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

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ScoreExp/Site/HoleYearAuthor/Title Full text
8%70
70-506
70-507
70-509
1983Varentsov, I. M.; Sakharov, B. A. et al.: Hydrothermal deposits of the Galapagos rift zone, Leg 70; mineralogy and geochemistry of major componentsdownload
17%70
70-506
70-509
1983Varnavas, S. P.; Moorby, S. Anthony et al.: Partition geochemistry of sediments from holes 506 and 509B, Deep Sea Drilling Project Leg 70download
67%136
136-843
191
191-1179
2010Vils, F.; Elliott, T. et al.: Effects of seawater alteration on the (super 234) U/ (super 238) U-ratios of mid-ocean ridge basalts
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%168
168-1026
169
2008Walker, Brett D.; McCarthy, Matthew D. et al.: Dissolved inorganic carbon isotopic composition of low-temperature axial and ridge-flank hydrothermal fluids of the Juan de Fuca Ridge
67%139
139-855
1995Webb, Spahr C.; Edwards, R. Nigel: On the correlation of electrical conductivity and heat flow in Middle Valley, Juan de Fuca Ridgedownload
67%193
193-1188
193-1189
2011Webber, A. P.; Roberts, S. et al.: Fluid mixing and thermal regimes beneath the PACMANUS hydrothermal field, Papua New Guinea; helium and oxygen isotope data
67%1932009Webber, Alexander; Roberts, Steve et al.: Fluid mixing and thermal regimes beneath the PACMANUS hydrothermal field, Papua New Guinea; helium oxygen isotopes
10%195
195-1200
2006Wei, Wei; Kastner, Miriam et al.: Geochemical cycling of fluorine, chlorine, bromine, and boron and implications for fluid-rock reactions in Mariana Forearc, South Chamorro Seamount, ODP Leg 195download
13%1461994Westbrook, Graham K.; Carson, Bobb et al.: Leg 146 introduction; Cascadia margindownload
18%1391994Wheat, C. Geoffrey; Boulegue, Jacques et al.: A technique for obtaining pore-water chemical composition from indurated and hydrothermally altered sediment and basalt; the ground rock interstitial normative determination (GRIND)download
67%51
51-417
52
52-417
52-418
53
53-418
1996Wheat, C. Geoffrey; Feely, Richard A. et al.: Phosphate removal by oceanic hydrothermal processes; an update of the phosphorus budget in the oceans
67%139
139-855
2007Wheat, C. Geoffrey; Fisher, Andrew T.: Seawater recharge along an eastern boundary fault in Middle Valley, northern Juan de Fuca Ridgedownload
67%168
168-1025
168-1026
2004Wheat, C. Geoffrey; Jannasch, Hans W. et al.: Venting formation fluids from deep-sea boreholes in a ridge flank setting; ODP Sites 1025 and 1026download
67%168
168-1026
168-1027
2000Wheat, C. Geoffrey; Mottl, Michael J.: Composition of pore and spring waters from Baby Bare; global implications of geochemical fluxes from a ridge flank hydrothermal system
50%1932006Wicker, Steven G.; Vanko, David A.: Sub-seafloor hydrothermal activity at the deep-sea PACMANUS hydrothermal field, Manus Basin, Papua New Guinea; evidence from fluid inclusions in quartz
58%69
69-504
70
70-504
83
83-504
92
92-504
111
111-504
137
137-504
140
140-504
148
148-504
1996Yang, Jianwen; Edwards, R. Nigel: Numerical simulation of oceanic crustal 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
83%1581998You, C. F.; Bickle, M. J.: Evolution of an active sea-floor massive sulphide deposit
83%1994You, Chen-Feng: Lithium, beryllium, and boron isotope geochemistry; implications for fluid processes in convergent margins
83%1581996Zhao, X.; Housen, B. et al.: Magnetic property variations in Leg 158 cores and their relation to alteration of the TAG mound
10%1581998Zhao, Xixi; Housen, Bernie et al.: Magnetic properties of Leg 158 cores; the origin of remanence and its relation to alteration and mineralization of the active TAG mounddownload
83%2000Zhirnov, E. A.; Cherkashev, G. A. et al.: Inner structure of the TAG active hydrothermal mound (by ODP materials)
67%301
301-U1301
2007Ziegelmueller, K.; Niebuhr, M. et al.: Influence of hydrothermal crustal fluids on deep-biosphere populations
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
25%1391994Zierenberg, Robert A.: Data report; Sulfur content of sediment and sulfur isotope values of sulfide and sulfate minerals from Middle Valleydownload
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
22%1692000Zierenberg, Robert A.; Miller, D. Jay: Overview of Ocean Drilling Program Leg 169; sedimented ridges IIdownload
67%139
139-857
169
169-857
1996Zierenberg, Robert; Becker, Keir et al.: Post-drilling experiments and observations of a hydrothermal system
83%3012004Zuehlsdorff, L.; Spiess, V.: Relations between basement tectonics, sediment deformation and fluid flow at the eastern Juan de Fuca Ridge flank; results from very high resolution seismic data
67%84
84-565
1996Zuleger, E.; Gieskes, J. M. et al.: Interstitial water chemistry of sediments of the Costa Rica accretionary complex off the Nicoya Peninsuladownload
67%112
112-683
112-684
112-685
1992von Breymann, M. T.; Suess, E. et al.: Barium transport by fluid through sediments of the Peru continental margin based on the distribution of authigenic barites

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