Mineralogy, geochemistry and sulfur isotope characterization of Cerro de Maimón (Dominican Republic), San Fernando and Antonio (Cuba) lower Cretaceous VMS deposits: Formation during subduction initiation of the proto-Caribbean lithosphere within a fore-arc
Tài liệu tham khảo
Almodóvar, 1998, Geology and genesis of the aznalcollar massive sulfide deposits, Iberian pyrite belt, Spain, Mineral. Deposita, 33, 111
Andreu, 2015, Weathering profile of the Cerro de maimón VMS deposit (Dominican Republic): textures, mineralogy, gossan evolution and mobility of gold and silver, Ore Geol. Rev., 65, 165, 10.1016/j.oregeorev.2014.09.015
Astacio, 2000, Oxygen Isotope and Alteration Geochemistry of the Cerro de Maimón Deposit, Dominican Republic
Augustithis, 1995
Barrie, 2010, Pyrite deformation textures in the massive sulfide ore deposits of the Norwegian caledonides, Tectonophysics, 483, 269, 10.1016/j.tecto.2009.10.024
Berkenbosch, 2012, Mineralogy and formation of black smoker chimneys from brothers submarine volcano, kermadec arc, Econ. Geol., 107, 1613, 10.2113/econgeo.107.8.1613
Bethke, 1971, Distribution of some minor elements between coexisting sulfide minerals, Econ. Geol., 66, 140, 10.2113/gsecongeo.66.1.140
Blein, 2002, Geochemistry of the mabujina complex, central Cuba: implications on the Cuban cretaceous arc rocks, J. Geol., 111, 89, 10.1086/344666
Boschman, 2014, Kinematic reconstruction of the Caribbean region since the early Jurassic, Earth-Sci. Rev., 138, 102, 10.1016/j.earscirev.2014.08.007
Bowin, 1966, Geology of the central Dominican Republic, Geol. Soc. Am. Mem., 98, 11
Browne, 1973, Composition of sphalerites from the Broadlands geothermal field and their significance to sphalerite geothermometry and geobarometry, Econ. Geol., 68, 381, 10.2113/gsecongeo.68.3.381
Brueckner, 2015, Variations of Sulphur isotope signatures in sulphides from the metamorphosed Ming Cu(−Au) volcanogenic massive sulphide deposit, newfoundland Appalachians, Canada, Mineral. Deposita, 50, 619, 10.1007/s00126-014-0567-7
Cabrera, 1986
Çagatay, 1995, A sulfur isotope study of volcanogenic massive sulfide deposits of the eastern black sea province, Turkey, Mineral. Deposita, 30, 55, 10.1007/BF00208877
Canet, 2009, Mineral assemblages of the Francisco I. Madero Zn-Cu-Pb-(Ag) deposit, Zacatecas, México: implications for ore deposit genesis, Ore Geol. Rev., 35, 423, 10.1016/j.oregeorev.2009.02.004
Childe, 2000, Volcanogenic Massive Sulphide Mineralization in the Greater Antilles, 2, 183
Claypool, 1980, The age curves of sulfur and oxygen isotopes in marine sulfate and their mutual interpretation, Chem. Geol., 28, 199, 10.1016/0009-2541(80)90047-9
Cook, 1993, Deformation and metamorphism of massive sulphides at sulitjelma, Norway, Mineral. Mag., 57, 67, 10.1180/minmag.1993.057.386.07
Cook, 2009, Trace and minor elements in sphalerite: a LA–ICPMS study, Geochim. Cosmochim. Acta, 73, 4761, 10.1016/j.gca.2009.05.045
Craig, 2001, Ore-mineral textures and the tales they tell, Can. Mineral., 39, 937, 10.2113/gscanmin.39.4.937
Currie, 2006, The thermal structure of subduction zone back arcs, J. Geophys. Res., 111
de Ronde, 2011, Submarine hydrothermal activity and gold-rich mineralization at brothers volcano, kermade arc, New Zealand, Mineral. Deposita, 46, 541, 10.1007/s00126-011-0345-8
Deschamps, 2010, In situ characterization of serpentinites from forearc mantle wedges: timing of serpentinization and behavior of fluid-mobile elements in subduction zones, Chem. Geol., 269, 262, 10.1016/j.chemgeo.2009.10.002
Deschamps, 2011, Serpentinites act as sponges for fluid-mobile elements in abyssal and subduction zone environments, Terra Nova, 23, 171, 10.1111/j.1365-3121.2011.00995.x
Díaz de Villalvilla, 1994, Consideraciones geoquímicas acerca de los arcos volcánicos de Cuba, 173
Díaz de Villalvilla, 2003, Formación Los Pasos: Geología, Geoquímica y su Comparación con el Caribe
Donnelly, 1980, Igneous series I island arcs: the northeastern Caribbean compared with worldwide island arc assemblages, Bull. Volcanol., 43, 347, 10.1007/BF02598038
Doyle, 2003, Subsea-floor replacement in volcanic-hosted massive sulfide deposits, Ore Geol. Rev., 23, 183, 10.1016/S0169-1368(03)00035-0
Draper, 1996, Thrust emplacement of the Hispaniola peridotite belt: orogenic expression of the mid cretaceous Caribbean arc polarity reversal?, Geology, 24, 1143, 10.1130/0091-7613(1996)024<1143:TEOTHP>2.3.CO;2
Economou-Eliopoulos, 2008, A comparison of high-Au massive sulfide ores hosted in ophiolite complexes of the Balkan peninsula with modern analogues: genetic significance, Ore Geol. Rev., 33, 81, 10.1016/j.oregeorev.2006.10.009
Edmon, 1995, Time-series studies of vent fluids from the TAG and MARK sites (1986, 1990) Mid-Atlantic Ridge: a new solution chemistry model and a mechanism for Cu/Zn zonation, in: massive sulfide ore bodies, 77
Eldridge, 1983, Mineral textures and their bearing on formation of the Kuroko orebodies, Econ. Geol. Monogr., 5, 241
Escuder-Viruete, 2006, Magmatic relationships and ages of Caribbean island-arc tholeiites, boninites and related felsic rocks, Dominican Republic, Lithos, 90, 161, 10.1016/j.lithos.2006.02.001
Escuder-Viruete, 2007, Tectónica y geoquímica de la formación Amina: registro del Arco Isla caribeño primitivo en la cordillera central, república dominicana, Bol. Geol. Min., 118, 221
Escuder-Viruete, 2007, Magmatic relationships between adakites, magnesian andesites and Nb-enriched basalt-andesites from Hispaniola: record of a major change in the Caribbean island arc magma sources, Lithos, 99, 151, 10.1016/j.lithos.2007.01.008
Escuder-Viruete, 2009, Geochemical characteristics of the Río Verde complex, central Hispaniola: implications for the paleotectonic reconstruction of the lower cretaceous Caribbean island-arc, Lithos, 114, 168, 10.1016/j.lithos.2009.08.007
Escuder-Viruete, 2014, Magmatic relationships between depleted mantle harzburgites, boninitic cumulate gabros and subduction-related tholeiitic basalts in the Puerto Plata ophiolitic complex, Dominican Republic: implications for the birth of the Caribbean island-arc, Lithos, 196-197, 261, 10.1016/j.lithos.2014.03.013
Finlow-Bates, 1981, The behavior of so-called immobile elements in hydrothermally altered rocks associated with volcanogenic submarine-exhalative ore deposits, Mineral. Deposita, 16, 319, 10.1007/BF00202743
Fouquet, 1993, Metallogenesis in back-arc environments: the Lau basin example, Econ. Geol., 88, 2154, 10.2113/gsecongeo.88.8.2154
Franklin, 2005, Volcanogenic Massive Sulfide Deposits, 523
Freyssinet, 2005, Ore-forming processes related to lateritic weathering, Econ. Geol., 681
Gallardo-Eupierre, 2001
Galley, 2007, Volcanogenic massive sulphide deposits, 5, 141
García-Casco, 2008, Latest cretaceous collision/accretion between the Caribbean plate and caribeana: origin of metamorphic terranes in the greater Antilles, Int. Geol. Rev., 50, 781, 10.2747/0020-6814.50.9.781
García-Delgado, 1998, Mapa Geológico de Cuba Central (Provincias Cienfuegos, Villa Clara y Sancti Spiritus)
George, 2015, Trace and minor elements in galena: a reconnaissance LA–ICP–MS study, Am. Mineral., 100, 548, 10.2138/am-2015-4862
Gilgen, 2014, Volcanostratigraphic controls on the occurrence of massive sulfide deposits in the semail ophiolite, Oman, Econ. Geol., 109, 1585, 10.2113/econgeo.109.6.1585
Gilligan, 1987, Textural evidences for remobilization in metamorphic environments, Ore Geol. Rev., 2, 205, 10.1016/0169-1368(87)90029-1
Glasby, 2008, Mineralogy and composition of Kuroko deposits from the northeastern hohsu and their possible modern analogues from the Izu-ogasawara (Bonin) arc south of Japan: implications for mode of formation, Ore Geol. Rev., 34, 547, 10.1016/j.oregeorev.2008.09.005
Govindaraju, 1994, Compilation of working values and sample description for 383 geostandards, Geostand. Geoanal. Res., 18, 1, 10.1111/j.1751-908X.1994.tb00502.x
Haase, 2002, Mantle dynamics, element recycling, and magma genesis beneath the kermadec arc-Havre trough, Geochem. Geophys. Geosyst., 3, 1071, 10.1029/2002GC000335
Hannington, 1989, Sulfidation equilibria as guides to gold mineralization in volcanogenic sulfides: evidence from sulfide mineralogy and the composition of sphalerite, Econ. Geol., 84, 1978, 10.2113/gsecongeo.84.7.1978
Hannington, 1998, Comparison of the TAG Mound and Stockwork Complex with Cyprus-Type Massive Sulfide Deposits, 389
Hannington, 1999, Sulfide mineralogy, geochemistry, and ore genesis of the Kidd creek deposit: part II. The Bornite Zone, Econ. Geol. Monogr., 10, 225
Hannington, 1999, Volcanogenic gold in massive sulfide environment, Rev. Econ. Geol., 8, 325
Hart, 2004, Trace element geochemistry and petrogenesis of felsic volcanic rocks associated with volcanogenic Cu–Zn–Pb massive sulphide deposits, Econ. Geol., 99, 1003, 10.2113/gsecongeo.99.5.1003
Hawkesworth, 1993, Mantle and slab contributions in arc magmas, Annu. Rev. Earth Planet. Sci., 21, 175, 10.1146/annurev.ea.21.050193.001135
Herrington, 2005, 6: classification of VMS deposits: lessons from the uralides, Ore Geol. Rev., 27, 203, 10.1016/j.oregeorev.2005.07.014
Herzig, 1988, A Mineralogical, Geochemical and Thermal Profile Trough the Agrokipia “B” Hydrothermal Sulfide Deposit, Troodos Ophiolite Complex, Cyprus, 182
Herzig, 1995, Polymetallic massive sulfides at the modern seafloor: a review, Ore Geol. Rev., 10, 95, 10.1016/0169-1368(95)00009-7
Herzig, 1993, Gold-rich polymetallic sulfides from the lay back arc and implications for the geochemistry of golg in sea-floor hydrothermal system of the southwest Pacific, Econ. Geol., 88, 2182, 10.2113/gsecongeo.88.8.2182
Herzig, 1998, Geochemistry and sulfur isotopic composition of the TAG hydrothermal mound, Mid-Atlantic ridge, 26°N, Proc. Ocean Drill. Program Sci. Results, 158, 47
Hoefs, 2009
Hollis, 2014, Petrochemistry and hydrothermal alteration within the Tyrone igneous complex, Northern Ireland: implications for VMS mineralization in the British and Irish Caledonides, Mineral. Deposita, 49, 575, 10.1007/s00126-013-0508-x
Horan, S.L., 1995. The Geochemistry and Tectonic Significance of the Maimón-Amina Schist's, Cordillera Central, Dominican Republic. Unpublished M.S. thesis, University of Florida, Gainesville, (172 pp).
Huston, 1989, A chemical model for the concentration of gold in volcanogenic massive sulphide deposits, Ore Geol. Rev., 4, 171, 10.1016/0169-1368(89)90017-6
Huston, 1992, Geologic and geochemical controls on the mineralogy and grain size of gold-bearing phases, eastern Australian volcanic-hosted massive sulfide deposits, Econ. Geol., 87, 542, 10.2113/gsecongeo.87.3.542
Huston, 1995, Econ. Geol., 90, 1167, 10.2113/gsecongeo.90.5.1167
Ishizuka, 2011, The timescales of subduction initiation and subsequent evolution of an oceanic island arc, Earth Planet. Sci. Lett., 306, 229, 10.1016/j.epsl.2011.04.006
Ishizuka, 2014, Izu-Bonin-Mariana forearc crust as a modern ophiolite analogue, Elements, 10, 115, 10.2113/gselements.10.2.115
Ishizuka, 2014, Evidence for hydrothermal activity in the earliest stages of intraoceanic arc formation: implications for ophiolite-hosted hydrothermal activity, Econ. Geol., 109, 2159, 10.2113/econgeo.109.8.2159
Iturralde-Vinent, 1998, Sinopsis de la Constitución Geológica de Cuba, 33, 9
Jochum, 1997, Constraints on earth evolution from antimony in mantle-derived rocks, Chem. Geol., 139, 39, 10.1016/S0009-2541(97)00032-6
Jochum, 1996, Extreme enrichement of Sb, Tl and other trace elements in altered MORB, Chem. Geol., 130, 289, 10.1016/0009-2541(96)00014-9
Jolly, 2001, Secular geochemistry of central Puerto Rican island arc lavas: constraints on Mesozoic tectonism in the eastern greater antiles, J. Petrol., 42, 2197, 10.1093/petrology/42.12.2197
Keith, 2014, Effect of temperature, sulfur and oxygen fugacity on the composition of sphalerite from submarine hydrothermal vents, Geology, 42, 699, 10.1130/G35655.1
Kerr, 1999, New plate tectonic model of the Caribbean: implications from a geochemical reconnaissance of Cuban Mesozoic volcanic rocks, Geol. Soc. Am. Bull., 111, 1581, 10.1130/0016-7606(1999)111<1581:ANPTMO>2.3.CO;2
Kesler, 1990, Metallogenic evolution of the Caribbean region, vol. H, 77
Kesler, 1991, Geology of the Maimon Formation, Dominican Republic, 262, 173
Kesler, 2005, Age of the Los ranchos formation, Dominican Republic: timing and tectonic setting of primitive island arc volcanism in the Caribbean region, Geol. Soc. Am. Bull., 117, 987, 10.1130/B25594.1
Kessel, 2005, Trace element signature of subduction-zone fluids, melts and supercritical liquids at 120–180km depth, Nature, 437, 724, 10.1038/nature03971
Kojima, 1985, Phase relations in the Cu–Fe–Zn–S system between 500°C and 300°C under hydrothermal conditions, Econ. Geol., 80, 158, 10.2113/gsecongeo.80.1.158
König, 2012, Selenium and tellurium systematics of the earth's mantle from high precision analyses of ultra-depleted orogenic peridotites, Geochim. Cosmochim. Acta, 86, 354, 10.1016/j.gca.2012.03.014
Kretschmar, 1976, Phase relations involving arsenopyrite in the system Fe-as-S and their application, Can. Mineral., 14, 364
Langmuir, 1977, Petrogenesis of basalts from the FAMOUS area: mid-Atlantic ridge, Earth Planet. Sci. Lett., 36, 133, 10.1016/0012-821X(77)90194-7
Large, 2001, The alteration box plot: a simple approach to understanding the relationship between alteration mineralogy and lithogeochemistry associated with volcanic-hosted massive sulfide deposits, Econ. Geol., 96, 957
Larocque, 1993, Gold distribution in the mobrun volcanic-associated massive sulfide deposit, noranda, Quebec: a preliminary evaluation of the role of metamorphic remobilization, Econ. Geol., 88, 1443, 10.2113/gsecongeo.88.6.1443
Larocque, 1995, Ion-microprobe analysis of pyrite, chalcopyrite and pyrrhotite from the mobrun VMS deposit in the northwestern Quebec: evidence for metamorphic remobilization of gold, Can. Mineral., 33, 373
Lesher, 1986, Composition-volume changes during hydrothermal alteration of andesite at buttercup hill, noranda district, Quebec, Geochim. Cosmochim. Acta, 50, 2693, 10.1016/0016-7037(86)90219-X
Lewis, 1990, Geology and tectonic evolution of the Northern Caribbean margin, 77
Lewis, 2000, The occurrence of volcanogenic massive sulfide deposits in the Maimón Formation, Dominican Republic: the Cerro de Maimón, Loma Pesada and Loma Barbuito deposits, 2, 213
Lewis, 2002, Subdivisión geoquímica del Arco de Isla circum-caribeño, cordillera central dominicana: implicaciones para la formación, acreción y crecimiento cortical en un ambiente intraoceánico, Acta Geol. Hisp., 37, 81
Lewis, 2006, Ophiolite-related ultramafic rocks (serpentinites) in the Caribbean region: a review of the occurrence, composition, origin, Emplacement and Ni-Laterite Soil Formation, Geol. Acta, 4, 237
Lockington, 2014, Trace and minor elements in sphalerite from metamorphosed sulfide deposits, Mineral. Petrol., 108, 873, 10.1007/s00710-014-0346-2
Lydon, 1988, Volcanogenic massive sulfide deposits, part 2: genetic models, 3, 155
Mann, 1991, An overview of the geologic and tectonic development of Española, 262, 1
Marshall, 1987, An introduction to remobilization: information from ore body geometry and experimental considerations, Ore Geol. Rev., 2, 87, 10.1016/0169-1368(87)90025-4
Marshall, 1993, Remobilization, syn-tectonic processes and massive sulfide deposits, Ore Geol. Rev., 8, 39, 10.1016/0169-1368(93)90027-V
Marshall, 2000, Discriminating between regional metamorphic remobilization and syntectonic emplacement in the genesis of massive sulfide ores, 11, 39
Marshall, 2000, Regional metamorphic remobilization: upgrading and formation of ore deposits, 11, 19
Martín, M. and Draper, G., 1999. Mapa Geológico de la Hoja 6172-I (Hatillo) a Escala 1:50 000 (SYSMIN, Proyecto C). Consorcio ITGE-PROINTEC-INYPSA. Dirección General de Minería, Santo Domingo.
McClay, 1983, Deformation and recrystallization of pyrite, Mineral. Mag., 47, 527, 10.1180/minmag.1983.047.345.14
McDonough, 1995, The composition of earth, Chem. Geol., 120, 223, 10.1016/0009-2541(94)00140-4
Meschede, 1986, A method of discriminating between different groups of mid-ocean ridge basalts and continental tholeiites with Nb-Zr-Y diagram, Chem. Geol., 56, 207, 10.1016/0009-2541(86)90004-5
Millán, 1996, Geología del complejo de Mabujina, 147
Mishra, 1988, Geothermometry based on fractionation of Mn and Cd between coexisting sphalerite and galena from some carbonate-hosted sulfide deposits in India, Mineral. Deposita, 23, 179, 10.1007/BF00204298
Misra, 2000
Nelson, 2011, The metalogenic evolution of the greater Antilles, Geol. Acta, 9, 229
Nelson, 2015, Re-os dating of molybdenite from the pueblo Viejo (Au–Ag–Cu–Zn) and douvray Cu-Au districts, Econ. Geol., 110, 1101, 10.2113/econgeo.110.4.1101
Noll, 1996, The role of hydrothermal fluids in the production of subduction zone magmas: evidence from siderophile and chalcophile trace elements and boron, Geochim. Cosmochim. Acta, 60, 587, 10.1016/0016-7037(95)00405-X
Ohmoto, 1986, Stable isotope geochemistry of ore deposits, Rev. Mineral. Geochem., 16, 491
Ohmoto, 1997, Sulfur and carbon isotopes, 517
Pearce, 1996, A user's guide to basalt discrimination diagrams, 12, 79
Pearce, 2008, Geochemical fingerprinting of oceanic basalts with applications to ophiolite classification and the search for Archaean oceanic crust, Lithos, 100, 14, 10.1016/j.lithos.2007.06.016
Pearce, 2014, Immobile elements fingerprinting of ophiolites, Elements, 10, 101, 10.2113/gselements.10.2.101
Pearce, 1995, Tectonic implications of the composition of volcanic arc magmas, Ann. Rev. Earth Planet. Sci., 23, 251, 10.1146/annurev.ea.23.050195.001343
Pearce, 1984, Trace element discrimination diagrams for the tectonic interpretation of granitic rocks, J. Petrol., 25, 956, 10.1093/petrology/25.4.956
Pearce, 1992, Boninite and harzburgite from leg 125 (Bonin-Mariana forearc); a case study of magma genesis during the initial stages of subduction, Proc. Ocean Drill. Program Sci. Results, 125, 623
Pesquera, 1993, Ore metamorphism in sulfide mineralizations from the Cinco villas massif (western Pyrenees, Spain), Econ. Geol., 88, 266, 10.2113/gsecongeo.88.2.266
Petersen, 1992
Piercey, 2007, An overview of the use of petrochemistry in regional exploration for volcanogenic massive sulfide (VMS) deposits, 223
Piercey, 2011, The setting, style, and role of magmatism in the formation of volcanogenic massive sulfide deposits, Mineral. Deposita, 46, 449, 10.1007/s00126-011-0341-z
Pindell, 2012, The greater Antillean arc: early cretaceous origin and proposed relationship to central American subduction mélanges: implications for models of Caribbean evolution, Int. Geol. Rev., 54, 131, 10.1080/00206814.2010.510008
Pisutha-Arnond, 1983, Thermal history and chemical and isotopic compositions of the ore-forming fluids responsible for the Kuroko massive sulfide deposits in the Hokuroku district of Japan, 5, 523
Plank, 2005, Constraints from thorium/lanthanum on sediment recycling at subduction zones and the evolution of the continents, J. Petrol., 46, 921, 10.1093/petrology/egi005
Poulsen, 1995, Volcanic-Associated Massive Sulfide Gold, 183
Proenza, 1998, Una introducción a la metalogenia de Cuba bajo la perspectiva de la tectónica de placas, Acta Geol. Hisp., 33, 89
Proenza, 2006, Primitive cretaceous island-arc volcanic rocks in eastern Cuba: the téneme formation, Geol. Acta, 4, 103
Proenza, 2007, Chromian spinel composition and the platinum-group minerals of the PGE-rich Loma peguera chromitites, Loma Caribe peridotite, Dominican Republic, Can. Mineral., 45, 631, 10.2113/gscanmin.45.3.631
Ramdohr, 1980
Reagan, 2010, Forearc basalts and subduction initiation in the Izu-Bonin-Mariana system, Geochem. Geophys. Geosyst., 11, 10.1029/2009GC002871
Rojas-Agramonte, 2006, Geology, age and tectonic evolution of the sierra maestra mountains, southeastern Cuba, Geol. Acta, 4, 123
Rojas-Agramonte, 2008, Tectonic evolution of the sierra maestra mountains, SE Cuba, during tertiary times: from arc-continent collision to transform motion, J. S. Am. Earth Sci., 26, 125, 10.1016/j.jsames.2008.05.005
Rojas-Agramonte, 2011, Timing and evolution of cretaceous island arc magmatism in central Cuba: implications for the history of arc system in the northwestern Caribbean, J. Geol., 119, 619, 10.1086/662033
Russell, 2002, Volcanogenic massive sulfide deposits of Cuba, 2, 241
Sack, 2002, Retrograde Ag-enrichment in fahlores from the Coeur d'Alene mining district, Idaho, USA, Mineral. Mag., 66, 215, 10.1180/0026461026610024
Sack, 2003, Fahlore as petrogenetic indicator: keno hill Ag–Pb–Zn district, Yukon, Canada, Mineral. Mag., 67, 1023, 10.1180/0026461036750141
Sales, 1951, Effect of post-ore dike intrusion on butte ore minerals, Econ. Geol., 46, 813, 10.2113/gsecongeo.46.8.813
Sangster, 1971, Sulphur isotopes, stratabound sulphide deposits, and ancient seas, 295
Sangster, 1976, Sulphur and lead isotopes in strata-bound deposits, vol. 2, 219
Schulz, 2012, Regional environment in volcanogenic massive sulfide occurrence model, 5
Scott, 1973, Experimental calibration of the sphalerite geobarometer, Econ. Geol., 68, 466, 10.2113/gsecongeo.68.4.466
Scott, 1976, Application of sphalerite geobarometer to regionally metamorphosed terrains, Am. Mineral., 61, 661
Scott, 1983, Chemical behaviour of sphalerite and arsenopyrite in hydrothermal and metamorphic environments, Mineral. Mag., 47, 427, 10.1180/minmag.1983.047.345.03
Scott, 1971, Sphalerite geothermometry and geobarometry, Econ. Geol., 66, 653, 10.2113/gsecongeo.66.4.653
Seal, 2012, Geoenvironmental features in volcanogenic massive sulfide occurrence model, 319
Shanks, 2012, Introduction to volcanogenic massive sulfide occurrence model, 5
Shanks, 1981, Seawater sulfate reduction and sulfur isotope fractionation in basaltic systems: interaction of seawater with fayalite and magnetite at 200–350°C, Geochim. Cosmochim. Acta, 45, 1977, 10.1016/0016-7037(81)90054-5
Shanks, 1995, Stable isotopes in midocean ridge hydrothermal systems: interaction between fluids, minerals and organisms, 194
Sharman, 2015, Sulfur isotope and trace element data from ore sulfides in the noranda district (Abitibi, Canada): implications for volcanogenic massive sulfide deposit genesis, Miner. Deposita, 10.1007/s00126-014-0559-7
Shervais, 1982, Ti–V plots and the petrogenesis of modern and ophiolitic lavas, Earth Planet. Sci. Lett., 59, 101, 10.1016/0012-821X(82)90120-0
Singer, 1986, Descriptive model of Cyprus massive sulfide, 1693, 131
Solomon, 1988, Mineral deposits and sulfur isotope abundances in the mount read volcanics between Que river and mount Darwin, Tasmania, Econ. Geol., 83, 1307, 10.2113/gsecongeo.83.7.1307
Solomon, 2004, Nature and origin of the fluids responsible for forming the hellyer Zn–Pb–Cu, volcanic-hosted massive sulphide deposit, Tasmania, using fluid inclusions, and stable and radiogenic isotopes, Ore Geol. Rev., 25, 89, 10.1016/j.oregeorev.2003.11.001
Stanton, 1990, Magmatic evolution and the ore type-lava type affiliations of volcanic-exhalative ores, 14, 101
Stern, 2004, Subduction initiation: spontaneous and induced, Earth Planet. Sci. Lett., 226, 275, 10.1016/S0012-821X(04)00498-4
Stern, 1992, Subduction zone infancy; examples from Eocene Izu-Bonin-Mariana and Jurassic California arcs, Geol. Soc. Am. Bull., 104, 1621, 10.1130/0016-7606(1992)104<1621:SZIEFT>2.3.CO;2
Sun, 1989, Chemical and isotopic systematics of oceanic basalts: implication for mantle composition and processes, 42, 313
Tesfaye Firdu, 2010
Timm, 2012, Sources of chalcophile and siderophile elements in kermadec arc lavas, Econ. Geol., 107, 1527, 10.2113/econgeo.107.8.1527
Tolkunov, 1974, Características Comparativas de los Yacimientos de Cobre de Cuba, 7
Tornos, 2006, Environment of formation and styles of volcanogenic massive sulfides: the Iberian pyrite belt, Ore Geol. Rev., 28, 259, 10.1016/j.oregeorev.2004.12.005
Torres-Zafra, 2013, Perspectivas para metales base y preciosos en el Arco volcánico cretácico de Cuba central, 1, 65
Torró, 2015
Torró, 2014, Mineralogy of the Doña Amanda prospect, Bayaguana, Dom. Rep.: a transitional epithermal-porphyry deposit in Los Ranchos Formation?, Macla, 19
Toulmin, 1964, A thermodynamic study of pyrite and pyrrothite, Geochim. Cosmochim. Acta, 49, 2221
Trout, 2013, Perilya limited: successful mining and exploration in the Dominican Republic, GE04
Velasco, 2014, El Oro asociado a los sulfuros masivos de la faja pirítica ibérica, Macla, 19
Velasco, 1998, A new sulfur isotopic study of some Iberian pyrite belt deposits: evidence of a textural control on Sulphur isotope composition, Mineral. Deposita, 34, 4, 10.1007/s001260050182
Vokes, 1969, A review of metamorphism of sulphide deposits, Earth Sci. Rev., 6, 99, 10.1016/0012-8252(69)90080-4
Watkins, 1990
Winchester, 1977, Geochemical discrimination of different magma series and their differentiation products using immobile elements, Chem. Geol., 20, 325, 10.1016/0009-2541(77)90057-2
Yesares, 2014, Supergene enrichment of precious metals by natural amalgamation in the Las cruces weathering profile (Iberian pyrite belt, SW Spain), Ore Geol. Rev., 58, 14, 10.1016/j.oregeorev.2013.10.004
Zheng, 2015, As–Sb–Bi–Au mineralization in the baogutu gold deposit, Xinjiang, NW Xina, Ore Geol. Rev., 69, 17, 10.1016/j.oregeorev.2015.01.019
