|
Afifi, A. M., Kelly, W. C., Essene, E. J., 1988. Phase Relations among Tellurides, Sulfides, and Oxides: I, Thermochemical Data and Calculated Equilibria. Economic Geology, 83(2): 377–394. https://doi.org/10.2113/gsecongeo.83.2.377 |
|
Bartos, P. J., Garcia, C., Gil, J., 2017. The Nuevo Chaquiro Cu-Au-(Mo) Porphyry Deposit, Middle Cauca Belt, Colombia: Geology, Alteration, Mineralization. Economic Geology, 112(2): 275–294. https://doi.org/10.2113/econgeo.112.2.275 |
|
Cediel, F., Shaw, R. P., Caceres, C., 2003. Tectonic Assembly of the Northern Andean Block. In: Bartolini, C., Buffler, R. T., Blickwede, J., eds., The Circum-Gulf of Mexico and the Caribbean—Hydrocarbon Habitats, Basin Formation, and Plate Tectonics. American Association of Professional Geologists, Tulsa. AAPG Memoir, 79: 815–848. https://doi.org/10.1306/m79877 |
|
Continental Gold Corporation, 2024. Supplementary Exploration Design for Deep and Peripheral Parts of Buritica Mine. Medellín, Colombia. 1–104 |
|
Einaudi, M. T., Hedenquist, J. W., Inan, E. E., 2003. Sulfidation State of Fluids in Active and Extinct Hydrothermal Systems: Transition from Porphyry to Epithermal Environments. In: Simmons, S. F., Graham, I., eds., Volcanic, geothermal, and Ore-Forming Fluids: Rulers and Witnesses of Processes within the Earth. SEG Special Publication, 10: 285–313. https://doi.org/10.5382/sp.10.15 |
|
Garcia, C. A., 2011, Review of Gold-Rich Porphyry Deposits of the Northern Andes with Special Emphasis on the Colosa Gold Porphyry, Colombia, and Its Comparison with the Central Andes Gold-Rich Porphyry Province: [Dissertation]. University of Rhodes, South Africa. 87 |
|
Göbel, V., Stibane, F., 1979. Edad K-Ar en Hornblenda de Plutons Tonalíticos, Cordillera Occidental, Colombia. Publicación Especial de Geología, 17: 2 |
|
González, H., Restrepo, J. J., Toussaint, J. F., et al., 1978. Edad Radiométrica K-Ar del Batolito de Sabanalarga. Publicación Especial de Geología, 8: 1–5 |
|
González, H., 2001. Mapa Geológico del Departamento de Antioquia: Memoria Explicativa. Map Scale 1 : 400 000. Informe Interno., Ingeominas. 1–240 |
|
Kantor, J. A., Cameron, R. E., 2016. Technical Report on the Titiribí Project. Brazil Resources Inc., NI-43-101 Report. Department of Antioquia, Colombia. 1–179 |
|
Lamb, S., Hoke, L., Kennan, L., et al., 1997. Cenozoic Evolution of the Central Andes in Bolivia and Northern Chile. Geological Society, London, Special Publications, 121(1): 237–264. https://doi.org/10.1144/gsl.sp.1997.121.01.10 |
|
Lesage, G., 2011. Geochronology, Petrography, Geochemical Constraints, and Fluid Characterization of the Buriticá Gold Deposit, Antioquia Department, Colombia: [Dissertation]. University of Alberta, Edmonton. 98 |
|
Leal-Mejía, H., Shaw, R. P., Melgarejo i Draper, J. C., 2019. Spatial-Temporal Migration of Granitoid Magmatism and the Phanerozoic Tectono-Magmatic Evolution of the Colombian Andes. Geology and Tectonics of Northwestern South America. Springer International Publishing, Cham. 253–410. https://doi.org/10.1007/978-3-319-76132-9_5 |
|
Lesage, G., Richards, J. P., Muehlenbachs, K., et al., 2013. Geochronology, Geochemistry, and Fluid Characterization of the Late Miocene Buriticá Gold Deposit, Antioquia Department, Colombia. Economic Geology, 108(5): 1067–1097. https://doi.org/10.2113/econgeo.108.5.1067 |
|
Li, J. Y., Liu, W. Y., Long, H., et al., 2025. Newly Discovered High-Sulfidation Mineralization in the Yueyang Silver-Polymetallic Deposit, Zijinshan Ore Field, and Implications for Mineral Exploration. Journal of Earth Science, 36(3): 1309–1314. https://doi.org/10.1007/s12583-025-2036-x |
|
Liu, J. J., Zhai, D. G., Wang, D. Z., et al., 2020. Au-(Ag)-Te-Se Metallogenic System and Metallogenesis. Frontiers of Earth Science, 27(2): 79–98 (in Chinese with English Abstract) |
|
Marín Kasprzyk, A. R., 2023. Caracterización Petrográfica y Litogeoquímica del Stock de Buriticá (Tonalita de Buriticá) e Intrusivos Asociados: [Dissertation]. University of de Caldas, Manizales. 1–141 |
|
Naranjo, A., Horner, J., Jahoda, R., et al., 2018. La Colosa Au Porphyry Deposit, Colombia: Mineralization Styles, Structural Controls, and Age Constraints. Economic Geology, 113(3): 553–578. https://doi.org/10.5382/econgeo.2018.4562 |
|
Pivetta, C. P., Benedini, L., Marcos, P., et al., 2024. Characterization of Arroyo Verde Epithermal Deposit: Paragenesis, Mineral Geochemistry, Geochronology and Fluid Inclusions in Lower Chon Aike Volcanism, Argentina. Journal of Earth Science, 35(1): 62–84. https://doi.org/10.1007/s12583-023-1823-5 |
|
Ronacher, E., 2004. Characteristics and Evolution of the Hydrothermal Fluid in the North Zone High-Grade Area, Porgera Gold Deposit, Papua New Guinea. Economic Geology, 99(5): 843–867. https://doi.org/10.2113/99.5.843 |
|
Ross, C., Richards, J. P., Sherlock, R., 2021. Geology, Alteration, and Geochronology of the Cerro Vetas Porphyry Gold-Copper Deposit, Middle Cauca Belt, Colombia. Economic Geology Special Publication, 24(2): 311–332. https://doi.org/10.5382/sp.24.17 |
|
Santacruz R, L., Redwood, S. D., Cecchi, A., et al., 2021. The Age and Petrogenesis of Reduced to Weakly Oxidized Porphyry Intrusions at the Marmato Gold Deposit, Colombia. Ore Geology Reviews, 131: 103953. https://doi.org/10.1016/j.oregeorev.2020.103953 |
|
Sasmaz, A., Sukach, V., Bondarenko, S, et al., 2025. Newly Identified Au-Ag-Bi-Te Mineralization in the Aydindere Skarn Fe and Cu Deposit, Giresun, NE Turkey: Implications of Gold Mineralization during Retrograde Skarn Evolution. Journal of Earth Science, 36(2): 543–561. https://doi.org/10.1007/s12583-023-1976-x |
|
Shaw, R. P., Padilla, R., Leal, H., 2011, Colombia's So-called "Middle Cauca Porphyry Belt": Towards an Empirical Definition. In: Geology, Mineralization, Magmatic and Structural Control of Colombia's Gold and Porphyry Deposits and Districts. Colombia Gold Project Proposal, University of British Columbia, MDRU, Vancouver, BC |
|
Sillitoe, R. H., 2008. Special Paper: Major Gold Deposits and Belts of the North and South American Cordillera: Distribution, Tectonomagmatic Settings, and Metallogenic Considerations. Economic Geology, 103(4): 663–687. https://doi.org/10.2113/gsecongeo.103.4.663 |
|
Sillitoe, R. H., 2010. Porphyry Copper Systems. Economic Geology, 105(1): 3–41. https://doi.org/10.2113/gsecongeo.105.1.3 |
|
Tassinari, C. C. G., Pinzon, F. D., Buena Ventura, J., 2008. Age and Sources of Gold Mineralization in the Marmato Mining District, NW Colombia: A Miocene–Pliocene Epizonal Gold Deposit. Ore Geology Reviews, 33(3/4): 505–518. https://doi.org/10.1016/j.oregeorev.2007.03.002 |
|
Trujillo, M. A., 2023. Structural Architecture of Buriticá Gold Deposit, Colombia-Insights from Hydrothermal Alteration Geochemistry and Implications for Regional Exploration: [Dissertation]. University of de Caldas, Manizales 1–204 |