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168 Publications found! (Query time: 0.002 s)Download as CSV fileDownload as KML file

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Score Exp/Site/HoleYearAuthor/TitleFull text
100%1581996Hannington, M. D.; Galley, A. G. et al.: Comparison of the TAG mound-stockwork complex with cyprus-type massive sulfide deposits; results of Leg 158 drilling
100%1691997Houghton, J.; Pulsipher, T. et al.: Major and minor element geochemistry of sulfide minerals from Middle Valley and Escanaba Trough sediment hosted volcanogenic massive sulfide deposits
100%2008Skott, S. D.: Kolchedannyye mestorozhdeniya; opyt kontinental'noy i morskoy geologii Massive sulfide deposits; aspects of continental and marine geology
100%1692000Peter, J. M.; Goodfellow, W. D.: Setting, mineralogy and geochemistry of the Middle Valley sulfide deposits; results of ODP Leg 169
85%1992Franklin, James M.: Advances in understanding volcanogenic massive sulphide deposits; lessons from the modern environment
85%1990Perfit, M. R.: Magmatism, hydrothermal alteration and sulphide mineralization on the Galapagos Ridge: a potential ODP site to study massive sulphide genesis
85%1391992Anonymous: Successful drilling of seafloor massive sulfide deposit
85%2003Goodfellow, Wayne David: Massive sulfide deposits at modern sedimented oceanic rifts; geological setting and genetic processes
80%5
5-35
1988Koski, Randolph A.; Shanks, Wayne C., III et al.: The composition of massive sulfide deposits from the sediment-covered floor of Escanaba Trough, Gorda Ridge; implications for depositional processes
80%139
139-856
169
169-856
1998Nehlig, P.; Marquez, L.: Feeder zones of massive sulfide deposits; constraints from Bent Hill, Juan de Fuca Ridge; ODP Leg 169
80%1581997Herzig, Peter M.; Petersen, Sven et al.: Unusual sulfur isotopic composition of volcanic-hosted massive sulfide deposits at the modern seafloor; TAG hydrothermal mound (MAR) and Lau back-arc (SW-Pacific)
73%158
158-957
2003Petersen, Sven; Herzig, Peter M. et al.: Diversity of seafloor hydrothermal systems on sediment-free mid-ocean ridges
73%158
158-957
2006Jiang Shaoyong; Yang Tao et al.: Lead and sulfur isotopic composition of sulfides from the TAG hydrothermal field, Mid-Atlantic Ridge
71%1581996Bruegmann, G. E.; Hofmann, A. W. et al.: Os isotopic composition and Os distribution in the active mound of the TAG-hydrothermal system, Mid-Atlantic Ridge
71%1391999Stuart, Finlay M.; Ellam, Robert M. et al.: Metal sources in the Middle Valley massive sulphide deposit, northern Juan de Fuca Ridge; Pb isotope constraints
71%1996Binns, R. A.; Scott, S. D.: Massive sulfide mineralisation in felsic volcanic rocks of the eastern Manus Back-Arc Basin, western Pacific: ODP proposal 479
71%1996Goodfellow, Wayne D.; Zierenberg, R. A. et al.: Hydrothermal alteration associated with modern sediment-covered rifts; application to the exploration for ancient sulphide deposits
71%1391993Marchig, V.; Boni, M.: Massive sulfides from Middle Valley (Ocean Drilling Program, Leg 139 "sedimented ridges"); mineral and chemical composition and comparison with massive sulfides from the southern part of the East Pacific Rise
71%1996Halbach, Peter; Blum, N. et al.: The Indian Ocean; future area for drilling activities? The only -- up to now -- massive sulfides in the Indian Ocean (Meso mineral zone, CIR)
71%1581996Gemmell, J. Bruce: Subsurface architecture of the TAG hydrothermal mound, Mid-Atlantic Ridge; results of Ocean Drilling Program Leg 158
71%1391995Marchig, V.; Dietrich, P.: Hydrothermal activity in Middle Valley (East Pacific Rise 48N, Leg 139, ODP); chemical redistribution between sediment, igneous rocks and massive sulfides
71%128
128-799
1991Scott, Steven D.; Marumo, Katsumi: Successful test of the failed rift hypothesis for kuroko-type massive sulfide deposits, ODP Site 799, Sea of Japan
71%193
193-1189
2003Barriga, Fernando; Binns, Ray et al.: Treasure in the making under the sea floor
71%1932001Roberts, Stephen; Benning, Liane G.: Leg 193; Manus Basin
71%1581998You, C. F.; Bickle, M. J.: Evolution of an active sea-floor massive sulphide deposit
71%2000Gillis, Kathryn M.: Creation and evolution of the oceanic lithosphere; contributions from ocean drilling
71%193
193-1188
2001Bach, Wolfgang: Ocean drilling program explores the making of ore deposits
71%1391992Franklin, J. M.: Hot rocks, hot water and cold sulfides; preliminary results, ODP Leg 139 drilling the Juan de Fuca Ridge
71%1691997James, R. H.; Palmer, M. R.: Evidence for the transport of phase-separated hydrothermal fluids through sediment at the Escanaba Trough
71%1691997Goodfellow, Wayne D.; Peter, Jan M.: Intersection of major massive sulphide deposits, sulfide feeder zones and a deep copper zone during ODP Leg 169 drilling in the Bent Hill area, Middle Valley, northern Juan de Fuca Ridge
71%2001Gee, Jeffrey S.; Webb, Spahr C. et al.: A deep tow magnetic survey of Middle Valley, Juan de Fuca Ridge
71%1581995Herzig, P.; Humphris, S.: Drilling the TAG hydrothermal mound, MAR 26 degrees N
71%1691997Duckworth, Rowena C.: Anatomy of sediment hosted seafloor massive sulfide deposits; preliminary results from ODP Leg 169 drilling in Middle Valley and Escanaba Trough
71%1581995Herzig, Peter M.; Humphris, Susan E.: Ocean Drilling Program reveals the subsurface nature of the TAG hydrothermal mound
71%1932004Barriga, Fernando J. A. S.; Binns, Ray B. et al.: Leg 193; the third dimension of a felsic-hosted, massive sulphide hydrothermal system in a back-arc basin (Pacmanus, Papua New Guinea)
71%1692000Bjerkgard, T.; Cousens, B. L. et al.: The Middle Valley sulfide deposits, northern Juan de Fuca Ridge; radiogenic isotope systematics
71%1692005Peter, J. M.; Scott, S. D. et al.: Hydrothermal petroleum in modern sediment-hosted seafloor massive sulphide deposits at Guaymas Basin and Escanaba Trough
70%139
139-856
139-857
146
169
169-856
169-857
1996Zierenberg, R. A.; Fouquet, Yves et al.: The roots of seafloor massive sulfide deposits; preliminary results from ODP Leg 169 drilling in Middle Valley and Escanaba Trough
61%2002Barriga, Fernando J. A. S.; Dias, Agata S. C. M. A. et al.: Replacement processes in volcanogenic massive sulfide deposits; the key to giant orebodies
60%193
193-1188
193-1189
2003Roberts, S.; Bach, W. et al.: Contrasting evolution of hydrothermal fluids in the PACMANUS system, Manus Basin; the Sr and S isotope evidence
60%1932006Paulick, Holger; Bach, W.: Phyllosilicate alteration mineral assemblages in the active subsea-floor PACMANUS hydrothermal system, Papua New Guinea, ODP Leg 193
57%23
23-227
1988Zierenberg, Robert A.; Shanks, Wayne C., III: Isotopic studies of epigenetic features in metalliferous sediment, Atlantis II Deep, Red Sea
57%139
139-856
169
169-856
1994Franklin, J. M.; Goodfellow, W. D. et al.: Site 856 of ODP Leg 139; discovery of a major massive sulfide deposit in Middle Valley of the Juan de Fuca Ridge
57%1391994Goodfellow, W. D.; Leybourne, M. et al.: The Middle Valley hydrothermal system and associated sulphide deposits, Juan de Fuca Ridge; recent results of Leg 139, Ocean Drilling Program--Reseau hydrothermal et gisements sulfures associes de la vallee du Milieu, dorsale Juan de Fuca; resultats recents du troncon 139, Programme de sondage des fonds marins
57%1691998Duckworth, Rowena C.; Shanks, W. C., III et al.: High grade sediment-hosted sulfide deposits on the sea-floor; preliminary results from ODP Leg 169 drilling, Middle Valley, Juan de Fuca Ridge
57%1581998Masuda, H.; Nakamura, M. et al.: Hydrothermal basalt alteration at the surface of the TAG active mound, MAR26 degrees N
57%1996Binns, R. A.; Scott, S. D.: Massive sulfide mineralisation in felsic volcanic rocks of the eastern Manus back-arc basin, Western Pacific; ODP Proposal 479
57%1581996Sturz, Anne A.; Itoh, Mika J. T. et al.: Mineralogy and chemical composition of clay minerals, TAG sulfide deposit
57%1391993Goodfellow, W. D.; Franklin, J. M. et al.: Hydrothermal fluid-sediment interaction and massive sulphide formation; results of Leg 139 drilling, Middle Valley, northern Juan de Fuca Ridge--Interaction entre fluides hydrothermaux et sediments et formation de sulfures massifs; resultats du forage de l'etape 139 dans la Vallee Mediane (partie nord de la Dorsale Juan de Fuca)
57%1581998Sturz, A. A.; Itoh, M. J. T. et al.: Mineralogy and chemical composition of clay minerals, TAG hydrothermal mound
57%169
169-1038
1999James, Rachael H.; Rudnicki, Mark D. et al.: The alkali element and boron geochemistry of the Escanaba Trough sediment-hosted hydrothermal system
57%1932005Pinto, A. M. M.; Relvas, J. M. R. S. et al.: Gold mineralization in recent and ancient volcanic-hosted massive sulfides; the PACMANUS Field and the Neves Corvo Deposit
57%139
158
169
193
2009Roberts, Stephen: Mechanisms for the formation of ocean floor massive sulfides; is there more to learn from ocean drilling?
57%1932007Barriga, F. D.; Binns, R. A. et al.: Trekhmernaya vulkanogennaya gidrotermal'naya medno-kolchedannaya sistema v zadugovom basseyne Manus (Papua-Novaya Gvineya) Three-dimensional hydrothermal copper-sulfide volcanic system in the Manus back-arc basin (Papua-New Guinea)
57%1391994Zierenberg, Robert A.; Goodfellow, Wayne D. et al.: Sulfur isotopic composition of massive sulfide from the Middle Valley sediment-covered seafloor spreading center
57%1691997Fouquet, Yves; Zierenberg, Robert et al.: Leg 169 drills a major massive sulfide deposit on a sediment-buried spreading center
57%2000Petersen, S.; Herzig, P. M. et al.: Third dimension of a presently forming VMS deposit; TAG hydrothermal mound, Mid-Atlantic Ridge, 26N
57%2001Gillis, Kathryn M.: Nature and origin of the oceanic lithosphere; some insights from past ocean drilling and plans for the future
57%1581996Ludwig, Rainer J.; Fryer, Gerard J. et al.: The relationship between seismic velocity and porosity of sulfide, sulfate, and basalt samples from the TAG hydrothermal mound
57%1581996Rona, Peter A.; Davis, Earl E. et al.: Thermal properties of TAG hydrothermal precipitates, Mid-Atlantic Ridge, and comparison with Middle Valley, Juan de Fuca Ridge
57%169
169-1038
1998James, R. H.; Palmer, Martin R.: Alkali element and B geochemistry of sedimented hydrothermal systems
57%1581994Hannington, M. D.; Jonasson, I. R. et al.: Active volcanoes and ore deposits on the ocean floor--Volcans actifs et gisements de minerai sur le plancher oceanique
57%1391994Krasnov, Sergey G.: Alteration of an oceanic massive sulfide deposit, caused by a sill-driven hydrothermal system in sediments; evidences from geochemistry and mineralogy
57%193
193-1189
2004Lee, S.; Doh, S. et al.: Magnetic and electron microscopic investigation on rock samples from the PACMANUS hydrothermal vent field in Papua New Guinea
50%169
169-1035
2003Cruse, Anna M.; Seewald, Jeffrey S. et al.: Sulfide mineral-vent fluid interaction during upflow at ODP Mound, Middle Valley, northern Juan de Fuca Ridge
49%1691998James, R. H.; Duckworth, R. C. et al.: Drilling of sediment-hosted massive sulphide deposits at the Middle Valley and Escanaba Trough spreading centres; ODP Leg 169
49%1581999Monecke, T.; Kempe, U. et al.: Trace element characteristics of quartz from the TAG hydrothermal mound
49%1932002Paul, Heather: Petrology and lithogeochemistry of volcanic rocks hosting seafloor hot springs systems in the Manus Basin, southwestern Pacific Ocean
49%139
139-856
139-857
139-858
146
169
169-856
169-857
169-858
1994Frueh-Green, G. L.; Bernasconi, S. et al.: Reaction control of the chemical and isotopic compositions of hydrothermal fluids at a sedimented ridge (Middle Valley, ODP Leg 139)
49%1932004Paulick, H.; Vanko, D. A. et al.: Drill core-based facies reconstruction of a deep marine felsic volcano hosting an active hydrothermal system (Pual Ridge, Papua New Guinea, ODP Leg 193)download
49%1692004Houghton, J. L.; Shanks, W. C., III et al.: Massive sulfide deposition and trace element remobilization in the Middle Valley sediment-hosted hydrothermal system, northern Juan de Fuca Ridgedownload
42%139
168
169
2000Gillis, Kathryn M.; Banerjee, Neil R.: Hydrothermal alteration patterns in supra-subduction zone ophiolites
42%193
193-1188
2003Roberts, Stephen; Bach, Wolfgang et al.: Radiogenic and stable isotope evidence of contrasting evolution of hydrothermal fluids in the Pacmanus system, Manus Basin; ODP Leg 193
42%69
69-504
70
70-504
83
83-504
92
92-504
111
111-504
137
137-504
140
140-504
148
148-504
1995Muehe, R.; Peucker-Ehrenbrink, B. et al.: Pb-enrichment within hydrothermally altered oceanic crust; implications for the global Pb-geochemical cycle
42%158
158-957
2000Humphris, Susan E.; Tivey, Margaret K.: A synthesis of geological and geochemical investigations of the TAG hydrothermal field; insights into fluid-flow and mixing processes in a hydrothermal system
42%1691998Zierenberg, Robert A.; Fouquet, Yves et al.: The deep structure of a sea-floor hydrothermal deposit
42%139
139-856
169
169-856
1997Gendler, T. S.; Krasnov, S. G. et al.: Magnetomineralogical characteristics of ores from the Middle Valley oceanic sulfide deposit, Ocean Drilling Program Leg 139, Juan de Fuca Ridge
42%139
139-858
169
169-858
169-1035
169-1036
2002Gieskes, Joris M.; Simoneit, Bernd R. T. et al.: Geochemistry of fluid phases and sediments; relevance to hydrothermal circulation in Middle Valley, ODP legs 139 and 169
42%1391996Higgins, Katrina M.: Sedimentary diagenesis of hydrothermally altered distal turbidites of Middle Valley, Juan de Fuca Ridge, ODP Leg 139
42%69
69-504
70
70-504
83
83-504
92
92-504
111
111-504
137
137-504
140
140-504
148
148-504
1995Hall, James M.; Yang, Jing-Sui: Constructional features of Troodos type oceanic crust; relationships between dike density, alteration, magnetization, and ore body distribution and their implications for in situ oceanic crustdownload
40%139
139-856
139-858
169
169-856
169-858
169-1035
169-1036
2000Lackschewitz, K. S.; Singer, A. et al.: Formation and transformation of clay minerals in the hydrothermal deposits of Middle Valley, Juan de Fuca Ridge, ODP Leg 169
39%1691998Fouquet, Yves; Zierenberg, Robert A. et al.: Introduction; Investigation of hydrothermal circulation and genesis of massive sulfide deposits at sediment-covered spreading centers at Middle Valley and Escanaba Troughdownload
37%1581998Brown, D.; McClay, K. R.: Sulfide textures in the active TAG massive sulfide deposit, 26 degrees N, Mid-Atlantic Ridgedownload
36%1581998Hannington, Mark D.; Galley, Alan G. et al.: Comparison of the TAG mound and stockwork complex with cyprus-type massive sulfide depositsdownload
35%1691998Fouquet, Yves; Zierenberg, Robert A. et al.: Proceedings of the Ocean Drilling Program, initial reports; Sedimented ridges II, covering Leg 169 of the cruises of the drilling vessel JOIDES Resolution, Victoria, British Columbia, to San Diego, California, sites 1035-1038, 21 August-16 October, 1996download
35%1581999Gregory, Thomas Kendall: Rare earth elements as tracers of fluid evolution at the TAG hydrothermal mound
35%139
139-855
139-856
139-857
139-858
146
169
169-856
169-857
169-858
1992Davis, Earl E.; Mottl, Mike et al.: Hot rocks and massive sulfide; northern Juan de Fuca Ridge
35%111
111-504
137
137-504
139
140
140-504
148
148-504
169
2002Franklin, James M.: Seafloor minerals research; supporting discovery of new ore deposits
35%1692000Zierenberg, Robert A.; Miller, D. Jay: Overview of Ocean Drilling Program Leg 169; sedimented ridges IIdownload
34%1391994Duckworth, Rowena C.; Fallick, Anthony E. et al.: Mineralogy and sulfur isotopic composition of the Middle Valley massive sulfide deposit, northern Juan de Fuca Ridgedownload
32%1691996Fouquet, Yves; Zierenberg, Robert et al.: Leg 169 scientific prospectus; sedimentary ridges IIdownload
28%139
139-856
169
169-856
2004Teagle, Damon A. H.; Alt, Jeffrey C.: Hydrothermal alteration of basalts beneath the Bent Hill massive sulfide deposit, Middle Valley, Juan de Fuca Ridge
27%139
139-856
169
169-856
1994Krasnov, Sergey G.; Stepanova, T. et al.: Chemical composition and formation of a massive sulfide deposit, Middle Valley, northern Juan de Fuca Ridge (Site 856)download
27%1581998Gemmell, J. Bruce; Sharpe, Robina: Detailed sulfur-isotope investigation of the TAG hydrothermal mound and stockwork zone, 26 degrees N, Mid-Atlantic Ridgedownload
25%158
158-957
1998Herzig, Peter M.; Petersen, Sven et al.: Geochemistry and sulfur-isotopic composition of the TAG hydrothermal mound, Mid-Atlantic Ridge, 26 degrees Ndownload
24%106
106-649
1990Gillis, Kathryn M.; Smith, Alan D. et al.: Trace element and Sr-isotopic contents of hydrothermal clays and sulfides from the Snake Pit hydrothermal field; ODP Site 649download
24%169
169-1037
169-1038
2000Lackschewitz, Klas S.; Singer, A. et al.: Mineralogy and geochemistry of clay minerals near a hydrothermal site in the Escanaba Trough, Gorda Ridge, Northeast Pacific Oceandownload
21%1391994Tivey, Maurice A.: High-resolution magnetic surveys over the Middle Valley mounds, northern Juan de Fuca Ridgedownload
21%1581998Chiba, Hitoshi; Uchiyama, Noriaki et al.: Stable isotope study of anhydrite and sulfide minerals at the TAG hydrothermal mound, Mid-Atlantic Ridge, 26 degrees Ndownload
21%139
169
2000Marquez, L. Lynn; Nehlig, Pierre: Textural analyses of vein networks and sulfide impregnation zones; implications for the structural development of the Bent Hill massive sulfide depositdownload

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