hypothesis in a deepwater octocoral, Proceedings of the Royal Society B: Biological Sciences, vol. 282, p. 20150008, 2015.
A. J. Findlay, Gartman, A., Shaw, T. J., and Luther, G. W., Trace metal concentration and partitioning in the first 1.5 m of hydrothermal vent plumes along the Mid-Atlantic Ridge: TAG, Snakepit, and Rainbow, Chemical Geology, vol. 412, pp. 117–131, 2015.
B. W. Govenar, Fisher, C. R., and Shank, T. M., Variation in the diets of hydrothermal vent gastropods, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 193–201, 2015.
2016
W. A. Maher, Duncan, E., Dilly, G., Foster, S., Krikowa, F., Lombi, E., Scheckel, K., and Girguis, P., Arsenic concentrations and species in three hydrothermal vent worms, Ridgeia piscesae, Paralvinella sulficola and Paralvinella palmiformis, Deep Sea Research Part I: Oceanographic Research Papers, vol. 116, pp. 41–48, 2016.
J. McNichol, Sylva, S. P., Thomas, F., Taylor, C. D., Sievert, S. M., and Seewald, J. S., Assessing microbial processes in deep-sea hydrothermal systems by incubation at in situ temperature and pressure, Deep Sea Research Part I: Oceanographic Research Papers, vol. 115, pp. 221–232, 2016.
J. McNichol, Sylva, S. P., Thomas, F., Taylor, C. D., Sievert, S. M., and Seewald, J. S., Assessing microbial processes in deep-sea hydrothermal systems by incubation at in situ temperature and pressure, Deep Sea Research Part I: Oceanographic Research Papers, vol. 115, pp. 221–232, 2016.
J. McNichol, Sylva, S. P., Thomas, F., Taylor, C. D., Sievert, S. M., and Seewald, J. S., Assessing microbial processes in deep-sea hydrothermal systems by incubation at in situ temperature and pressure, Deep Sea Research Part I: Oceanographic Research Papers, vol. 115, pp. 221–232, 2016.
P. Martin, Goodkin, N. F., Stewart, J. A., Foster, G. L., Sikes, E. L., White, H. K., Hennige, S., and Roberts, J. M., Deep-sea coral $δ$13C: A tool to reconstruct the difference between seawater pH and $δ$11B-derived calcifying fluid pH, Geophysical Research Letters, vol. 43, pp. 299–308, 2016.
P. Martin, Goodkin, N. F., Stewart, J. A., Foster, G. L., Sikes, E. L., White, H. K., Hennige, S., and Roberts, J. M., Deep-sea coral $δ$13C: A tool to reconstruct the difference between seawater pH and $δ$11B-derived calcifying fluid pH, Geophysical Research Letters, vol. 43, pp. 299–308, 2016.
C. Y. Tan, Ding, K., and Seyfried, W. E., Development and Application of a New Mobile pH Calibrator for Real-Time Monitoring of pH in Diffuse Flow Hydrothermal Vent Fluids, Marine Technology Society Journal, vol. 50, pp. 37–47, 2016.

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