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Schmidt, K., Garbe-Schönberg, D., Koschinsky, A., Strauss, H., Jost, C.L., Klevenz, V., Königer, P. (2011) Fluid elemental and stable isotope composition of the Nibelungen hydrothermal field (8°18′S, Mid-Atlantic Ridge): Constraints on fluid–rock interaction in heterogeneous lithosphere. Chemical Geology, 280 (1) 1-18 doi:10.1016/j.chemgeo.2010.07.008

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Reference TypeJournal (article/letter/editorial)
TitleFluid elemental and stable isotope composition of the Nibelungen hydrothermal field (8°18′S, Mid-Atlantic Ridge): Constraints on fluid–rock interaction in heterogeneous lithosphere
JournalChemical Geology
AuthorsSchmidt, K.Author
Garbe-Schönberg, D.Author
Koschinsky, A.Author
Strauss, H.Author
Jost, C.L.Author
Klevenz, V.Author
Königer, P.Author
Year2011 (January)Volume280
Page(s)1-18Issue1
PublisherElsevier BV
DOIdoi:10.1016/j.chemgeo.2010.07.008Search in ResearchGate
Mindat Ref. ID296705Long-form Identifiermindat:1:5:296705:3
GUIDcf581bb6-2147-4d38-ac88-c606ec0a5090
Full ReferenceSchmidt, K., Garbe-Schönberg, D., Koschinsky, A., Strauss, H., Jost, C.L., Klevenz, V., Königer, P. (2011) Fluid elemental and stable isotope composition of the Nibelungen hydrothermal field (8°18′S, Mid-Atlantic Ridge): Constraints on fluid–rock interaction in heterogeneous lithosphere. Chemical Geology, 280 (1) 1-18 doi:10.1016/j.chemgeo.2010.07.008
Plain TextSchmidt, K., Garbe-Schönberg, D., Koschinsky, A., Strauss, H., Jost, C.L., Klevenz, V., Königer, P. (2011) Fluid elemental and stable isotope composition of the Nibelungen hydrothermal field (8°18′S, Mid-Atlantic Ridge): Constraints on fluid–rock interaction in heterogeneous lithosphere. Chemical Geology, 280 (1) 1-18 doi:10.1016/j.chemgeo.2010.07.008
In(2011, January) Chemical Geology Vol. 280 (1) Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Alt (2009)
Batuev (1994) BRIDGE Newsletter Massive sulfide deposits discovered at 14°45′N, Mid-Atlantic Ridge 6, 6
Bethke (1996)
Butterfield (2003) Composition and evolution of hydrothermal fluids , 123
Charlou (1993) Journal of Geophysical Research, Solid Earth Hydrothermal methane venting between 12°N and 26°N along the Mid-Atlantic Ridge 98, 25
Charlou (2007) High hydrogen and abiotic hydrocarbons from new ultramafic hydrothermal sites between 12°N and 15°N on the Mid Atlantic Ridge — results of the Serpentine cruise
Douville, E., 1999. Les fluides hydrothermaux oceaniques: comportement géochimique des éléments traces et des terres rares — Processus assocíes et modelisation thermodynamique. PhD Thesis, Université de Bretagne Occidentale, Brest.
Escartin (2008) Geophysical Research Abstracts Role of detachment faulting in lithospheric accretion along slow-spreading ridges (MAR 12–35°N) 10
Früh-Green (2004) Serpentinization of oceanic peridotites: implications for geochemical cycles and biological activity , 119
Gallant (2001) Tungsten and molybdenum in seafloor hydrothermal systems — as possible controls on biological communities
Garbe-Schönberg (2006) Geophysical Research Abstracts KIPS — a new multiport valve-based all-teflon fluid sampling system for ROVs 8
Gena (2005) Tin-bearing chalcopyrite and platinum-bearing bismuthinite in the active Tiger sulfide chimney, Yonaguni Knoll IV seafloor hydrothermal system, Okinawa Trough, Japan
German (2004) The thermal structure of the oceanic crust, ridge spreading, and hydrothermal circulation: how well do we understand their inter-connections? , 1
Graham (1984) American Mineralogist Experimental hydrogen isotope studies: hydrogen isotope exchange between amphibole and water 69, 128
Kase (1987) Canadian Mineralogist Tin-bearing chalcopyrite from the Izumo Vein, Toyoha Mine, Hokkaido, Japan 25, 9
Koschinsky (2006) InterRidge News Discovery of new hydrothermal vents on the southern Mid-Atlantic Ridge (4°S–10°S) during cruise M68/1 15, 9
Lister (1974) Geophysical Journal of the Royal Astronomical Society On the penetration of water into hot rock 39, 464-509
McCaig (2008) Geophysical Research Abstracts Role of oceanic detachment faults in controlling the chemistry of hydrothermal fluids 10
Not Yet Imported: Marine Chemistry - journal-article : 10.1016/0304-4203(94)90079-5

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 55242
Page (1968) American Mineralogist Chemical differences among the serpentine “polymorphs”. 53, 201
Saccocia (1994) Experimental and theoretical perspectives on crustal alteration at mid-ocean ridges , 403
Searle (2004) The rheology of the oceanic lithosphere and the morphology of mid-ocean ridges , 63
Seifert (2009) Mantle to ocean on the southern Mid-Atlantic Ridge (5°S–11°S) (MAR-SÜD V)
Seyfried (1995) Phase equilibria in subseafloor hydrothermal systems: A review of the role of redox, Temperature, pH and dissolved Cl on the chemistry of hot spring fluids at mid-ocean ridges , 248
Seyfried (2004) Ultramafic-hosted hydrothermal systems at mid-ocean ridges: chemical and physical controls on pH, redox and carbon reduction reactions , 267
Not Yet Imported: Stable Isotope Geochemistry - book-chapter : 10.1515/9781501508745-011

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Shanks (1995) Stable isotopes in mid-ocean ridge hydrothermal systems: interaction between fluids, minerals and organisms , 194
Sharp (2007)
Taylor (1997) Oxygen and hydrogen isotope relationships in hydrothermal mineral deposits , 229
Von Damm (2004) Evolution of the hydrothermal system at East Pacific rise 950′N: geochemical evidence for changes in the upper oceanic crust , 285
Welhan (1987) AAPG Bulletin, American Association of Petroleum Geologists Light-hydrocarbon gases in Guaymas Basin hydrothermal fluids — thermogenic versus abiogenic origin 71, 215


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