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First report on the occurrence of CO2-bearing fluid inclusions in the Meiduk porphyry copper deposit, Iran: implications for mineralisation processes in a continental collision setting

Ahmadian, J., Haschke, M., McDonald, I., Regelous, M., Ghorbani, M., Emami, M. & Murata, M., 2009. High magmatic flux during Alpine-Himalayan collision: Constraints from the Kal-e-Kafi complex, central Iran. Geological Society of America Bulletin 121, 857-868.10.1130/B26279.1Search in Google Scholar

Alavi, M., 2007. Structure of the the Zagros fold-thrust belt in Iran. American Journal of Science 307, 1064-1095.10.2475/09.2007.02Search in Google Scholar

Asadi, S., 2013. Selective geochemistry of barren and productive porphyry copper deposits in Urumiyeh- Dokhtar volcano-magmatic belt. National Iranian Copper Industries Company Internal Report (258/M/90/D) 2, 22-45.Search in Google Scholar

Asadi, S., Moore, F. & Fattahi, N., 2013. Fluid inclusion and stable isotope constraints on the genesis of the Jian copper deposit, Sanandaj-Sirjan metamorphic zone, Iran. Geofluids 13, 66-81.10.1111/gfl.12013Search in Google Scholar

Bakker, R.J., 2003. Package FLUIDS 1. Computer programs for analysis of fluid inclusion data and for modelling bulk fluid properties. Chemical Geology 194, 3-23.10.1016/S0009-2541(02)00268-1Search in Google Scholar

Bodnar, R.J., 1993. Revised equation and table for determining the freezing point depression of H2O-NaCl solutions. Geochimica et Cosmochimica Acta 57, 683-684.10.1016/0016-7037(93)90378-ASearch in Google Scholar

Bodnar, R.J., 1995. Fluid inclusion evidence for a magmatic source for metals in porphyry copper deposits. Mineralogical Association of Canada Short Course Series 23, 139-152.Search in Google Scholar

Boomeri, M., Nakashima, K. & Lentz, D.R., 2009. The Miduk porphyry Cu deposit, Kerman, Iran: a geochemical analysis of the potassic zone including halogen element systematics related to Cu mineralization processes. Journal of Geochemical Exploration 103, 17-29.10.1016/j.gexplo.2009.05.003Search in Google Scholar

Bowers, T.S. & Helgeson, H.C., 1983. Calculation of the thermodynamic and geochemical consequences of nonideal mixing in the system H2O-CO2-NaCl on phase relations in geological systems: equation of state for H2O-CO2-NaCl fluids at high pressures and temperatures. Geochimica et Cosmochimica Acta 47, 1247-1275.10.1016/0016-7037(83)90066-2Search in Google Scholar

Brown, P.E., 1989. Flincor: a microcomputer program for the reduction and investigation of fluid inclusion data. American Mineralogist 74, 1390-1393.Search in Google Scholar

Brown, P.E. & Hagemann, S.G., 1994. MacFlinCor: A computer program for fluid inclusion data reduction and manipulation. [In:] B. De Vivo & M.L. Frezzotti (Eds): Fluid inclusions in minerals: methods and applications. International Mineralogical Association 16th Short Course of the Working Group, Portignano-Siena, Italy, 231-250.Search in Google Scholar

Burke, E.A.J., 2001. Raman microspectrometry of fluid inclusions. Lithos 55, 139-158.10.1016/S0024-4937(00)00043-8Search in Google Scholar

Castillo, P.R., 2006. An overview of adakite petrogenesis. Chinese Science Bulletin 51, 257-268.10.1007/s11434-006-0257-7Search in Google Scholar

Castillo, P.R., 2012. Adakite petrogenesis. Lithos 135, 304-316.10.1016/j.lithos.2011.09.013Search in Google Scholar

Chen, Y.J. & Fu, S.G., 1992. Gold mineralization in West Henan, China. China Seismological Press, Beijing, 234 pp.Search in Google Scholar

Chen, Y.J. & Wang, Y., 2011. Fluid inclusion study of the Tangjiaping Mo deposit, Dabie Shan, Henan Province: implications for the nature of porphyry systems of postcollisional tectonic settings. International Geology Review 53, 635-655.10.1080/00206811003783422Search in Google Scholar

Chen, Y.J., Ni, P., Fan, H.R., Pirajno, F., Lai, Y., Su, W.C. & Zhang, H., 2007. Diagnostic fluid inclusions of different types hydrothermal gold deposits. Acta Petrologica Sinica 23, 2085-2108.Search in Google Scholar

Chen,Y.J. & Li, N., 2009. Diagnostic fluid inclusion and wallrock alteration of intrusionrelated hypothermal ore-systems (porphyry, skarn, breccia pipe, vein and IOCG) formed in intracontinental settings: origin and difference from those in volcanic arc. Acta Petrologica Sinica 25, 2477-2508.Search in Google Scholar

Cline, J.S. & Bodnar, R.J., 1991. Can economic porphyry copper mineralization be generated by a typical calc-alkaline melt? Journal of Geophysical Research 96, 8113-8126.10.1029/91JB00053Search in Google Scholar

Collins, P.L.F., 1979. Gas hydrates in CO2-bearing fluid inclusions and the use of freezing data for estimation of salinity. Economic Geology 74, 1435-1444.10.2113/gsecongeo.74.6.1435Search in Google Scholar

Conly, A.G., Beaudoin, G. & Scott, S.D., 2006. Isotopic constraints on fluid evolution and precipitation mechanisms for the Boléo Cu-Co-Zn district, Mexico. Mineralium Deposita 41, 27-151.10.1007/s00126-005-0045-3Search in Google Scholar

Dehghani, G.A. & Makris, T., 1983. The gravity field and crustal structure of Iran. Geological Survey of Iran Report 51, 51-68.Search in Google Scholar

Dercourt, J., Zonenshain, L., Ricou, L.E., Kazmin, G., LePichon, X., Knipper, A.L., Grandjacquet, C., Sbortshikov, I.M., Geyssant, J., Lepvrier, C., Pechersky, D.H., Boulin, J., Sibuet, J.C., Savostin, L.A., Sorokhtin, O., Westphal, M., Bazhenov, M.L., Lauer, J.P. & Biju-Duval, B., 1986. Geological evolution of the Tethys belt from the Atlantic to Pamirs since the Lias. Tectonophysics 123, 241-315.10.1016/0040-1951(86)90199-XSearch in Google Scholar

Dewey, J.F., Pitman, W.C., Ryan, W.B. & Bonnin, J., 1973. Plate tectonics and the evolution of the Alpine system. Geological Society of America Bulletin 84, 3137-3180.10.1130/0016-7606(1973)84<3137:PTATEO>2.0.CO;2Search in Google Scholar

Dimitrijevic, M.D., 1973. Geology of the Kerman region. Geological Survey of Iran Report 52, 245-334.Search in Google Scholar

Dreher, A.M., Xavier, R.P., Taylor, B.E. & Martini, S., 2007. New geologic, fluid inclusion and stable isotope studies on the controversial Igarapé Bahia Cu-Au deposit, Carajás Province, Brazil. Mineralium Deposita 43, 161-184.10.1007/s00126-007-0150-6Search in Google Scholar

Dubessy, J., Buschaert, S., Lamb, W., Pironon, J. & Thiery, R., 2001. Methane-bearing aqueous fluid inclusions: raman analysis, thermodynamic modeling and application to petroleum basins. Chemical Geology 173, 193-205.10.1016/S0009-2541(00)00275-8Search in Google Scholar

Fan, H.R., Hu, F.F., Wilde, S.A., Yang, K.F. & Jin, C.W., 2011. The Qiyugou gold-bearing breccia pipes, Xiong’ershan region, central China: fluid inclusion and stable isotope evidence for an origin from magmatic fluids. International Geology Review 53, 25-45.10.1080/00206810902875370Search in Google Scholar

Guild, P.W., 1972. Metallogeny and the new global tectonics. International Geological Congress Proceedings 4, 17-24.Search in Google Scholar

Hall, D.L., Sterner, S.M. & Bodnar, R.J., 1988. Freezing point depression of NaCl-KCl-H2O solutions. Economic Geology 83, 197-202.10.2113/gsecongeo.83.1.197Search in Google Scholar

Haschke, M., Ahmadian, J., Murata, M. & McDonald, I., 2010. Copper mineralization prevented by arc-root delamination during Alpine-Himalayan collision in central Iran. Economic Geology 105, 855-865.10.2113/gsecongeo.105.4.855Search in Google Scholar

Hassanzadeh, J., 1993. Metallogenic and tectono-magmatic events in the SE sector of the Cenozoic active continental margin of Iran (Shahr e Babak area, Ker man province). Unpublished Ph.D. thesis. University of California, 204 pp.Search in Google Scholar

Hezarkhani, A., 2008. Hydrothermal evolution of the Miduk porphyry copper system, Kerman, Iran: a fluid inclusion investigation. International Geology Review 50, 665-684.10.2747/0020-6814.50.7.665Search in Google Scholar

Hou, Z.Q. & Cook, N.J., 2009. Metallogenesis of the Tibetan collisional orogen: a review and introduction to the special issue. Ore Geology Reviews 36, 2-24.10.1016/j.oregeorev.2009.05.001Search in Google Scholar

Hou, Z.Q., Gao, Y.F., Qu, X.M., Rui, Z.Y. & Mo, X.X., 2004. Origin of adakitic intrusives generated during mid-Miocene east-west extension in southern Tibet. Earth and Planetary Science Letters 220, 139-155.10.1016/S0012-821X(04)00007-XSearch in Google Scholar

Hou, Z.Q., Zhang, H., Pan, X. & Yang, Z., 2011. Porphyry Cu (-Mo-Au) deposits related to melting of thickened mafic lower crust: examples from the eastern Tethyan metallogenic domain. Ore Geology Reviews 39, 21-45.10.1016/j.oregeorev.2010.09.002Search in Google Scholar

Huizenga, J.M., 1995. Fluid evolution in shear zones from the Late Archean Harare-Shamva-Bindura greenstone belt (NE Zimbabwe): thermodynamic calculations of the C-O-H system applied to fluid inclusions. Netherlands Research School of Sedimentary Geology Press, Amsterdam, 146 pp.Search in Google Scholar

Hurai, H., Kihle, J., Kotulova, J., Marko, F.S. & Wierczewska, A., 2002. Origin of methane in quartz crystals from the Tertiary accretionary wedge and fore-arc basin of the Western Carpathians. Applied Geochemistry 17, 1259-1271.10.1016/S0883-2927(01)00128-7Search in Google Scholar

IGME-INOMRM (Institute for Geological & Mining Exploration & Institution of Nuclear and Other Mineral Raw Materials), 1973. Exploration for ore deposits in Kerman Region. Iran Geological Survey Report No. Yu/53; Iran Geological Survey (Beograd, Yugoslavia), 247 pp.Search in Google Scholar

Karsli, O., Dokuz, A., Uysal, I., Aydin, F., Kandemir, R. & Wijbrans, R.J., 2010. Generation of the Early Cenozoic adakitic volcanism by partial melting of mafic lower crust, eastern Turkey: implications for crustal thickening to delamination. Lithos 114, 109-120.10.1016/j.lithos.2009.08.003Search in Google Scholar

Kirkham, R.V. & Dunne, K.P., 2000. World distribution of porphyry, porphyry-associated skarn, and bulk-tonnage epithermal deposits and occurrences. Geological Survey of Canada Report 3792, 1-26.10.4095/211230Search in Google Scholar

Klemm, L.M., Pettke, T. & Heinrich, C.A., 2008. Fluid and source magma evolution of the Questa porphyry Mo deposit, New Mexico, USA. Mineralium Deposita 43, 533-552.10.1007/s00126-008-0181-7Search in Google Scholar

Klemm, L.M., Pettke, T., Heinrich, C.A. & Campos, E., 2007. Hydrothermal evolution of the El Teniente deposit, Chile: porphyry Cu-Mo ore deposition from low-salinity magmatic fluids. Economic Geology 102, 1021-1045.10.2113/gsecongeo.102.6.1021Search in Google Scholar

Landtwing, M.R., Furrer, C., Redmond, P.B., Pettke, T., Guillong, M. & Heinrich, C.A., 2010. The Bingham Canyon porphyry Cu-Mo-Au deposit. III. Zoned copper-gold ore deposition by magmatic vapor expansion. Economic Geology 105, 91-118.10.2113/gsecongeo.105.1.91Search in Google Scholar

Landtwing, M.R., Pettke, T., Halter, W.E., Heinrich, C.A., Redmond, P.B., Einaudi, M.T. & Kunze, K., 2005. Copper deposition during quartz dissolution by cooling magmatic-hydrothermal fluids: the Bingham porphyry. Earth and Planetary Science Letters 235, 229-243.10.1016/j.epsl.2005.02.046Search in Google Scholar

Li, N., Carranza, E.J.M., Ni, Z.Y. & Guo, D.S., 2012. The CO2-rich magmatic-hydrothermal fluid of the Qiyugou breccia pipe, Henan Province, China: implication for breccia genesis and gold mineralization. Geochemistry: Exploration, Environment, Analysis 12, 147-160.10.1144/1467-7873/10-MINDEP-057Search in Google Scholar

Liang, H.Y., Sun, W.D., Su, W.C. & Zartman, R.E., 2009. Porphyry copper-gold mineralization at Yulong, China, promoted by decreasing redox potential during magnetite alteration. Economic Geology 104, 587-596.10.2113/gsecongeo.104.4.587Search in Google Scholar

Lowenstern, J.B., 2001. Carbon dioxide in magmas and implications for hydrothermal systems. Mineralium Deposita 36, 490-502.10.1007/s001260100185Search in Google Scholar

Lu, H.Z., Fan, H.R., Ni, P., Ou, G.X., Shen, K. & Zhang, W.H., 2004. Fluid inclusions. Science Press, Beijing, 78 pp.Search in Google Scholar

Martin, H., Smithies, R.H., Rapp, R., Moyen, J.F. & Champion, D., 2005. An overview of adakite, tonalite- trondhjemite-granodiorite (TTG), and sanukitoid: relationships and some implications for crustal evolution. Lithos 79, 1-24.10.1016/j.lithos.2004.04.048Search in Google Scholar

McClay, K.R., Whitehouse, P.S., Dooley, T. & Richards, M., 2004. 3D evolution of fold and thrust belts formed by oblique convergence. Marine Geology 21, 857-877.10.1016/j.marpetgeo.2004.03.009Search in Google Scholar

McClusky, S., Balassanian, S., Barka, A., Demir, C., Ergintav, S., Georgiev, I., Gurkan, O., Hamburger, M., Hurst, K., Kahle, H., Kastens, K. & Kekelidze, G., 2000. Global positioning system constrains on plate kinematics and dynamics in the eastern Mediterranean and Caucasus. Journal of Geophysical Research 105, 5695-5719.10.1029/1996JB900351Search in Google Scholar

McCuaig, T.C. & Kerrich, R., 1998. P-T-t-deformation-fluid characteristics of lode gold deposits: evidence from alteration systematics. Ore Geology Reviews 12, 381-453.10.1016/S0169-1368(98)00010-9Search in Google Scholar

McInnes, B.I.A., Evans, N.J., Fu, F.Q., Garwin, S., Belousova, E., Griffin, W.L., Bertens, A., Sukarna, D., Permanadewi, S., Andrew, R.L. & Deckart, D., 2005. Thermal history analysis of selected Chilean, Indonesian, and Iranian porphyry Cu-Mo-Au deposits. [In:] T.M. Porter (Ed.): Super porphyry copper and gold deposits: a global perspective. PGC Publishing, Adelaide, 1-16.Search in Google Scholar

Mohajjel, M., Fergusson, C.L. & Sahandi, M.R., 2003. Cretaceous- Tertiary convergence and continental collision, Sanandaj-Sirjan zone, western Iran. Journal of Asian Earth Sciences 21, 397-412.10.1016/S1367-9120(02)00035-4Search in Google Scholar

Moore, F., 1992. Fluid inclusion studies and mineralization at Meiduk porphyry copper deposit, Kerman. National Iranian Copper Industries Company Report 8, 1-26.Search in Google Scholar

Mungall, J.E., 2002. Roasting the mantle: slab melting and the genesis of major Au and Au-rich Cu deposits. Geology 30, 915-918.10.1130/0091-7613(2002)030<0915:RTMSMA>2.0.CO;2Search in Google Scholar

Nwe, Y.Y. & Morteani, G., 1993. Fluid evolution in the H2O-CH4-CO2-NaCl system during emerald mineralization at Gravelotte, Murchison greenstone belt, Northeast Transvaal, South Africa. Geochimica et Cosmochimica Acta 57, 89-103. Ohmoto, H. & Kerrick, D., 1977. Devolatilization equilibria in graphitic systems. American Journal of Science 277, 1013-1044.10.1016/0016-7037(93)90471-8Search in Google Scholar

Pirajno, F., 2009. Hydrothermal processes and mineral systems. Springer, Heidelberg, 1250 pp.10.1007/978-1-4020-8613-7Search in Google Scholar

Razique, A.L., Grasso, G. & Livesey, T., 2007. Porphyry copper-gold deposits at Reko Diq complex, Chagai Hills Pakistan. Proceedings of Ninth Biennial SGA Meeting (Dublin), 1-7.Search in Google Scholar

Redmond, P.B., Einaudi, M.T., Inan, E.E., Landtwing, M.R. & Heinrich, C.A., 2004. Copper deposition by fluid cooling in intrusion-centered systems: new insights from the Bingham porphyry ore deposit, Utah. Geology 32, 217-220.10.1130/G19986.1Search in Google Scholar

Richards, J.P., Spell, T., Rameh, E., Razique, A. & Fletcher, T., 2012. High Sr/Y magmas reflect arc maturity, high magmatic water content, and porphyry Cu ± Mo ± Au potential: examples from the Tethyan arcs of central and eastern Iran and western Pakistan. Economic Geology 107, 295-332.10.2113/econgeo.107.2.295Search in Google Scholar

Richards, J.R. & Kerrich, R., 2007. Adakite-like rocks: their diverse origins and questionable role in metallogenesis. Economic Geology 102, 537-576.10.2113/gsecongeo.102.4.537Search in Google Scholar

Robb, L., 2005. Introduction to ore-forming processes. Blackwell Publishing, Oxford, 386 pp.Search in Google Scholar

Roedder, E., 1984. Fluid inclusions, reviews in mineralogy. Mineralogical Society of America 12, 325-340.10.1515/9781501508271Search in Google Scholar

Rusk, B. & Reed, M., 2002. Scanning electron microscope- cathodoluminescence analysis of quartz reveals complex growth histories in veins from the Butte porphyry copper deposit, Montana. Geology 30, 727-730.10.1130/0091-7613(2002)030<0727:SEMCAO>2.0.CO;2Search in Google Scholar

Rusk, B., Reed, M. & Dilles, J., 2008. Fluid inclusion evidence for magmatic-hydrothermal fluid evolution in the porphyry copper-molybdenum deposit at Butte, Montana. Economic Geology 103, 307-334.10.2113/gsecongeo.103.2.307Search in Google Scholar

Saric, V. & Mijalkovic, N., 1973. Metallogenic map of Kerman region, 1:500000 scale. Exploration for ore deposits in Kerman region. Geological Survey of Iran Report 53, 244-247.Search in Google Scholar

Shafiei, B., Haschke, M. & Shahabpour, J., 2009. Recycling of orogenic arc crust triggers porphyry Cu mineralization in Kerman Cenozoic arc rocks, southeastern Iran. Mineralium Deposita 44, 265-283.10.1007/s00126-008-0216-0Search in Google Scholar

Shafiei, B., 2008. Metallogenic model for Kerman porphyry copper belt and its implications for exploration. Unpublished Ph.D. Thesis. University of Kerman (Shaheed Bahonar), Iran, 257 pp.Search in Google Scholar

Shafiei, B., 2010. Lead isotope signatures of the igneous rocks and porphyry copper deposits from the Kerman Cenozoic magmatic arc (SE Iran), and their magmatic- metallogenetic implications. Ore Geology Reviews 38, 27-36.10.1016/j.oregeorev.2010.05.004Search in Google Scholar

Shahabpour, J., 2005. Tectonic evolution of the orogenic belt in the region located between Kerman and Neyriz. Journal of Asian Earth Sciences 24, 405-417.10.1016/j.jseaes.2003.11.007Search in Google Scholar

Shen, P., Shen, Y., Wang, J., Zhu, H., Wang, L. & Meng, L., 2010. Methane-rich fluid evolution of the Baogutu porphyry Cu-Mo-Au deposit, Xinjiang, NW China. Chemical Geology 275, 78-98.10.1016/j.chemgeo.2010.04.016Search in Google Scholar

Shepherd, T.J., Rankin, A.H. & Alderton, D.H.M., 1985. A practical guide to fluid inclusion studies. Blackie Press, London, 239 pp.Search in Google Scholar

Sun, W.D., Arculus, R.J., Kamenetsky, V.S. & Binns, R.A., 2004. Release of gold-bearing fluids in convergent margin magmas prompted by magnetite crystallization. Nature 431, 975-978.10.1038/nature0297215496920Search in Google Scholar

Sun, W.D., Liang, H.Y., Ling, M.X., Zhan, M.Z., Ding, X., Zhang, H., Yang, X.Y., Li, Y.L., Ireland, T.R., Wei, Q.R. & Fan, W.M., 2013. The link between reduced porphyry copper deposits and oxidized magmas. Geochimica et Cosmochimica Acta 103, 263-275.10.1016/j.gca.2012.10.054Search in Google Scholar

Taghipour, N., 2007. The application of fluid inclusions and isotope geochemistry as guides for exploration, alteration and mineralization at the Meiduk porphyry copper deposit, Shahr-Babak, Kerman. Unpublished Ph.D. Thesis. Shaheed Bahonar University (Kerman), Iran, 321 pp.Search in Google Scholar

Taghipour, N., Aftabi, A. & Mathur, R., 2008. Geology and Re-Os geochronology of mineralization of the Miduk porphyry copper deposit, Iran. Resource Geology 2, 143-160.10.1111/j.1751-3928.2008.00054.xSearch in Google Scholar

Topuz, G., Okay, A.I., Altherr, R., Schwar, W.H., Siebel, W., Zack, T., Muharrem, S. & Cuneyt, S., 2011. Post-collisional adakite-like magmatism in the Ağvanis massif and implications for the evolution of the Eocene magmatismin the Eastern Pontides (NE Turkey). Lithos 125, 131-150.10.1016/j.lithos.2011.02.003Search in Google Scholar

Ulrich, T., Guenther, D. & Heinrich, C.A., 2001. The evolution of a porphyry Cu-Au deposit, based on LAICP- MS analysis of fluid inclusions: Bajo de la Alumbrera, Argentina. Economic Geology 96, 1743-1774.10.2113/gsecongeo.96.8.1743Search in Google Scholar

Ulrich, T., Gunther, D. & Heinrich, C.A., 2002. Evolution of a porphyry Cu-Au deposit, based on LA-ICP-MS analysis of fluid inclusions: Bajo de la Alumbrera, Argentina. Economic Geology 97, 1863-1920.10.2113/gsecongeo.97.8.1889Search in Google Scholar

Volkov, A.V., Savva, N.E., Sidorov, A.A., Prokofev, V.Y., Goryachev, N.A., Voznesensky, S.D., Al’Shevsky, A.V. & Chernova, A.D., 2011. Shkol’noe gold deposit, the Russian Northeast. Geology of Ore Deposits 53, 1-26.10.1134/S1075701511010065Search in Google Scholar

Wang, L.L., Mo, X.X., Li, B., Dong, G.C. & Zhao, Z.D., 2006. Geochronology and geochemistry of the ore-bearing porphyry in Qulong Cu (Mo) ore deposit, Tibet. Acta Petrologica Sinica 22, 1001-1008.Search in Google Scholar

Wilkinson, J.J., 2001. Fluid inclusions in hydrothermal ore deposit. Lithos 55, 229-272.10.1016/S0024-4937(00)00047-5Search in Google Scholar

Yang, Y., Zhang, J., Yang, Y.F. & Shi, Y.X., 2009. Fluid inclusions geochemistry and ore genesis of Shangfanggou Mo-Fe deposit in Luanchuan County, Henan Province. Acta Petrologica Sinica 25, 2563-2574.Search in Google Scholar

Yang, Y.F., Chen, Y.J., Li, N., Mi, M., Xu, Y.L., Li, F.L. & Wanc, S.Q., 2013. Fluid inclusion and isotope geochemistry of the Qian’echong giant porphyry Mo deposit, Dabie Shan, China: a case of NaCl-poor, CO2- rich fluid systems. Journal of Geochemical Exploration 124, 1-13.10.1016/j.gexplo.2012.06.019Search in Google Scholar

Yang, Y.F., Li, N. & Chen, Y.J., 2012. Fluid inclusion study of the Nannihu giant porphyry Mo-W deposit, Henan Province, China: implications for the nature of por phyry ore-fluid systems formed in a continental collision setting. Ore Geology Reviews 46, 83-94.10.1016/j.oregeorev.2012.02.003Search in Google Scholar

Zarasvandi, A., Liaghat, S. & Zentilli, M., 2005. Geology of the Darreh-Zerreshk and Ali-Abad porphyry copper deposit, central Iran. International Geology Review 47, 620-646.10.2747/0020-6814.47.6.620Search in Google Scholar

Zarasvandi, A., Liaghat, S. Zentilli, M. & Reynolds, P.H., 2007. 40Ar/39Ar geochronology of alteration and petrogenesis of porphyry copper-related granitoids in the Darreh-Zerreshk and Ali-Abad area, central Iran. Exploration and Mining Geology 16, 11-24.10.2113/gsemg.16.1-2.11-aSearch in Google Scholar

Zhang, Y. & Frantz, J.D., 1987. Determination of the homogenization temperatures and densities of supercritical fluids in the system NaCl-KCl-CaCl2-H2O using synthetic fluid inclusion. Chemical Geology 64, 335-350.10.1016/0009-2541(87)90012-XSearch in Google Scholar

Zhong, J., Chen, Y.J., Chen, J., Li, N., Li, J., Qi, J.P. & Mao- Chang, D.A.I., 2011. Fluid inclusion study of Luoboling porphyry Cu-Mo deposit in Zijinshan ore field, Fujian Province. Acta Petrologica Sinica 27, 1410-1424. Search in Google Scholar

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