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158 Publications found! (Query time: 0.001 s)Download as CSV fileDownload as KML file

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ScoreExp/Site/HoleYearAuthor/Title Full text
83%1986Lazur, Yu. M.; Varentsov, I. M. et al.: Dispersed Mn, Fe, Ti, Cu, and Zn mineralization in hydrothermal and pelagic sediments in the region of the Galapagos Rift; 70th voyage of the Glomar Challenger
67%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
67%85
85-573
85-574
2004Li, Y. H.; Schoonmaker, J. E.: Chemical composition and mineralogy of marine sediments
58%64
64-476
66
66-490
66-491
67
67-497
67-498
1992Lipkina, M. I.: Low temperature hydrothermal mineralization and hydrocarbons in the ocean
13%92
92-597
92-598
1986Lyle, Mitchell W.; Owen, Robert M. et al.: History of hydrothermal sedimentation at the East Pacific Rise, 19 degrees Sdownload
67%54
54-424
1982Malahoff, Alexander; Mcmurtry, Gary M. et al.: Geology and chemistry of hydrothermal deposits from active submarine volcano Loihi, Hawaii
100%1981Manheim, Frank T.; Hess, Harold D.: Hard mineral resources around the U S continental margin
83%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
83%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
83%193
193-1188
2003McConachy, Tim F.; Binns, Ray A.: Modern seafloor hydrothermal systems and ore forming processes
13%1581998Mills, Rachel A.; Teagle, Damon A. H. et al.: Fluid mixing and anhydrite precipitation within the TAG mounddownload
58%1581999Monecke, T.; Kempe, U. et al.: Trace element characteristics of quartz from the TAG hydrothermal mound
17%5
5-35
1990Morton, Janet L.; Zierenberg, Robert A. et al.: Volcanic and sedimentary controls on hydrothermal mineralization at Escanaba Trough, southern Gorda Ridgedownload
50%1582000Mozgova, N. N.; Borodaev, Yu. S. et al.: Noble metals in sulfide assemblages from deep sectors of the active TAG Mound (Mid-Atlantic Ridge, 26 degrees 08'N)
50%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
50%69
69-504
70
70-504
83
83-504
92
92-504
111
111-504
137
137-504
140
140-504
148
148-504
2007Nakamura, Kentaro; Kato, Yasuhiro et al.: Geochemistry of hydrothermally altered basaltic rocks from the Southwest Indian Ridge near the Rodriguez triple junctiondownload
50%69
69-504
70
70-504
83
83-504
92
92-504
111
111-504
137
137-504
140
140-504
148
148-504
1987Nesbitt, Bruce E.; St. Louis, Robert M. et al.: Distribution of gold in altered basalts of DSDP Hole 504B
67%28
28-268
1991Oudin, E.; Pascal, M. L. et al.: Base and precious metal deposition processes in a submarine geyser; the Atlantis II Deep case
58%1932002Paul, Heather: Petrology and lithogeochemistry of volcanic rocks hosting seafloor hot springs systems in the Manus Basin, southwestern Pacific Ocean
58%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
50%1932006Paulick, Holger; Bach, W.: Phyllosilicate alteration mineral assemblages in the active subsea-floor PACMANUS hydrothermal system, Papua New Guinea, ODP Leg 193
83%1692000Peter, J. M.; Goodfellow, W. D.: Setting, mineralogy and geochemistry of the Middle Valley sulfide deposits; results of ODP Leg 169
67%64
64-477
64-481
1986Peter, J.; Scott, S. D. et al.: Geochemical, mineralogical, fluid inclusion, and stable isotope studies of hydrothermal vent precipitates, Guaymas Basin, Gulf of California
83%1991Peter, Jan M.; Scott, Steven D.: Hydrothermal mineralization in the Guaymas Basin, Gulf of California
67%2000Petersen, S.; Herzig, P. M. et al.: Third dimension of a presently forming VMS deposit; TAG hydrothermal mound, Mid-Atlantic Ridge, 26N
50%158
158-957
2003Petersen, Sven; Herzig, Peter M. et al.: Diversity of seafloor hydrothermal systems on sediment-free mid-ocean ridges
83%139
158
169
193
2003Phillips, Neil: Economic geology
67%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
67%139
158
169
193
2009Roberts, Stephen: Mechanisms for the formation of ocean floor massive sulfides; is there more to learn from ocean drilling?
67%1932005Roberts, Stephen; Bach, Wolfgang et al.: (super 87) Sr/ (super 86) Sr, (super 3) He/ (super 4) He, REE and stable isotope (delta (super 34) S, delta (super 18) O) constraints on the hydrothermal fluid evolution of the PACMANUS system, Manus Basin
50%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
83%1932001Roberts, Stephen; Benning, Liane G.: Leg 193; Manus Basin
67%1111988Schoeps, Dietmar; Herzig, Peter M.: Mineralogy and chemical composition of sulfides from the Leg 111 dike section of ODP Hole 504B, Costa Rica Rift
83%541979Schrader, E. L.; Furbish, W. J.: Geochemical characteristics of oceanic hydrothermal and diagenetic Mn deposits; possible economic applications
83%2006Schwarz-Schampera, Ulrich; Stoffers, Peter et al.: IODP; high-temperature hydrothermal venting at submarine volcanoes on the Tonga Arc, SW Pacific
83%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
67%127
127-794
128
128-794
1990Scott, Steven D.; Pouclet, Andre: ODP Leg 128 sea of Japan; basement rocks, volcanism and a Kuroko massive sulfide environment in a failed rift
100%1977Seyfried, W. E., Jr.: Seawater-basalt interaction from 25 degrees -300 degrees C and 1-500 bars; implications for the origin of submarine metal-bearing hydrothermal solutions and regulation of ocean chemistry
67%1581998Sturz, A. A.; Itoh, M. J. T. et al.: Mineralogy and chemical composition of clay minerals, TAG hydrothermal mound
58%1261998Sui, A. U.; Glasby, G. P.: Submarine hydrothermal manganese deposits in the Izu-Bonin-Mariana Arc; an overview
83%1061986Sulanowska, Margaret; Humphris, Susan E. et al.: Hydrothermal mineralization in the MARK area, Mid-Atlantic Ridge 23 degrees N
83%341974Swanson, S. B.; Scott, R. B.: Hydrothermal products of Leg 34 basalts; Deep Sea Drilling Project
33%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
100%1989Varentsov, I. M.: O glavnykh problemakh v poznanii genezisa margantsevykh mestorozhdeniy Main problems in knowledge of genesis of manganese deposits
67%701986Varentsov, I. M.; Sakharov, B. A. et al.: Gidrotermal'nyye otlozheniya zony Galapagosskogo rifta, 70-y reys BS "Glomar Chellendzher"; aspekty mineralogii i geokhimii glavnykh komponentov Hydrothermal deposits in the area of the Galapagos Rift, Leg 70, "Glomar Challenger"; aspects of mineralogy and geochemistry of the principal components
58%37
37-332
37-334
37-335
1990Varga, R. J.; Moores, E. M.: Intermittent magmatic spreading and tectonic extension in the Troodos Ophiolite; implications for exploration for black smoker-type ore deposits
67%112
112-680
1994Veto, Istvan; Hetenyi, Magdolna et al.: Hydrogen index as reflecting intensity of sulphidic diagenesis in non-bioturbated, shaly sediments
50%139
169
2005Von Damm, K. L.; Parker, C. M. et al.: The Escanaba Trough, Gorda Ridge hydrothermal system; temporal stability and sub-seafloor complexitydownload
67%1932009Webber, Alexander; Roberts, Steve et al.: Fluid mixing and thermal regimes beneath the PACMANUS hydrothermal field, Papua New Guinea; helium oxygen isotopes
67%1991Williams, Alan E.; McKibben, Michael A. et al.: An overview of fluid geochemistry and ore genesis in the Salton Sea geothermal system and comparison with the Gulf of California hydrothermal systems
67%1932005Yang, Kaihui; Scott, Steven D.: Vigorous exsolution of volatiles in the magma chamber beneath a hydrothermal system on the modern sea floor of the eastern Manus back-arc basin, western Pacific; evidence from melt inclusions
67%2004Yeats, C. J.: Mineralogy and geochemistry of alteration at the PACMANUS hydrothermal field, eastern Manus Basin, Papua New Guinea
83%1991Yim, W. W. S.: Tin placer genesis in northeastern Tasmania
83%2000Zhirnov, E. A.; Cherkashev, G. A. et al.: Inner structure of the TAG active hydrothermal mound (by ODP materials)
58%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
50%1691998Zierenberg, Robert A.; Fouquet, Yves et al.: The deep structure of a sea-floor hydrothermal deposit
67%1391994Zierenberg, Robert A.; Goodfellow, Wayne D. et al.: Sulfur isotopic composition of massive sulfide from the Middle Valley sediment-covered seafloor spreading center
67%23
23-227
1988Zierenberg, Robert A.; Shanks, Wayne C., III: Isotopic studies of epigenetic features in metalliferous sediment, Atlantis II Deep, Red Sea

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