Academic literature on the topic 'Chromite – Albanie'

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Journal articles on the topic "Chromite – Albanie"

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Çina, A. "MINERALOGY OF CHROMITITE, BULQIZA ULTRAMAFIC MASSIF, ALBANIAN OPHIOLITIC COMPLEX." Bulletin of the Geological Society of Greece 43, no. 5 (2017): 2577. http://dx.doi.org/10.12681/bgsg.11665.

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Ultramafic massif of Bulqiza belongs to Eastern Jurassic Albanian ophiolite belt of IAT-BSV- type. This massif is the most important chromite-bearing ore. The mantle ultramafics have extremely refractory nature. This is due to the high partial fusion of upper mantle which is depleted in CaO and Al2 O3 . The chromitite is situated to different parts of ultramafic pile, from bottom Cpx harzburgites up to massive dunites and cumulate ultramafic but the mainly chromite potential belongs to mantle harzburgite –dunite level and to transition dunites partly. The chromite is chiefly of Cr-rich metallu
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Susaj, Elizabeta, Enkelejda Kucaj, Erald Laçi, and Lush Susaj. "Environmental Impacts Assessment of Chromium Minings in Bulqiza Area, Albania." European Journal of Interdisciplinary Studies 3, no. 4 (2017): 35. http://dx.doi.org/10.26417/ejis.v3i4.p35-41.

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Bulqiza District is the largest chromium source, ranked fourth in the world for chrome reserves. It lays in the north-eastern part of Albania, 330-1800 m a.s.l, with 728 km² area, between 41o30’43.1N and 20o14’56.21E. There are 136 entities with chromium extraction activity and around the city of Bulqiza (2.6 km² and 13000 inhabitants), there are 33 entities. The aim of the study was the identification of the environmental state and environmental impact assessment of chromium extraction (chromite mining) and giving recommendations to minimize the negative effects of this activity. Field observ
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Susaj, Elizabeta, Enkelejda Kucaj, Erald Laçi, and Lush Susaj. "Environmental Impacts Assessment of Chromium Minings in Bulqiza Area, Albania." European Journal of Interdisciplinary Studies 9, no. 1 (2017): 35. http://dx.doi.org/10.26417/ejis.v9i1.p35-41.

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Bulqiza District is the largest chromium source, ranked fourth in the world for chrome reserves. It lays in the north-eastern part of Albania, 330-1800 m a.s.l, with 728 km² area, between 41o30’43.1N and 20o14’56.21E. There are 136 entities with chromium extraction activity and around the city of Bulqiza (2.6 km² and 13000 inhabitants), there are 33 entities. The aim of the study was the identification of the environmental state and environmental impact assessment of chromium extraction (chromite mining) and giving recommendations to minimize the negative effects of this activity. Field observ
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SHTIZA, Aurela. "Extractive industry a burden or an opportunity for sustainable development?" European Journal of Sustainable Development 2, no. 4 (2013): 199. http://dx.doi.org/10.14207/ejsd.2013.v2n4p199.

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The shortage of raw materials in global markets and the sky rocketing of commodityprices, have induced European authorities to take initiatives to improve innovation inEurope by creating the European Innovation Partnership on Raw Materials (2012) and make inventory of the existing European raw materials. Albania is a rich country in natural raw materials, such as chromium, copper, ferronickel, coal, bitumen as well ascrude oil which might supply primary and secondary raw materials for some of the European needs. This literature review discusses the role of the Albanian institutions, the natura
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Junge, Malte, Ann-Christin Kolb, Antje Wittenberg, Henrike Sievers, Dashamir Gega, and Kujtim Onuzi. "Mineralogical characterization of podiform chromitite deposits in the Mirdita Ophiolite, Albania." Zeitschrift der Deutschen Gesellschaft für Geowissenschaften 172, no. 1 (2021): 1–17. http://dx.doi.org/10.1127/zdgg/2021/0266.

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Gornostayev, S. S., M. Ohnenstetter, A. Neziraj, et al. "NEW OCCURRENCES OF ANDUOITE, (Ru,Os)As2, FROM CHROMITE DEPOSITS OF UKRAINE AND ALBANIA." Canadian Mineralogist 39, no. 2 (2001): 591–606. http://dx.doi.org/10.2113/gscanmin.39.2.591.

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MILUSHI, Ibrahim, and Nezir MEKSHIQI. "Morpho-structural Features and Structural Classification of Chromite Pods in the Tropoje-Has Ophiolite Massif, Albania." Acta Geologica Sinica - English Edition 90, s1 (2016): 234. http://dx.doi.org/10.1111/1755-6724.12992.

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BEQIRAJ, A. "Geochemical Characterization of Podiform Chromite Ores from the Ultramafic Massif of Bulqiza (Eastern Ophiolitic Belt, Albania) and Hints for Exploration." Exploration and Mining Geology 9, no. 2 (2000): 149–56. http://dx.doi.org/10.2113/0090149.

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Xhaferri, Emiriana, Ruben Corijn, Agim Sinojmeri, Rudy Swennen, and Çerçis Durmishi. "Study of Heavy Minerals from the Vjosa and Mati river delta sediments in Albania." Bulletin of the Geological Society of Greece 56, no. 1 (2020): 223. http://dx.doi.org/10.12681/bgsg.22989.

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This research is focused on the determination of the heavy minerals (HM) load of the Vjosa and Mati river delta deposits along the Albanian coastline and it is based on X-ray Diffractometry. The Albanian coastline consists of sandy beaches at the north (Adriatic coastline) and rocky escarpments at the south (Ionian coastline). Several layers of heavy mineral deposits, up to 50 cm thick, with heavy mineral fraction up to 95% and 88% of total sample for Vjosa and Mati sediments respectively, are identified. The layers enriched in heavy minerals from Vjosa delta deposits are almost black in colou
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Gawlick, Hans-Jürgen, Roman Aubrecht, Felix Schlagintweit, Sigrid Missoni, and Dušan Plašienka. "Ophiolitic detritus in Kimmeridgian resedimented limestones and its provenance from an eroded obducted ophiolitic nappe stack south of the Northern Calcareous Alps (Austria)." Geologica Carpathica 66, no. 6 (2015): 473–87. http://dx.doi.org/10.1515/geoca-2015-0039.

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Abstract The causes for the Middle to Late Jurassic tectonic processes in the Northern Calcareous Alps are still controversially discussed. There are several contrasting models for these processes, formerly designated “Jurassic gravitational tectonics”. Whereas in the Dinarides or the Western Carpathians Jurassic ophiolite obduction and a Jurassic mountain building process with nappe thrusting is widely accepted, equivalent processes are still questioned for the Eastern Alps. For the Northern Calcareous Alps, an Early Cretaceous nappe thrusting process is widely favoured instead of a Jurassic
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Dissertations / Theses on the topic "Chromite – Albanie"

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Karaj, Nuredin. "Répartition des platinoi͏̈des, chromites et sulfures dans le massif de Bulqiza, Albanie : incidence sur les processus métallogéniques dans les ophiolites." Orléans, 1992. http://www.theses.fr/1992ORLE2048.

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Le massif de Bulqiza appartient au rameau oriental des ophiolites d'Albanie. Il est principalement constitué de harzburgites mantelliques caractérisées par une foliation subverticale, parallèle à l'axe d'accrétion NW-SE, par d'abondantes dunites supra-Moho et par des rares cumulats. Le magmatisme en partie responsable du potentiel métallogénique élevé des ophiolites de Bulqiza s'apparente à celui des arcs insulaires immatures. Dans le massif de Bulqiza trois minéralisations en élément du groupe du platine (EGP) ont été reconnues d'après leur position stratigraphique, la répartition des EGP, et
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Neziraj, Adil. "Etude pétrologique et métallogénique du massif ophiolitique de Tropoja, Albanie : référence particulière aux gisements de chromite et éléments du groupe du platine." Phd thesis, Université d'Orléans, 1992. http://tel.archives-ouvertes.fr/tel-00785994.

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Le massif de Tropoja est le plus septentrional des massifs de la ceinture orientale des ophiolites d'Albanie dont les caractères pétrologiques et métallogéniques s'apparentent aux produits magmatiques des arcs insulaires immatures. Quatre niveaux enrichis en chromite ont été définis d'après leur stratigraphie, leur structure et leur composition : trois dans le manteau et un dans les cumulats. D'importantes variations de la fugacité en oxygène ont accompagné la formation des chromitites et des minéralisations en élement du groupe du platine qui leur sont associées. Au Sud du massif, une forte f
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Vest, Brian Michael. "The electronic, structural, and magnetic properties of the chromium dihalides - from the gas-phase to the solid-state : a thesis submitted in partial fulfillment of the requirements of the degree of Doctor of Philosophy in Theoretical Chemistry at Massey University, Albany, New Zealand." 2008. http://hdl.handle.net/10179/744.

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Unrestricted Kohn-Sham (broken symmetry) density functional calculations have been used to determine the low-energy geometries of the chromium dihalide molecules (CrX2) and their clusters, Cr2X4, Cr3X6, and Cr4X8. The monomers are also investigated at a higher level, including coupled-cluster and state-average CASSCF computations. Our calculations show that the monomers have a 5B2 ground state arising from the Renner-Teller distorted 5IIg transition state, leading to a bent geometry. The global minima of the gas-phase clusters of CrF2 and CrCl2 consist of two-dimensional, anti-ferromagneticall
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Books on the topic "Chromite – Albanie"

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Gudar, Beqiraj, and Frashëri Neki, eds. A review of the application of geophysical methods in exploration for copper and chrome ores in Albania: A half century history : a monograph. Academy of Sciences of Albania, 2008.

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Conference papers on the topic "Chromite – Albanie"

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Kospiri, A., and A. Zajmi. "Integrated Geophysical Surveys for Searching of Podiform Chromite in Albania." In 4th International Congress of the Brazilian Geophysical Society. European Association of Geoscientists & Engineers, 1995. http://dx.doi.org/10.3997/2214-4609-pdb.313.166.

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Kospiri, Aleksander. "Integrated geophysical surveys for searching of podiform chromite in Albania." In SEG Technical Program Expanded Abstracts 1999. Society of Exploration Geophysicists, 1999. http://dx.doi.org/10.1190/1.1821021.

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Prenga, L., V. Doda, and V. Azizaj. "Application of the IP Method in Chromium Mineral Research in Albania." In 62nd EAGE Conference & Exhibition. European Association of Geoscientists & Engineers, 2000. http://dx.doi.org/10.3997/2214-4609-pdb.28.p187.

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Frasheri, A., L. Lubonia, and P. Alikaj. "On the application of geophysics in the exploration for copper and chrome ores in Albania." In 53rd EAEG Meeting. European Association of Geoscientists & Engineers, 1991. http://dx.doi.org/10.3997/2214-4609.201410796.

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