يعرض 1 - 12 نتائج من 12 نتيجة بحث عن '"Plomo-Zinc"', وقت الاستعلام: 0.44s تنقيح النتائج
  1. 1
    Academic Journal

    المصدر: Estudios Geológicos; Vol. 79 No. 2 (2023); e159 ; Estudios Geológicos; Vol. 79 Núm. 2 (2023); e159 ; 1988-3250 ; 0367-0449 ; 10.3989/egeol.16736

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    Relation: https://estudiosgeol.revistas.csic.es/index.php/estudiosgeol/article/view/1056/1424; https://estudiosgeol.revistas.csic.es/index.php/estudiosgeol/article/view/1056/1425; https://estudiosgeol.revistas.csic.es/index.php/estudiosgeol/article/view/1056/1426; Adil, S., Bouabdellah, M., Grandia, F., Cardellach, E., & Canals, À. (2004). Geochemistry of fluids associated to the Bou-Dahar Pb-Zn Mississippi Valley-type deposits (Morocco). Comptes Rendus-Geoscience, 336(14), 1265-1272. https://doi.org/10.1016/j.crte.2004.06.010; Adiri, Z., El Harti, A., Jellouli, A., Lhissou, R., Maacha, L., Azmi, M., Zouhair, M., & Bachaoui, E. M. (2017). Comparison of Landsat-8, ASTER and Sentinel 1 satellite remote sensing data in automatic lineaments extraction : A case study of Sidi Flah-Bouskour inlier, Moroccan Anti Atlas. Advances in Space Research, 60(11), 2355-2367. https://doi.org/10.1016/j.asr.2017.09.006; Adiri, Z., Lhissou, R., El Harti, A., Jellouli, A., & Chakouri, M. (2020). Recent advances in the use of public domain satellite imagery for mineral exploration : A review of Landsat-8 and Sentinel-2 applications. Ore Geology Reviews, 117, 103332. https://doi.org/10.1016/j.oregeorev.2020.103332; Agard, J., & Du Dresnay, R. (1965). La région minéralisée du Jbel Bou-Dahar, près de Beni Tajjit (Haut Atlas oriental): Étude géologique et métallogénique. Notes et Mémoires du Service Géologique de Maroc, 181, 135-166.; Alonso-Contes, C. A. (2011). Lineament mapping for groundwater exploration using remotely sensed imagery in a karst terrain : Rio Tanama and Rio de Arecibo basins in the northern karst of Puerto Rico [Master Thesis]. Michigan Technological University. https://core.ac.uk/download/pdf/151508664.pdf; Michard A. (1976). Eléments de géologie marocaine. Notes et Mémoires du Service Géologique de Maroc, 252.; Choukrad, J., Elmoussalim, A., Saoud, N., Mounir, S., Assabar, N., Ait Ali, A., & Charroud, M. (2020). Application of remote sensing in the identification and extraction of lineaments and the calculation of mining showings in the Mesozoic cover of the Tazekka massif of Morocco (Maghraoua region). International Journal of Earth Sciences and Engineering, 11(3), 1-8.; Choukrad, J. (2022). Geological context of the establishment of mineralization in the Eastern High Atlas [Doctoral Thesis]. Sidi Mohamed Ben Abdellah University.; Dresnay, R. Du (1971). Extension et developpement des phenomenes recifaux jurassiques dans le domaine atlasique marocain, particulierement au Lias moyen. Bulletin de la Societe Geologique de France, S7-XIII(1-2), 46-56. https://doi.org/10.2113/gssgfbull.S7-XIII.1-2.46; Dubar, G. (1948). Etudes paléontologiques sur le lias du Maroc : La faune domérienne du Jebel Bou-Dahar, près de Béni-Tajjite: Étude suivie de celle de quelques Mollusques d'autres gisements marocains. Notes et Mémoires du Service Géologique, 68.; El Kochri, A. (1996). Géométrie et mécanismes de la déformation du Haut Atlas Centro-oriental (Maroc) [Doctoral Thesis]. Université Mohammed V, Rabat.; Elmi, S., Amhoud, H., Boutakiout, M., & Benshili, K. (1999). Cadre biostratigraphique et environnemental de l'evolution du paleorelief du Jebel Bou Dahar (Haut-Atlas oriental, Maroc) au cours du Jurassique inferieur et moyen. Bulletin de la Société géologique de France, 170(5), 619-628.; Es-Sabbar, B., Essalhi, M., Essalhi, A., & Mhamdi, H. S. (2020). Lithological and Structural Lineament Mapping from Landsat 8 OLI Images in Ras Kammouna Arid Area (Eastern Anti-Atlas, Morocco). Economic and Environmental Geology, 53(4), 425-440.; Gasmi, A., Gomez, C., Zouari, H., Masse, A., & Ducrot, D. (2016). PCA and SVM as geo-computational methods for geological mapping in the southern of Tunisia, using ASTER remote sensing data set. Arabian Journal of Geosciences, 9(20). https://doi.org/10.1007/s12517-016-2791-1; Harris, A. (2013). Thermal remote sensing of active volcanoes: A user's manual. Cambridge university press. https://doi.org/10.1017/CBO9781139029346; Mahan, A., & Arfania, R. (2018). Exploring porphyry copper deposits in the central Iran using remote sensing techniques. Open Journal of Geology, 8(06), 606. https://doi.org/10.4236/ojg.2018.86035; Mars, J. C., & Rowan, L. C. (2010). Spectral assessment of new ASTER SWIR surface reflectance data products for spectroscopic mapping of rocks and minerals. Remote Sensing of Environment, 114(9), 2011-2025. https://doi.org/10.1016/j.rse.2010.04.008; Mas, J. (2000). Une revue des méthodes et des techniques de télédétection du changement. Canadian Journal of Remote Sensing, 26(4), 349-362. https://doi.org/10.1080/07038992.2000.10874785; Pour, A. B., & Hashim, M. (2012). The application of ASTER remote sensing data to porphyry copper and epithermal gold deposits. Ore geology reviews, 44, 1-9. https://doi.org/10.1016/j.oregeorev.2011.09.009; Roy, D. P., Wulder, M. A., Loveland, T. R., Woodcock, C. E., Allen, R. G., Anderson, M. C., Helder, D., Irons, J. R., Johnson, D. M., & Kennedy, R. (2014). Landsat-8 : Science and product vision for terrestrial global change research. Remote sensing of Environment, 145, 154-172. https://doi.org/10.1016/j.rse.2014.02.001; Si Mhamdi, H., Raji, M., Maimouni, S., & Oukassou, M. (2017). Fractures network mapping using remote sensing in the Paleozoic massif of Tichka (Western High Atlas, Morocco). Arabian Journal of Geosciences, 10, 1-14. https://doi.org/10.1007/s12517-017-2912-5; Teodoro, A. C., Ferreira, D. & Sillero, N. (2012). Performance of commercial and open-source remote sensing/image processing software for land cover/use purposes. 8538, 373-384. https://doi.org/10.1117/12.974577; Tobi, A., Essalhi, M., El Azmi, D., Bouzekraoui, M., & El Ouaragli, B. (2022). Remote sensing and GIS-based mining prospection of Fe-Mn-Pb oxide mineralisation at Jbel Skindis (Eastern High Atlas, Morocco). Estudios Geológicos, 78(2), e147. https://doi.org/10.3989/egeol.44641.614; https://estudiosgeol.revistas.csic.es/index.php/estudiosgeol/article/view/1056

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    المصدر: Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; Vol 10 No Especial7 (2022): Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; 60-65 ; Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; Vol. 10 Núm. Especial7 (2022): Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; 60-65 ; 2007-6363 ; 10.29057/icbi.v10iEspecial7

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    Dissertation/ Thesis

    المؤلفون: Espinoza Castillo, Brian José

    المساهمون: Abarca Rodríguez, Joaquín José

    المصدر: Universidad Nacional José Faustino Sánchez Carrión ; Repositorio institucional - UNJFSC

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    Relation: info:pe-repo/semantics/dataset; APA; http://repositorio.unjfsc.edu.pe/handle/UNJFSC/5774

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    Academic Journal

    المصدر: Earth Sciences Research Journal; Vol. 21 No. 1 (2017); 7-16 ; Earth Sciences Research Journal; Vol. 21 Núm. 1 (2017); 7-16 ; 2339-3459 ; 1794-6190

    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/esrj/article/view/39703/pdf; Akande, S. O., Horn, E. E. & Reutel, C. (1988). Mineralogy, fluid inclusion and genesis of the Arufu and Akwana Pb-Zn-F mineralization, middle Benue Trough, Nigeria. Journal of African Earth Sciences, 7, 167-180.; Akande, S. O., Zentelli, M. & Reynolds, P. H. (1989). Fluid inclusion and stable isotope studies of Pb-Zn-fluorite-barite mineralization in the lower and middle Benue Trough, Nigeria. Mineralium Deposita, 24, 183 – 191.; Akande, S. O., & Mucke, A. (1993). Co-existing copper sulphides and sulphosalts in the Abakaliki Pb-Zn deposit, Lower Benue Trough and their genetic implications. Journal of Mineralogy and Petrology Austria, 47, 183-192.; Banerjee, I. (1980). A subtidal bar model for the Eze-Aku Sandstones, Nigeria. Sedimentary Geology, 15, 291-309.; Benkhelil, J. (1989). The origin and evolution of the Cretaceous Benue Trough (Nigeria). Journal of African Earth Sciences, 8, 251-282.; Binks, R. M. & Fairhead, J. D. (1992). A plate tectonic setting for Mesozoic rifts of West and Central Africa. Tectonophysics, 213, 141-151.; Cratchley, C. R. & Jones, G. P. (1965). An interpretation of the geology and gravity anomalies of the Benue valley, Nigeria. Overseas Geological Survey, Geophysical, 1.; Etim, O. N., Louis, P. & Maurin, J. C. (1988). Interpretation of electrical soundings on the Abakaliki Lead-Zinc and barite prospects, S.E. Nigeria: Geological and genetic implications. Journal of African Earth Sciences, 7, 743-747.; Ezepue, M. C. (1984). The geologic setting of lead-zinc deposits at Ishiagu, Southeastern Nigeria. Journal of African Earth Sciences, 2: 97-101.; Farrington, J. L. (1952). A preliminary description of the Nigerian lead-zinc field. Economic Geology, 47, 583-608.; Gustafson, L. B. & Williams, N. (1981). Sediment-hosted stratiform deposits of copper, lead, and zinc. Economic Geology, 75, 139–178.; Large, D. E. (1983). Sediment-hosted massive sulfide lead-zinc deposits: An empirical model. Mineralogical Association of Canada Short Course Handbook, 8, 1–30.; Leach, D. L., Sangster, D. F., Kelley, K. D., Large, R. R., Garven, G., Allen, C. R., Gutzmer, J. & Walters S. (2005). Sediment-hosted lead-zinc deposits: A global perspective. Economic Geology, 100, 561−608.; Leach, D. L., Bradley, D. C., Huston, D., Pisarevsky, S. A., Taylor, R. D. & Gardoll, S. J. (2010). Sediment-hosted lead-zinc deposits in Earth History. Economic Geology, 105, 593-625.; Lydon, J. W. (1996). Sedimentary exhalative sulphides (SEDEX). Geological Survey of Canada, Geology of Canada, 8, 130-152.; Maurin, J. C., Benkhelil, J. & Robineau, B. (1986). Fault rocks of the Kaltungo lineament (NE Nigeria) and their relation with Benue Trough tectonic. Journal of Geological Society, 143, 587-599.; Maurin, J. C. & Lancelot, J. R. (1987). Origine des mineralisations de Pb-Zn de la Vallee de la Benoue (Nigeria) d’apres la composition en Pb des galenes de l’encaissant. Mineralium Deposita, 22, 99-108.; McConnel, R. B. (1949). Notes on the lead-zinc deposits of Nigeria and the Cretaceous stratigraphy of Benue and Cross River valley. Unpublished Geol. Surv. Nigeria Report, No. 408.; Mc Kay, R. A. (1950). The lead and zinc veins in the Lower Cretaceous of Nigeria. International Report of Geological Congress 18th Session, 7, 217-221.; Murat, R. C. (1970). Stratigraphy and palaeogeography of the Cretaceous and Lower Tertiary in the southern Nigeria. In: Dessauvagie, T.F.G. & Whiteman A. J. (Eds.), African Geology. University of Ibadan Press 251-266.; Nwachukwu, S. O. (1975). Temperature of formation of vein minerals in the southern portion of the Benue Trough, Nigeria. Nigerian Journal of Mining Geology, 11, 45-55.; Nwajide, C.S. (1990). Cretaceous sedimentation and paleogeography of the Central Benue Trough. In: Ofoegbu, C.O (Eds.) The Benue Trough Structure and Evolution. Friedr Vieweg & Sohn, Braun Schweiger, Germany, pp. 19-38.; Obiora, S. C. (2002). Evaluation of the effects of igneous bodies on the sedimentary fills of the Lower Benue Rift and vice versa. Ph.D. Thesis, Department of Geology, University of Nigeria, Nsukka, 241 p.; Ojoh, K. A. (1992). The southern part of the Benue Trough (Nigeria) Cretaceous stratigraphy, basin analysis, paleo-oceanography and geodynamic evolution in the Equatorial Domain of the South Atlantic. Nigerian Association of Petroleum Explorationists Bulletin, 7, 131-152.; Olade, M. A. (1976). On the genesis of the lead-zinc deposits in Nigerians Benue rift (aulacogen) a re-interpretation. Nigerian Journal of Mining Geology, 13, 20-27.; Olade, M. A. & Morton, R. D. (1985). Origin of lead-zinc mineralization in the southern Benue Trough, Nigeria, fluid inclusion and trace element studies. Mineralium Deposita, 20, 76 – 80.; Orajaka, S. (1965). Geology of Enyigba, Ameri and Ameka lead-zinc mines. Journal of Geology, 3, 49 - 51.; Petters, S. W. (1978). Mid-Cretaceous paleoenvironments and biostratigraphy of the Benue Trough, Nigeria. Geological Society of America Bulletin. 89, 151-154.; Petters, S. W. & Ekweozor, C. M. (1982). Petroleum geology of the Benue Trough and southeastern Chad Basin, Nigeria. Geological Society of America Bulletin, 68, 1141-1149.; Ramanathan, R. M. & Nair, K. M. (1984). Lower Cretaceous Foraminifera from Gboko Limestone Eastern Nigeria. Nigerian Journal of Mining and Geology, 21, 41- 48.; Rebelle, M. (1990). The marine transgression in the Benue Trough (N.E Nigeria) a paleogeographic interpretation of the Gongila Formation. Journal of African Earth Sciences, 10, 643-656; Reijers, T. J. A. (1996). Selected Chapters on Geology. Shell Petroleum Development Company (Nigeria), 197 pp.; Reyment, R. A. (1965). Aspect of the Geology of Nigeria. Ibadan University Press, 145 pp.; Sangster, D. F. (1990). Mississippi Valley-type and SEDEX lead-zinc deposits: A comparative examination. Transactions of the Institution of Mining and Metallurgy, Section B 99, B21-B42.; Sangster, D. F. & Hillary, E. M. (1998). Sedex lead-zinc deposits: Proposed subtypes and their characteristics. Exploration and Mining Geology, 7, 341-357.; Short, K. C. & Stauble, A. J. (1967). Outline of the Geology of the Niger Delta. American Association of Petroleum Geologists Bulletin, 51, 761-779.; Simpson, A. (1954). The Nigerian Coalfield: The geology of parts of Owerri and Benue provinces. Bulletin of the Geological Survey of Nigeria, 24, 1-85.; Tattam, C. M. (1930). Geophysical investigation upon the lead-zinc lodes of Ogoja Province. Geological Survey of Nigeria, Annual Report.; Umeji, A. C. (2000). Evolution of the Abakaliki and the Anambra basins, Southeastern Nigeria. A Report submitted to the Shell Petroleum Development Company Nigeria Ltd, 155p.; Umeji, A. C. & Caen-Vachette, M. (1983). Rb-Sr isochrones from Gboko and Ikyuen rhyolites and its implication for the age evolution of the Benue Trough, Nigeria. Geological Magazine, 120, 529-533.; Whiteman, A. J. (1982). Nigeria: Its petroleum geology resources and potentials. Graham and Trotman, London, 394p.; https://revistas.unal.edu.co/index.php/esrj/article/view/39703

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    Academic Journal

    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/esrj/article/view/39703; Universidad Nacional de Colombia Revistas electrónicas UN Earth Sciences Research Journal; Earth Sciences Research Journal; Oha, Ifeanyi Andrew and Onuoha, Kalu Mosto and Dada, Silas Sunday (2017) Contrasting styles of lead-zinc-barium mineralization in the Lower Benue Trough, Southeastern Nigeria. Earth Sciences Research Journal, 21 (1). pp. 7-16. ISSN 2339-3459; https://repositorio.unal.edu.co/handle/unal/63586; http://bdigital.unal.edu.co/64032/

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    المصدر: Revista del Instituto de Investigación de la Facultad de Ingeniería Geológica, Minera, Metalúrgica y Geográfica; Vol 13 No 26 (2010); 51-58
    Revista del Instituto de Investigación de la Facultad de Ingeniería Geológica, Minera, Metalúrgica y Geográfica; Vol. 13 Núm. 26 (2010); 51-58
    Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas; Vol. 13 No. 26 (2010); 51-58
    Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas; Vol. 13 Núm. 26 (2010); 51-58
    Revistas Universidad Nacional Mayor de San Marcos
    Universidad Nacional Mayor de San Marcos
    instacron:UNMSM

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