Nature and source of the ore-forming fluids associated with orogenic gold deposits in the Dharwar Craton
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Anand, 2010, Pb, Sr and Nd isotope systematics of metavolcanic rocks of the Hutti greenstone belt, Eastern Dharwar craton: constraints on age, duration of volcanism and evolution of mantle sources during Late Archean, Journal of Asian Earth Sciences, 39, 1, 10.1016/j.jseaes.2010.02.010
Balakrishnan, 1990, Pb and Nd isotope constraints on the origin of high Mg and tholeiitic amphibolites, Kolar Schist Belt, South India, Contributions to Mineralogy and Petrology, 107, 279, 10.1007/BF00325099
Benning, 1996, Hydrosulphide complexing of gold (I) in hydrothermal solutions from 150 to 500°C and 500 to 1500 bars, Geochimica et Cosmochimica Acta, 60, 1849, 10.1016/0016-7037(96)00061-0
Bhattacharya, 2011, Heterogeneity in fluid characteristics in the Ramagiri–Penakacherla sector of the Eastern Dharwar Craton: implications to gold metallogeny, Russian Geology and Geophysics, 52, 1436, 10.1016/j.rgg.2011.10.012
Bhattacharya, 2014, Oxygen isotope ratio of quartz veins from the auriferous Ramagiri–Penakacherla schist belt and surrounding granitoids in the Eastern Dharwar craton: a case for a possible link between gold mineralization and granite magmatism, Ore Geology Reviews, 63, 201, 10.1016/j.oregeorev.2014.04.023
Bierlein, 2001, A geochronological framework for orogenic gold mineralization in central Victoria, Australia, Mineralium Deposita, 36, 741, 10.1007/s001260100203
Brugger, 1998, Scheelite-powellite and paraniite-(Y) from the Fe-Mn deposit at Fianel, Eastern Swiss Alps, American Mineralogist, 83, 1100, 10.2138/am-1998-9-1019
Brugger, 2000, Inhomogeneous distribution of REE in scheelite and dynamics of Archaean hydrothermal systems (Mt. Charlotte and Drysdale gold deposits, Western Australia), Contributions to Mineralogy and Petrology, 139, 251, 10.1007/s004100000135
Cabral, 2012, Boron-isotopic constraints on the petrogenesis of hematitic phyllite in the southern Serra do Espinhaço, Minas Gerais, Brazil, Lithos, 140, 224, 10.1016/j.lithos.2012.01.011
Cavarretta, 1990, Schorl–dravite–ferridravite tourmalines deposited by hydrothermal magmatic fluids during early evolution of the Larderello geothermal field, Italy, Economic Geology, 85, 1236, 10.2113/gsecongeo.85.6.1236
Chadwick, 2003, The Chitradurga Schist Belt and its adjacent plutonic rocks, NW of Thngabhadra, Karnataka: a duplex in the late Archaean convergent setting of the Dharwar Craton, Journal of the Geological Society of India, 61, 645
Chadwick, 2000, The Dharwar craton, southern India, interpreted as the result of late Archean oblique convergence, Precambrian Research, 99, 91, 10.1016/S0301-9268(99)00055-8
Champion, 1992, Petrogenesis of felsic I-type granites—an example from Queensland, Transactions of the Royal Society of Edinburgh, Earth Sciences, 83, 115, 10.1017/S026359330000780X
Chardon, 2002, Archean granite greenstone tectonics at Kolar (South India): interplay of diapirism and bulk inhomogeneous shortening during juvenile magmatic accretion, Tectonics, 21, 7, 10.1029/2001TC901032
Chinnasamy, 2013, Greenstone metamorphism, hydrothermal alteration, and gold mineralization in the genetic context of the granodiorite-hosted gold deposit at Jonnagiri, eastern Dharwar Craton, India, Economic Geology, 108, 1015, 10.2113/econgeo.108.5.1015
Chinnasamy, 2017, Genetic implications of fluid-deposited disordered graphite and methane-rich inclusions in the Granodiorite-hosted Gold deposit at Jonnagiri, Eastern Dharwar Craton, India, Ore Geology Reviews, 89, 587, 10.1016/j.oregeorev.2017.07.006
Cook, 2013, Arsenopyrite-pyrite association in an orogenic gold ore: tracing mineralization history from textures and trace elements, Economic Geology, 108, 1273, 10.2113/econgeo.108.6.1273
Craig, 1993, The metamorphism of pyrite and pyritic ores: an overview, Mineralogical Magazine, 57, 3, 10.1180/minmag.1993.057.386.02
Craig, 1998, Pyrite: physical and chemical textures, Mineralium Deposita, 34, 82, 10.1007/s001260050187
Curtis, 1993
Curtis, 1995
Eggler, 1979, The system NaAlSi3O8-H2O-CO2 to 20 kbar pressure: I. Compositional and thermodynamic relations of liquids and vapors coexisting with albite, American Mineralogist, 64, 1036
Elmer, 2006, Devolatilization of metabasic rocks during greenschist–amphibolite facies metamorphism, Journal of Metamorphic Geology, 24, 497, 10.1111/j.1525-1314.2006.00650.x
Evans, 2006, Rock-buffering of auriferous fluids in altered rocks associated with the Golden Mile-style mineralization, Kalgoorlie gold field, Western Australia, Economic Geology, 101, 805, 10.2113/gsecongeo.101.4.805
Garofalo, 2014, Physical-chemical properties and metal budget of Au-transporting hydrothermal fluids in orogenic deposits, vol. 402, 71
Ghaderi, 1999, Rare earth element systematics in scheelites from hydrothermal gold deposits in the Kalgoorlie–Norseman region, Western Australia, Economic Geology, 94, 423, 10.2113/gsecongeo.94.3.423
Giritharan, 1998, Geochemistry of the metavolcanics of the Hutti-Maski schist belt, South India: implications to gold metallogeny in the eastern Dharwar Craton, Journal of the Geological Society of India, 51, 583
Goldfarb, 2015, Orogenic gold: common or evolving fluid and metal sources through time, Lithos, 233, 2, 10.1016/j.lithos.2015.07.011
Goldfarb, 2008, Orogenic gold and evolution of the Cordilleran orogen, 311
Groves, 2003, Gold deposits in metamorphic belts: overview of current understanding, outstanding problems, future research, and exploration significance, Economic Geology, 99, 1
Groves, 1998, Orogenic gold deposits: a proposed classification in the context of their crustal distribution and relationship to other gold deposit types, Ore Geology Reviews, 13, 7, 10.1016/S0169-1368(97)00012-7
Gupta, 2014, Tourmaline from the Archean GR Halli gold deposit, Chitradurga greenstone belt, Dharwar craton (India): implications for the gold metallogeny, Geoscience Frontiers, 5, 877, 10.1016/j.gsf.2013.12.004
Harder, 1970, Boron content in sediments as a tool in facies analysis, Sedimentary Geology, 4, 153, 10.1016/0037-0738(70)90009-6
Hagemann, 2000, Archean orogenic lode gold deposits, Reviews in Economic Geology, 13, 9
Hazarika, 2013, Multi-stage growth and invisible gold distribution in pyrite from the Kundarkocha sediment-hosted gold deposit, eastern India, Ore Geology Reviews, 55, 134, 10.1016/j.oregeorev.2013.05.006
Hazarika, 2015, Neoarchean greenstone metamorphism in the eastern Dharwar Craton, India: constraints from Monazite U-Th-Pbtotal ages and PT pseudosection calculations, The Journal of Geology, 123, 429, 10.1086/683334
Hazarika, 2015, Diverse tourmaline compositions from orogenic gold deposits in the Hutti-Maski Greenstone Belt, India: implications for sources of ore-forming fluids, Economic Geology, 110, 337, 10.2113/econgeo.110.2.337
Hazarika, 2016, Scheelite, apatite, calcite and tourmaline compositions from the late Archean Hutti orogenic gold deposit: implications for analogous two stage ore fluids, Ore Geology Reviews, 72, 989, 10.1016/j.oregeorev.2015.09.004
Hazarika, 2017, Trace element geochemistry of pyrite and arsenopyrite: ore genetic implications for late Archean orogenic gold deposits in southern India, Mineralogical Magazine, 81, 661, 10.1180/minmag.2016.080.128
Henry, 2012, Tourmaline at diagenetic to low-grade metamorphic conditions: its petrologic applicability, Lithos, 154, 16, 10.1016/j.lithos.2012.08.013
Hoefs, 2009
Jayananda, 2006, 2.61 Ga potassic granites and crustal reworking in the Western Dharwar Craton (India): tectonic, geochronologic and geochemical constraints, Precambrian Research, 150, 1, 10.1016/j.precamres.2006.05.004
Jayananda, 2013, Neoarchean greenstone volcanism and continental growth, Dharwar craton, southern India: constraints from SIMS U–Pb zircon geochronology and Nd isotopes, Precambrian Research, 227, 55, 10.1016/j.precamres.2012.05.002
Jiang, 2002, Chemical and boron isotopic compositions of tourmaline from the Archean Big Bell and Mount Gibson gold deposits, Murchison Province, Yilgarn craton, Western Australia, Chemical Geology, 188, 229, 10.1016/S0009-2541(02)00107-9
Jiang, 2004, Trace and rare-earth element geochemistry in tourmaline and cassiterite from the Yunlong tin deposit, Yunnan, China: implication for migmatitic–hydrothermal fluid evolution and ore genesis, Chemical Geology, 209, 193, 10.1016/j.chemgeo.2004.04.021
Kerrich, 1983, vol. 27
Kerrich, 1989, Archean gold-relationship to granulite formation or felsic intrusions?, Geology, 17, 1011, 10.1130/0091-7613(1989)017<1011:AGRTGF>2.3.CO;2
Kerrich, 1991, Mesothermal gold deposits: a critique of genetic hypothesis, 13
Klein, 1993, vol. 527
Kolb, 2004, Development of fluid conduits in the auriferous shear zones of the Hutti Gold Mine, India: evidence for spatially and temporally heterogeneous fluid flow, Tectonophysics, 378, 65, 10.1016/j.tecto.2003.10.009
Kolb, 2005, Relative timing of deformation and two-stage gold mineralization at the Hutti Mine, Dharwar Craton, India, Mineralium Deposita, 40, 156, 10.1007/s00126-005-0475-y
Krienitz, 2008, Hydrothermal gold mineralization at the Hira-Buddini gold mine, India: constraints on fluid evolution and fluid sources from boron isotopic compositions of tourmaline, Mineralium Deposita, 43, 421, 10.1007/s00126-007-0172-0
Krogstad, 1991, U–Pb ages of zircon and sphene for two gneiss terranes adjacent to the Kolar Schist Belt, South India: evidence for separate crustal evolution histories, Journal of Geology, 99, 801, 10.1086/629553
Large, 2009, Gold and trace element zonation in pyrite using a laser imaging technique: implications for the timing of gold in orogenic and Carlin-style sediment-hosted deposits, Economic Geology, 104, 635, 10.2113/gsecongeo.104.5.635
Large, 2007, Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena gold province, Russia, Economic Geology, 102, 1233, 10.2113/gsecongeo.102.7.1233
Manikyamba, 2004, Gold mineralisation and alteration of Penakacherla schist belt, India, constraints on Archaean subduction and fluid processes, Ore Geology Reviews, 24, 199, 10.1016/j.oregeorev.2003.06.001
McCuaig, 1998, P–T-t-deformation-fluid characteristics of lode gold deposits: evidence from alteration systematics, Ore Geology Reviews, 12, 381, 10.1016/S0169-1368(98)00010-9
Mernagh, 2013, An evaluation of hydrogen sulfide in orogenic gold fluids and the uncertainties associated with vapor-rich fluid inclusions, Geofluids, 13, 494, 10.1111/gfl.12067
Mikucki, 1998, Hydrothermal transport and depositional processes in Archean lode-gold systems: a review, Ore Geology Reviews, 13, 307, 10.1016/S0169-1368(97)00025-5
Mishra, 2008, Metamorphism, fluid flux, and fluid evolution relative to gold mineralization in the Hutti-Maski Greenstone Belt, Eastern Dharwar Craton, India, Economic Geology, 103, 801, 10.2113/gsecongeo.103.4.801
Mishra, 2005, Fluid inclusion characteristics of the Uti gold deposit, Hutti-Maski greenstone belt, southern India, Ore Geology Reviews, 26, 1, 10.1016/j.oregeorev.2004.10.002
Mishra, 1999, Fluid evolution in the Kolar Gold Field: evidence from fluid inclusion studies, Mineralium Deposita, 34, 173, 10.1007/s001260050194
Moyen, 2003, Syn-tectonic granite emplacement at different structural levels: the Closepet granite, South India, Journal of Structural Geology, 25, 611, 10.1016/S0191-8141(02)00046-9
Narayanaswami, 1960, Structural control and localization of gold-bearing lodes, Kolar gold field, India, Economic Geology, 55, 1429, 10.2113/gsecongeo.55.7.1429
Nesbit, 1988, The gold deposit continuum: a genetic model for lode Au-mineralization in the continental crust, Geology, 15, 1044, 10.1130/0091-7613(1988)016<1044:GDCAGM>2.3.CO;2
Nesbitt, 1991, Phanerozoic gold deposits in tectonically active continental margins, 104
Nesbitt, 1991, Stable isotopic constrains on the nature of the by syn-tectonic fluid regime of the Canadian Cordillera, Geophysical Research Letters, 18, 963, 10.1029/91GL00914
Pal, 2002, Alteration geochemistry and fluid inclusion characteristics of the greenstone hosted gold deposit at Hutti, eastern Dharwar craton, India, Mineralium Deposita, 37, 722, 10.1007/s00126-002-0257-8
Pal, 2003, Epigenetic nature of the BIF-hosted gold mineralization at Ajjanahalli, southern India: evidence from ore petrography and fluid inclusion studies, Gondwana Research, 6, 531, 10.1016/S1342-937X(05)71004-2
Pandalai, 2003, Dissolution channels in quartz and the role of pressure changes in gold and sulfide deposition in the Archean, greenstone-hosted, Hutti gold deposit, Karnataka, India, Mineralium Deposita, 38, 597, 10.1007/s00126-002-0345-9
Pitcairn, 2015, Metabasalts as sources of metals in orogenic gold deposits, Mineralium Deposita, 50, 373, 10.1007/s00126-014-0547-y
Pitcairn, 2014, The gold conveyor belt: large-scale gold mobility in an active orogen, Ore Geology Reviews, 62, 129, 10.1016/j.oregeorev.2014.03.006
Powell, 1991, Metamorphism in Archaean greenstone belts: calculated fluid compositions and implications for gold mineralization, Journal of Metamorphic Geology, 9, 141, 10.1111/j.1525-1314.1991.tb00510.x
Raimbault, 1993, REE fractionation between scheelite and apatite in hydrothermal conditions, American Mineralogist, 78, 1275
Rauchenstein-Martinek, 2014, Gold concentrations in metamorphic fluids – a LA-ICPMS study of fluid inclusions from the Alpine orogenic belt, Chemical Geology, 385, 70, 10.1016/j.chemgeo.2014.07.018
Rao, 2001, Interpretation of geological characteristic of Dona gold prospect, Jonnagiri schist belt, Kurnool district, Andhra Pradesh, Geological Survey of India Special Publication, 58, 217
Ridley, 2000, Fluid chemistry of orogenic lode gold deposits and implications for genetic models, Reviews in Economic Geology, 13, 141
Ridley, 1996, Archean lode-gold deposits: fluid flow and chemical evolution in vertically extensive hydrothermal systems, Ore Geology Reviews, 10, 279, 10.1016/0169-1368(95)00027-5
Rogers, 2007, Tectono-magmatic evolution of the Hutti-Maski Greenstone Belt, India: constrained using geochemical and geochronological data, Journal of Asian Earth Sciences, 31, 55, 10.1016/j.jseaes.2007.04.003
Rogers, 2013, Two stages of gold mineralization at Hutti mine, India, Mineralium Deposita, 48, 99, 10.1007/s00126-012-0416-5
Santosh, 1986, Ore fluids in the auriferous champion reef of Kolar, south India, Economic Geology, 81, 1546, 10.2113/gsecongeo.81.6.1546
Sarangi, 2012, Carbon isotope studies of auriferous quartz carbonate veins from two orogenic gold deposits from the Neoarchean Chitradurga schist belt, Dharwar craton, India: evidence for mantle/magmatic source of auriferous fluid, Journal of Asian Earth Sciences, 52, 1, 10.1016/j.jseaes.2012.02.004
Saravanan, 2009, Uniformity in sulfur isotope composition in the orogenic gold deposits from the Dharwar Craton, southern India, Mineralium Deposita, 44, 597, 10.1007/s00126-009-0241-7
Saravanan, 2009, P–T conditions of mineralization in the Jonnagiri granitoid-hosted gold deposit, eastern Dharwar Craton, southern India: constraints from fluid inclusions and chlorite thermometry, Ore Geology Reviews, 36, 333, 10.1016/j.oregeorev.2009.07.004
Sarma, 2008, Timing of gold mineralization in the Hutti gold deposit, Dharwar craton, south India, Economic Geology, 103, 1715, 10.2113/gsecongeo.103.8.1715
Sarma, 2011, Archaean gold mineralization synchronous with late cratonization of the Western Dharwar Craton, India: 2.52 Ga U–Pb ages of hydrothermal monazite and xenotime in gold deposits, Mineralium Deposita, 46, 273, 10.1007/s00126-010-0326-3
Selvaraja, 2017, Atmospheric sulfur in the orogenic gold deposits of the Archean Yilgarn Craton, Australia, Geology, 45, 691
Sengupta, 2012, Tectonic amalgamation of crustal blocks along Gadag-Mandya Shear Zone in Dharwar Craton of southern India, Journal of the Geological Society of India, 80, 75, 10.1007/s12594-012-0120-1
Sheshadri, 1988, Indian gold production, 435
Sibson, 1988, High-angle reverse faults, fluid-pressure cycling, and mesothermal gold-quartz deposits, Geology, 16, 551, 10.1130/0091-7613(1988)016<0551:HARFFP>2.3.CO;2
Siva Siddaiah, 1989, The geologic setting, mineralogy, geochemistry and genesis of gold deposits of the Archaean Kolar Schist belt, India, Economic Geology, 84, 2155, 10.2113/gsecongeo.84.8.2155
Slack, 2011, Tourmaline as a recorder of ore-forming processes, Elements, 7, 321, 10.2113/gselements.7.5.321
Swain, 2015, Isotope (C and O) composition of auriferous quartz carbonate veins, central lode system, Gadag Gold Field, Dharwar Craton, India: implications to source of ore fluids, Ore Geology Reviews, 70, 305, 10.1016/j.oregeorev.2015.03.020
Taylor, 1991, Mesozoic “Mother Lode Type” gold deposits in North America: primary vs. secondary (meteoric) fluids [abs.], Geological Society of America Abstracts with Programs, 23, 174
Tomkins, 2010, Windows of metamorphic sulfur liberation in the crust: implications for gold deposit genesis, Geochimica et Cosmochimica Acta, 74, 3246, 10.1016/j.gca.2010.03.003
Uspensky, 1998, REE geochemistry systematics of scheelite from the Alps using luminescence spectroscopy: from global regularities to facies control, Schweizerische Mineralogische und Petrographische Mitteilungen, 78, 33
Vasudev, 2009, Field guide to selected gold prospects in Karnataka and Andhra Pradesh, Geological Society of India Miscellaneous Publication, 63, 49
Vasudev, 2000, Rapid development of late Archean Hutti schist belt, northern Karnataka: implications of new field data and SHRIMP zircon ages, Journal of the Geological Society of India, 55, 529
Walker, 1989, Re-Os, Rb-Sr and O isotopic systematics of the Archean Kolar schist belt, Karnataka, India, Geochimica et Cosmochimica Acta, 53, 3005, 10.1016/0016-7037(89)90176-2
White, 2003, A mineral equilibria study of the hydrothermal alteration in mafic greenschist facies rocks at Kalgoorlie, Western Australia, Journal of Metamorphic Geology, 21, 455, 10.1046/j.1525-1314.2003.00454.x
Wyman, 1989, Archean shoshonitic lamprophyres associated with Superior Province gold deposits: distribution, tectonic setting, noble metal abundances, and significance for gold mineralization, Economic Geology Monograph, 6, 651