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Aliyari, Farhang, Demir, Yılmaz, Bouzari, Farhad (2020) Geology, geochemistry, fluid inclusion and genesis of the Guijeh Qaleh IOA-type iron ore deposit, north of Takab district, Northwestern Iran. Ore Geology Reviews, 127. 103835pp. doi:10.1016/j.oregeorev.2020.103835

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Reference TypeJournal (article/letter/editorial)
TitleGeology, geochemistry, fluid inclusion and genesis of the Guijeh Qaleh IOA-type iron ore deposit, north of Takab district, Northwestern Iran
JournalOre Geology Reviews
AuthorsAliyari, FarhangAuthor
Demir, YılmazAuthor
Bouzari, FarhadAuthor
Year2020 (December)Volume127
Page(s)103835
PublisherElsevier BV
DOIdoi:10.1016/j.oregeorev.2020.103835Search in ResearchGate
Mindat Ref. ID4570884Long-form Identifiermindat:1:5:4570884:2
GUID13a19601-f5fb-4e46-ae64-246a3c3b7d75
Full ReferenceAliyari, Farhang, Demir, Yılmaz, Bouzari, Farhad (2020) Geology, geochemistry, fluid inclusion and genesis of the Guijeh Qaleh IOA-type iron ore deposit, north of Takab district, Northwestern Iran. Ore Geology Reviews, 127. 103835pp. doi:10.1016/j.oregeorev.2020.103835
Plain TextAliyari, Farhang, Demir, Yılmaz, Bouzari, Farhad (2020) Geology, geochemistry, fluid inclusion and genesis of the Guijeh Qaleh IOA-type iron ore deposit, north of Takab district, Northwestern Iran. Ore Geology Reviews, 127. 103835pp. doi:10.1016/j.oregeorev.2020.103835
In(2020) Ore Geology Reviews Vol. 127. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Alavi, M., Amidi, M., 1976. Geological map of 1: 250000 Takab. Geol. Surv. Iran.
Aliyari (2011) Mine and Trade of East Azarbaijan Province. Preliminary exploration report of Guijeh Qaleh iron deposit (south of Hashtrood, East Azarbaijan). Ministry of Industry, Mine and Trading, Organization of Industry 85, p
Aliyari, F., 2013. Exploration report of the semi-detailed exploration phase of the Guijeh Qaleh iron deposit (Hashtrood, East Azarbayjan province). Ministry of Industry, Mine, and Trading, Organization of Industry, Mine and Trade of East Azarbaijan province. 129 p.
Aliyari (2017) J. Min. Envi. Determination of geochemical anomalies and gold mineralized stages based on lithogeochemical data in the Zarshuran Carlin-like gold deposit (NW Iran) utilizing multifractal modelling and stepwise factor analysis 8, 593
Almada (1998) MSc dissertation, Universidade Federal do Pará. O Corpo Acampamento Sul do depósito Bahia, Carajás: características geológicas e fluídos hidrotermais 99, p
Babakhani (1995) Geol. Surv. Iran. 1:100000 geology map of the Takhte-Soleiman quadrangle
Not Yet Imported: Treatise on Geochemistry - book-chapter : 10.1016/B978-0-08-095975-7.01123-2

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Barton, M.D., Johnson, D.A., 2004. Footprints of Fe-oxide (-Cu-Au) systems. SEG 2004: predictive mineral discovery under cover. Centre for Global Metallogeny, Special Publication 33. The University of Western Australia, 112–116.
Bodnar (2014) Fluid Inclusions in Hydrothermal Ore Deposits , 119
Burnham, C.W., 1997. Magmas and hydrothermal systems. In Geochemistry of Hydrothermal Ore Deposits; Barnes, H.L., Ed.; John Wiley & Sons, Inc.: New York, NY, USA, 63–123.
Campbell (1984) Can. Mineral. Nickel and cobalt in pyrrhotite and pyrite from the Faro and Sullivan orebodies 22, 503
Carvalho (2009) , 158 pp.
Corriveau (2018) Scientific Presentation Iron-oxide and alkali-calcic alteration ore systems and their polymetallic IOA, IOCG, skarn, albitite-hosted U±Au±Co, and affiliated deposits: A short-course series. Part 2: Geological Survey of Canada 81, 1
Daliran (2002) Kiruna-type iron oxide-apatite ores and apatites of the Bafq district, Iran, with an emphasis on the REE geochemistry of their apatites vol. 2, 303
Daliran, F., Stosch, H.G., Williams, P., 2007. Multistage metasomatism and mineralization at hydrothermal Fe oxide-REE-apatite deposits and “apatitites” of the Bafq District, Central-East Iran. In: Andrew, C.J. et al. (Eds.), Digging Deeper. Proceedings of the 9th Biennial SGA Meeting, Dublin, Irish Assoc. Econ. Geol. 1501–1504.
Daliran, F., Stosch, H.G., Williams, P.J., Jamali, H., Dorri, M.B., 2010. Early Cambrian iron oxide-apatite-REE (U) deposits of the Bafq district, east-central Iran, in Corriveau, L., and Mumin, A.H., eds., Exploring for iron oxide copper-gold deposits: Canada and global analogues: Geological Survey of Canada, Short Course 20, 147-159.
Dill (2000) Econ. Geol. Mineralogical and chemical studies of volcanic-related argillaceous industrial minerals of the Central America Cordillera (Western Salvador) 95, 517
Ghorbani (2013) , 569
Hatami (2016)
Hein (1989) , 52
Hemely (1980) Geol. Equilibria in the system Al2O3-SiO2-H2O and some general implications for alteration/mineralization processes: Econ 75, 210
Henderson (1996) The rare earth elements: Introduction and review , 1
Hitzman (2000) PGC Publishing, Adelaide Iron oxide -Cu-Au deposits: what, where, when, and why, in Porter, T.M. ed., hydrothermal iron oxide copper-gold and related deposits: A global perspective 1, 9
Karimpour (1989) , 404
Kholghi Khosraghi, M.A., 1994. 1:100000 geology map of the Shahindej quadrangle, Geol. Surv. Iran.
Lindenmayer, Z.G., 1990. Salobo Sequence, Carajás, Brazil: Geology, Geochemistry and Metamorphism. Ph.D. Thesis, London, Canada, University of Western Ontario, 407 pp.
Maanijou, M., 2002. Proterozoic metallogeny of Iran. Abstracts of the international symposium on the metallogeny of Precambrian shields, Kiev, 13–26 September 2002, p 2.
Maanijou (2018) J. Econ. Geol. Mineralogy and electron microprobe studies of magnetite in the Sarab-3 iron ore deposit, southwest of the Shahrak mining region (east Takab) 10, 267
Maanijou, M., Salemi, R., Khodaei, L., 2014. An investigation of iron skarn mineralization in the Shahrak area, Takab (northwestern Iran). 23rd Symposium of Crystallography and Mineralogy of Iran, Damgham University. (in Persian with extended English abstract).
Mazaheri (1994) , 48
Mohammadi (2014) J. Adv. Appl. Geol. The Gor Gor iron occurrence, northwest of Takab: metamorphosed volcano-sedimentary mineralization in Sanandaj-Sirjan zone 4, 20
Najafzadeh (2017) J. Adv. Appl. Geol. The Arabshah occurrence: an epithermal Carlin-type Au-As-Sb mineralization of in the Takab-Anguran-Takht-e-Soleiman metallogenic belt, Western Azarbaijan Province 4, 62
Naslund (2002) Magmatic iron ores and associated mineralization: Examples from the Chilean high Andes and Coastal Cordillera , 207
Nayebi (2016) Petrology Petrology, geochemistry and tectonic setting of Kohe Gor Gor subvolcanic intrusions in the NW of Zarshuran gold deposit (NE Takab, West Azerbaijan) 26, 117
Neves, M.P., Villas, R.N., Galarza, M.A., 2006. Datação e avaliação da fonte dos metais do Depósito Sossego, Região de Carajás: Evidências isotópicas de Pb e Sm–Nd. XLIII Congresso Brasileiro de Geologia [CD-ROM].
Parák (1991) Econ. Geol. Monogr. Volcanic sedimentary rock-related metallogenesis in the Kiruna-Skellefte belt of northern Sweden 8, 20
Pearce, J.A., 1996. A user's guide to basalt discrimination diagrams. In: Wyman, D. A. (ed.) Trace Element Geochemistry of Volcanic Rocks: Applications for Massive Sulfide Exploration. Geological Association of Canada, Short Course Notes 12, 79–113.
Pollard (2002) Evidence of a magmatic fluid and metal source for Fe-oxide Cu–Au mineralization , 27
Porter (2010) Current understanding of iron associated-alkali altered mineralized systems. Part 1- An overview , 5
Porter (2010) The Carrapateena iron oxide copper-gold deposit, Gawler Craton, South Australia: A review , 191
Réquia (1995) Rev Escola Minas Fases fluidas na evolução metamórfica do depósito de Cu–Au de Salobo, Carajás, Pará 49, 117
Williams, P.J., 2010b. “Magnetite-group” IOCGs with special reference to Cloncurry (NW Queensland) and North Sweden. Setting, alteration, deposit characteristics, fluid sources, and their relationship to apatite-rich iron ore, in Corriveau, L., and Mumin, A.H., eds., Exploring for iron oxide copper-gold deposits: Canada and global analogues. Geol. Ass. Can. Short Course Notes 20, 23-38.
Not Yet Imported: - book : 10.1515/9781501508271

If you would like this item imported into the Digital Library, please contact us quoting Book ID 9781501508271
Rollinson (1993)
Samani (1998) AEOI Sci. Bull. Precambrian metallogeny in Central Iran 17, 1
Shepherd (1985) , 239
Shirkhani (2007) M. Sc. thesis, Tarbiat Modares Univ., Iran (in Persian) Mineralogy, geochemistry and genesis of Ay Qalasi Pb-Zn deposit, SE Takab. – Unpubl 143
Skirrow (2002) The geological framework, distribution and controls of Fe-oxide Cu-Au mineralisation in the Gawler Craton, South Australia. Part II: Alteration and Mineralisation V. 2, 33
Spangenberg (1999)
Stöcklin, J., 1971. Stratigraphic lexicon of Iran; Part 1: Tehran, Geological Survey of Iran, 338 p. Tehran, Iran.
Sun (1989) Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes , 313
Tornos (2017) The Roots and tops of magnetite-apatite mineralization: evolving magmatic-hydrothermal systems , 831
Wang (2001) Act. Petr. Sin. (in Chinese) Th/Hf-Ta/Hf identification of tectonic setting of basalts 17, 413
Williams, P.J., 2010a. Classifying IOCG deposits, in Corriveau, L., and Mumin, A.H., eds., Exploring for iron oxide copper-gold deposits: Canada and global analogues. Geol. Ass. Can. Short Course Notes 20, 13-22.
Williams (2005) Econ. Geol. 100th Anniv. Iron oxide copper-gold deposits: Geology, Space-time distribution, and possible modes of origin Vol, 371
Wilson (1989)
Xavier, R.P., Monteiro, L.V.S., Souza Filho, C.R., Torresi, I., Carvalho, E.R., Dreher, A.M., Pestilho, A.L.S., Moreto, C.P.N., Wiedenbeck, M., Trumbull, R.B., 2010. The iron oxide copper–gold deposits of the Carajás Mineral Province, Brazil: an updated and critical review. In: Porter, TM (ed), Hydrothermal iron oxide Cu–Au and related deposits: A global perspective, Volume 3-Advances in the understanding of IOCG deposits. PGC Publishing, Adelaide, Australia, in press.
Xavier, R.P., Rusk, B., Emsbo, P., Monteiro, L.V.S., 2009. Composition and Source of salinity of ore-bearing fluids in Cu–Au Systems of the Carajás Mineral Province, Brazil. Proceedings of the 10th Biennial SGA Meeting of the Society for Geology Applied to Mineral Deposits, Townsville, Australia, 17–20 August 2009, 272–274.


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