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Score ↓ | Exp/Site/Hole | Year | Author/Title | Full text |
100% | | 1990 | Perfit, M. R.: Magmatism, hydrothermal alteration and sulphide mineralization on the Galapagos Ridge: a potential ODP site to study massive sulphide genesis | |
100% | 126 | 1991 | Tazaki, Kazue: Hydrothermal alteration of deep sea sediments from the Izu-Bonin fore arc basin, Leg 126, ODP | |
83% | 64 | 1982 | Stout, Paul M.: Hydrothermal alteration of sediments, Guaymas Basin, Gulf of California | |
83% | | 1996 | Gallahan, William Eugene, III: Geochronology and geochemistry of low temperature hydrothermal alteration in oceanic crust; an investigation of celadonite in the Troodos Ophiolite, Cyprus | |
83% | | 1996 | Goodfellow, Wayne D.; Zierenberg, R. A. et al.: Hydrothermal alteration associated with modern sediment-covered rifts; application to the exploration for ancient sulphide deposits | |
83% | | 1979 | Donnelly, T. W.; Thompson, G. et al.: Very-low-temperature hydrothermal alteration of the oceanic crust and the problem of fluxes of potassium and magnesium | |
83% | 168 | 1998 | Vanko, David A.; Marescotti, Pietro et al.: Patterns of hydrothermal alteration in <3.5 Ma old sediment-covered basalts from the east flank, Juan de Fuca Ridge | |
83% | 147 | 1996 | Frueh-Green, G. L.; Grobety, B. et al.: Control on hydrothermal alteration at a fast-spreading ridge (Hess Deep, Leg 147) | |
83% | | 1997 | Muehe, R.; Peucker-Ehrenbrink, B. et al.: On the redistribution of Pb in the oceanic crust during hydrothermal alteration | |
82% | 187 | 2002 | Kelley, Jill Lynn: Low temperature alteration of the ocean crust; a study of hydrothermal alteration of basalts from near the Australia Antarctic discordance of the southeast Indian spreading ridge | |
71% | 109 | 1986 | Fujii, T.; Hamano, Y.: Preliminary results of Leg 109, Deep-Sea Drilling Project, ODP | |
71% | | 1980 | Cann, J. R.: Modelling of oceanic ridge crest processes in the light of IPOD drilling results | |
71% | | 1990 | Alt, J. C.: Crustal alteration from the perspective of ocean drilling | |
71% | | 1992 | Franklin, James M.: Advances in understanding volcanogenic massive sulphide deposits; lessons from the modern environment | |
71% | | 1979 | Muehlenbachs, K.; Scarfe, C. M.: (super 18) O exchange between Layer 2 and seawater; evidence from DSDP | |
71% | | 1983 | Kurnosow, W. B.; Choodkiewicz, I. W. et al.: Przeobrazenia hydrotermalne bazaltow w oceanie na podstawie danych z wiercen gebokowodnych oraz badan eksperymentalnych Hydrothermal alterations of ocean basalts based on the deep-sea drilling core data and experimental modelling | |
71% | | 1981 | Challenger devotes 78B to old hole | |
71% | | 1980 | Boehlke, J. K.; Honnorez, J. et al.: Alteration of basalts from Site 396 B, DSDP; petrographic and mineralogic studies | |
71% | | 1980 | Banerjee, S. K.: Rock magnetic techniques for deciphering the nature of alteration of the oceanic crust | |
71% | 37 | 1980 | Andrews, A. J.: Saponite and celadonite in layer 2 basalts, DSDP Leg 37 | |
71% | | 1984 | Peterson, Curt D.; Duncan, Robert A. et al.: Downcore variation and sequence of hydrothermal mineralization in massive sea-floor basalts, DSDP Site 597 | |
71% | | 1977 | Seyfried, 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 | |
71% | | 1990 | Pezard, Phillipe Adrien: On electrical properties of rocks, with implications for the structure of the upper oceanic crust | |
71% | | 1983 | Book, Patricia O'Donnell: A study of vein minerals in Deep Sea Drilling Project Hole 462A | |
71% | | 2001 | Nakamura, Kentaro: Low-temperature hydrothermal alteration of mid-oceanic ridge basalt from the Southwest Indian Ridge in the Indian Ocean | |
71% | | 1984 | Bazilevskaya, Ye. S.: Metallogeniy okeanskogo lozha po dannym glubokovodnogo bureniya Metallogeny of the ocean floor, based on deep-sea drilling data | |
71% | 193 | 2009 | Giorgetti, Giovanna; Monecke, Thomas et al.: Low-temperature hydrothermal alteration of trachybasalt at Conical Seamount, Papua New Guinea; formation of smectite and metastable precursor phases | |
71% | 49 | 1991 | Ogishima, Tomoko; Kinoshita, Hajimu: Alteration of ferromagnetic constituents of oceanic basalt under pressurized hydrothermal liquids in laboratory | |
71% | | 1973 | Fink, L. Kenneth, Jr.; Harrison, C. G. A.: Maghemitization and alteration of Class I titanomagnetites in pillow lavas | |
71% | | 1973 | Lowrie, W.: Magnetic properties of DSDP basalts | |
71% | | 1993 | Seibold, Eugen: Warum in der Tiefsee bohren? Why drill in the deep sea? | |
67% | 158 | 1996 | Humphris, Susan E.; Alt, Jeffrey C. et al.: Geochemical changes during hydrothermal alteration of basement in the stockwork beneath the TAG active hydrothermal mound, ODP Leg 158 | |
67% | 118 118-735 176 176-735 | 1996 | Frueh-Green, G. L.; Kelley, D. S.: Methane-rich fluids during ocean-floor serpentinization and hydrothermal alteration of the lower oceanic crust | |
67% | 139 139-857 139-858 146 169 169-857 169-858 | 1996 | Stakes, D. S.; Schiffman, P.: Hydrothermal alteration of basalts in the sedimented ridge environment of Middle Valley | |
67% | 59 59-448 | 1979 | Aldrich, J. B.; Muehlenbachs, K. et al.: Hydrothermal alteration of remnant arc debris, Palau-Kyushu Ridge, Philippine Sea | |
67% | 206 206-1256 309 309-U1256 312 312-U1256 | 2008 | Hoise, E.; Carlut, J. et al.: The magnetic transition from low temperature to hydrothermal alteration within the oceanic crust at IODP Site 1256 | |
67% | 195 195-1201 | 2005 | D'Antonio, M.; Kristensen, M. B.: Hydrothermal alteration of oceanic crust in the West Philippine Sea Basin (Ocean Drilling Program Leg 195, Site 1201); inferences from a mineral chemistry investigation | |
67% | 103 105 105-647 | 1991 | Kohn, M. J.; Kimball, K. L. et al.: Cr-Al zoning in spinels as a monitor of hydrothermal alteration in abyssal ultramafic rocks | |
67% | 147 147-894 147-895 | 1994 | Frueh-Green, G. L.; Plas, A. et al.: Multi-stage hydrothermal alteration of the EPR lower crust and shallow mantle at Hess Deep; mineralogic and stable isotope constraints | |
67% | 111 111-504 137 137-504 140 140-504 148 148-504 | 1992 | Schoeps, Dietmar: Hydrothermale alteration im Gangstockwerk der ozeanischen Kruste; ODP-Bohrung 504B, Costa Rica Rift Hydrothermal alteration in vein stockwork of the oceanic crust; ODP Site 504B, Costa Rica Rift | |
67% | 301 301-U1301 | 2005 | Linville, Lisa M.; Housen, B. A. et al.: Effects of hydrothermal alteration on the magnetic mineralogy of mid-ocean ridge basalts, IODP Site 1301B, Juan de Fuca Ridge | |
67% | 206 206-1256 | 2006 | Laverne, Christine; Grauby, Olivier et al.: Hydroschorlomite in altered basalts from Hole 1256D, ODP Leg 206; the transition from low-temperature to hydrothermal alteration | download |
67% | 301 301-U1301 | 2006 | Bartetzko, A.: IODP; hydrothermal alteration in young oceanic crust at Juan de Fuca Ridge; evidence from downhole logging data | |
67% | 139 139-856 169 169-856 | 2006 | Simonyan, Anna; Dultz, Stefan et al.: IODP; transport in microporous rocks studied by in situ FTIR microscopy; implications for hydrothermal alteration of the oceanic crust | |
67% | 169 169-1037 169-1038 | 2002 | Rushdi, Ahmed I.; Simoneit, Bernd R. T.: Hydrothermal alteration of organic matter in sediments of the Northeastern Pacific Ocean; Part 2, Escanaba Trough, Gorda Ridge | |
67% | 131 131-808 132 196 196-808 | 2001 | You, Chen-Feng; Gieskes, Joris M.: Hydrothermal alteration of hemi-pelagic sediments; experimental evaluation of geochemical processes in shallow subduction zones | |
67% | 60 60-453 60-456 | 1978 | Natland, J.: Hydrothermal alteration in igneous and metamorphic rocks drilled on DSDP Leg 60 in the Mariana Trough | |
67% | 168 | 1997 | Hunter, A. G.; Kempton, P. D. et al.: Effects of very low temperature hydrothermal alteration on the Sr and O-isotopic signature of the oceanic crust, eastern flank, Juan de Fuca Ridge, ODP Leg 168 | |
67% | 147 147-895 | 1995 | Frueh-Green, G. L.; Plas, A. et al.: Multi-stage hydrothermal alteration and antigorite serpentinisation of EPR shallow mantle at Hess Deep | |
67% | 147 147-894 | 1995 | Frueh-Green, G. L.; Plas, A.: Hydrothermal alteration of the EPR lower crust and shallow mantle exposed at Hess Deep (ODP leg 147); mineralogical and stable isotope constraints | |
66% | 309 309-U1256 312 312-U1256 335 335-1256 | 2011 | Carlson, R. L.: The effect of hydrothermal alteration on the seismic structure of the upper oceanic crust; evidence from Holes 504B and 1256D | download |
62% | 209 209-1268 209-1269 209-1270 209-1271 209-1272 209-1273 209-1274 209-1275 | 2007 | Kikawa, Eiichi; Kelemen, Peter B. et al.: Proceedings of the Ocean Drilling Program; scientific results; drilling mantle peridotite along the Mid-Atlantic Ridge from 14 degrees to 16 degrees N; covering Leg 209 of the cruises of the drilling vessel JOIDES Resolution; Rio de Janeiro, Brazil, to St. George, Bermuda; Sites 1268-1275; 6 May-6 July 2003 | download |
61% | 139 168 169 | 2000 | Gillis, Kathryn M.; Banerjee, Neil R.: Hydrothermal alteration patterns in supra-subduction zone ophiolites | |
59% | 118 | 1990 | Hebert, Rejean; Constantin, Marc et al.: Hydrothermal circulation in the oceanic layer 3; evidences from Leg 118 gabbroic rocks | |
59% | 91 | 1983 | Natland, James H.; Menard, H. W.: Old ocean crust in the SW Pacific; volcanism hydrothermal processes, and sedimentary history revealed by DSDP Leg 91 coring | |
59% | | 1985 | Leggett, J. K.: Deep-sea pelagic sediments and palaeo-oceanography; a review of recent progress | |
59% | 32 32-304 | 1985 | Ohashi, Masayoshi: Depositional environments and chemical compositions of manganese micronodules | |
59% | 64 | 1981 | Kastner, M.; Gieskes, J. M.: Hydrothermal activity in the Guaymas Basin, Gulf of California | |
59% | | 1988 | Maruyama, S.; Liou, J. G.: Ocean-floor metamorphism at different tectonic settings; a review on the DSDP drilling projects | |
59% | 54 | 1977 | Hekinian, R.; Rosendahl, B. R. et al.: In the East Pacific, Glomar Challenger completes 54th cruise | |
59% | 49 | 1977 | Luyendyk, B.; Cann, J. R. et al.: In the North Atlantic; 'young and hot' drilling | |
59% | 143 | 2000 | Iskhakov, Albert: Ocean floor secondary minerals in volcanoclastites; an attempt of thermodynamic analysis | |
59% | 26 26-251 | 1982 | Easton, A. J.; Joslin, I. E. et al.: Metasomatic alteration of pelagic ooze on spreading ocean ridges | |
59% | 54 54-424 | 1982 | Barnaba, S. P.: Chemistry of minerals of the hydrothermal deposits at the Galapagos spreading center, East Pacific | |
59% | 37 | 1976 | Byerly, G.; Wright, T.: Application of least-squares methods to the determination of the magmatic chemistry of altered sea-floor basalts | |
59% | 26 26-253 | 1976 | Fleet, A. J.; McKelvey, B. C.: Eocene basaltic aquagene tuffs at Site 253, Ninetyeast Ridge | |
59% | 37 | 1976 | Andrews, A. J.; MacRae, N. D. et al.: Low temperature fluid alteration of oceanic layer two basalts, DSDP Leg 37 | |
59% | 139 | 1992 | Marumo, Katsumi: Clay mineralogy of hydrothermally altered sediment of Middle Valley seafloor hydrothermal system | |
59% | 37 | 1979 | Hall, J. M.; Robinson, P. T.: Deep crustal drilling in the North Atlantic Ocean | |
59% | 64 | 1979 | Moore, D. G.; Curray, J. R.: Deep sea drilling in the Gulf of California, a new ocean basin | |
59% | 158 | 1996 | Zhao, X.; Housen, B. et al.: Magnetic property variations in Leg 158 cores and their relation to alteration of the TAG mound | |
59% | 106 139 | 1996 | Duckworth, R. C.: Hydrothermal processes, sulphide deposits and the Ocean Drilling Program | |
59% | | 1989 | Vanko, David A.; Stakes, Debra S.: Petrology of alteration in oceanic layer 3, ODP Hole 735B, Southwest Indian Ridge | |
59% | 37 | 1976 | Scarfe, C. M.; Smith, D. G. W.: Secondary minerals in some basaltic rocks from DSDP Leg 37 | |
59% | 54 | 1979 | Schrader, E. L.; Furbish, W. J.: Geochemical characteristics of oceanic hydrothermal and diagenetic Mn deposits; possible economic applications | |
59% | | 1979 | Lawver, L. A.; Vacquier, V. et al.: Gulf of California IPOD site survey results, Guaymas Basin heat flow | |
59% | 126 | 1993 | Zhou, Gouping; Tazaki, Kazue: Mineralogical assemblages and distribution trends of deep-sea sediments from Izu-Bonin Arc Leg 126, ODP | |
59% | 70 | 1989 | Lazur, Y. M.; Varentsov, I. M. et al.: Dispersed Mn-, Fe-, Ti-, Cu-, and Zn-minerals in hydrothermal and pelagic sediments of the Galapagos Rift Zone | |
59% | | 1991 | Peter, Jan M.; Scott, Steven D.: Hydrothermal mineralization in the Guaymas Basin, Gulf of California | |
59% | 34 | 1974 | Swanson, S. B.; Scott, R. B.: Hydrothermal products of Leg 34 basalts; Deep Sea Drilling Project | |
59% | | 1979 | Leinen, M.; Stakes, D.: Metal accumulation rates in the central equatorial Pacific during Cenozoic time | |
59% | | 1986 | Lazur, 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 | |
59% | 54 | 1978 | Hekinian, R.; Rosendahl, B. R.: Preliminary results of DSDP Leg 54 | |
59% | 53 | 1978 | Mathez, E. A.: Primary sulfides of crystalline submarine basalts | |
59% | 54 54-424 | 1981 | Bonnot-Courtois, Chantal: Distribution des terres rares dans les depots hydrothermaux de la zone FAMOUS et des Galapagos; comparaison avec les sediments metalliferes Distribution of rare earths in hydrothermal deposits from the FAMOUS and Galapagos areas; comparison with metalliferous sediments | |
59% | 139 | 1991 | Davis, Earl E.; Mottl, Michael et al.: Ocean Drilling Program; Leg 139 scientific prospectus; Sedimented ridges; I | |
59% | 54 54-424 | 1980 | Lalou, C.; Brichet, E.: Anomalously high uranium contents in the sediment under Galapagos hydrothermal mounds | |
59% | | 1996 | Halbach, 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) | |
59% | 158 | 1996 | Gemmell, J. Bruce: Subsurface architecture of the TAG hydrothermal mound, Mid-Atlantic Ridge; results of Ocean Drilling Program Leg 158 | |
59% | 158 | 1996 | Honnorez, Jose J.; Alt, Jeffrey C. et al.: Active and fossil hydrothermal alterations of basalt beneath and within the TAG hydrothermal mound | |
59% | | 1980 | Schmincke, H. U.: The ocean crust | |
59% | 139 | 1995 | Marchig, V.; Dietrich, P.: Hydrothermal activity in Middle Valley (East Pacific Rise 48N, Leg 139, ODP); chemical redistribution between sediment, igneous rocks and massive sulfides | |
59% | 174B | 1998 | Becker, Keir; Richter, Carl et al.: Leg 174B revisits Hole 395A; logging and long-term monitoring of off-axis hydrothermal processes in young oceanic crust | |
59% | | 1977 | Ross, D. A.: Results of recent expeditions to the Red Sea; Chain, Glomar Challenger, and Valdivia expeditions | |
59% | 139 158 169 193 | 2003 | Phillips, Neil: Economic geology | |
59% | 64 | 1980 | Gieskes, J.: Intrusion of basaltic sills into highly porous sediments; resulting hydrothermal activity; Guaymas Basin--Gulf of California | |
59% | 70 | 1980 | Honnorez, J.; Von Herzen, R. P.: IPOD Leg 70; comparison between open and closed hydrothermal regimes in young and not so young oceanic crust | |
59% | 34 34-319 | 1977 | Dymond, J.; Corliss, J. B. et al.: History of metalliferous sedimentation at Deep Sea Drilling Site 319, in the South eastern Pacific | |
59% | 158 | 1996 | Alt, Jeffrey C.; Teagle, Damon A. H.: Probing the TAG hydrothermal mound and stockwork; oxygen isotopic profiles from deep ocean drilling | |
59% | | 1995 | Mills, R. A.; Tivey, M. K.: Fluid circulation within the TAG mound | |
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