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Ayati, F., Yavuz, F., Noghreyan, M., Haroni, H. A., Yavuz, R. (2008) Chemical characteristics and composition of hydrothermal biotite from the Dalli porphyry copper prospect, Arak, central province of Iran. Mineralogy and Petrology, 94 (1) 107-122 doi:10.1007/s00710-008-0006-5

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Reference TypeJournal (article/letter/editorial)
TitleChemical characteristics and composition of hydrothermal biotite from the Dalli porphyry copper prospect, Arak, central province of Iran
JournalMineralogy and Petrology
AuthorsAyati, F.Author
Yavuz, F.Author
Noghreyan, M.Author
Haroni, H. A.Author
Yavuz, R.Author
Year2008 (September)Volume94
Page(s)107-122Issue1
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00710-008-0006-5Search in ResearchGate
Mindat Ref. ID16870Long-form Identifiermindat:1:5:16870:6
GUID49bd666e-c031-4cb6-839e-2ef324ac8918
Full ReferenceAyati, F., Yavuz, F., Noghreyan, M., Haroni, H. A., Yavuz, R. (2008) Chemical characteristics and composition of hydrothermal biotite from the Dalli porphyry copper prospect, Arak, central province of Iran. Mineralogy and Petrology, 94 (1) 107-122 doi:10.1007/s00710-008-0006-5
Plain TextAyati, F., Yavuz, F., Noghreyan, M., Haroni, H. A., Yavuz, R. (2008) Chemical characteristics and composition of hydrothermal biotite from the Dalli porphyry copper prospect, Arak, central province of Iran. Mineralogy and Petrology, 94 (1) 107-122 doi:10.1007/s00710-008-0006-5
In(2008, September) Mineralogy and Petrology Vol. 94 (1) Springer Science and Business Media LLC

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.

Angelkov K, Parvanov B (1980) The Assarel porphyry copper deposit, Bulgaria. In: Janković S, Sillitoe RH (eds) European copper deposits. Society of Applied Ore Deposits, Special Publication 1, pp 59–62
Dymek RF (1983) Titanium, aluminum and interlayer cation substitutions in biotite from high-grade gneisses, west Greenland. Am Mineral 68:880–899
Emami MH (1991) Explanatory text of the Qom, Geological Quadrangle Map, 1:250,000, Geological Survey of Iran, No. E6
Foster MD (1960) Interpretation of the composition of trioctahedral micas. US Geol Surv, Prof Pap 354-B:1–146
Gatter I, Földessy J, Zelenka T, Kiss J, Szebényi G (1999) High and low-sulfididation epithermal mineralization of the Mátra Mountains, Northeast Hungary. In: Molnár F, Lexa J, Hedenquist JW (eds) Epithermal mineralization of the western Carpathians. Society of Economic Geology Guidebook Series 31, pp 155–180
Haroni HA (2005) Preliminary Exploration at Dalli Porphyry Cu-Prospect, Central Province of Iran, DORSA Engineering Limited, pp 22
Hey MH (1954) A new review of the chlorites. Mineral Mag 30:277–292
Jelanković R, Vakanjac B (1999) Paragenetic features and model of development of the Veliki Krivelj copper deposit (Serbia). Geol Macedonica 13:23–30
Munoz JL (1984) F–OH and Cl–OH exchange in micas with applications to hydrothermal ore deposits. In: Bailey SW (ed) Micas. Reviews in Mineralogy, vol. 13. Mineralogical Society of America, Washington, DC, pp 469–493
Munoz JL (1992) Calculation of HF and HCl fugacities from biotite compositions: revised equations. Geological Society of American Abstract Programs 24, A221
Sillitoe RH, Khan SN (1977) Geology of the Saindak porphyry copper deposit, Pakistan. Transaction Institute of Mining and Metallurgy Section B:86, B27–42
Taylor RP (1983) Comparison of biotite geochemistry of Bakircay, Turkey, and Los Pelambres, Chile, porphyry copper systems. Inst Min Met. Sec B: App Earth Sci, B92:B16–B22
Yavuz F (1997) Igneous and hydrothermal alteration biotites from the Güzelyayla porphyry copper mineralization area, northern Turkey. In: Papunen H (ed) Mineral deposits: research and exploration—Where do they meet? Proceedings of the Fourth Biennial SGA Meeting, Turku/Finland, pp 691–694


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