Petrogenesis of granites from the Utla area of Gadoon, north-west Pakistan: Implications from petrography and geochemistry

Muhammad Sajid, Mohammad Arif, M. Tahir Shah

Journal of Earth Science ›› 2014, Vol. 25 ›› Issue (3) : 445-459.

Journal of Earth Science ›› 2014, Vol. 25 ›› Issue (3) : 445-459. DOI: 10.1007/s12583-014-0435-5
Article

Petrogenesis of granites from the Utla area of Gadoon, north-west Pakistan: Implications from petrography and geochemistry

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Abstract

The granitic rocks around the Utla area (Gadoon), north western, Pakistan are studied in terms of their petrographic features and geochemical characteristics. Although predominantly mega-porphyritic, some of the Utla granites are massive and display fine-grained equi-granular texture. Some of the mega-porphyritic varieties exhibit foliation and seem to be restricted to shear zones. In addition to being distributed largely as phenocrysts, all the essential minerals (plagioclase, perthitic alkali feldspar and quartz) also constitute the groundmass. The studied samples also contain minor to accessory amounts of tourmaline, muscovite and biotite and accessory to trace amounts of apatite, andalusite, garnet, zircon, monazite, epidote and sphene. A detailed geochemical investigation reveals a calc-alkaline and peraluminous character of the Utla granites. The peraluminous character and total lack of hornblende designate their S-type character while a volcanic arc or syn-collisional tectonic setting for their emplacement is indicated by discrimination diagrams. Further examination shows that the melt parental to the Utla granite was derived from a plagioclase-poor, clay-rich rock, i.e., pelite. The petrogenetically significant petrographic and geochemical features of the Utla granite show greater similarity with the Mansehra than the Ambela granites. These include (i) the predominantly megaporphyritic texture, (ii) the presence of andalusite and tourmaline, (iii) the calc-alkaline geochemical signature and (iv) an indication of similar melt source rock character.

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petrography / geochemistry / granite / Utla / Pakistan

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Muhammad Sajid, Mohammad Arif, M. Tahir Shah. Petrogenesis of granites from the Utla area of Gadoon, north-west Pakistan: Implications from petrography and geochemistry. Journal of Earth Science, 2014, 25(3): 445‒459 https://doi.org/10.1007/s12583-014-0435-5

References

Ahmad I, Khan S, Lapen T, . Isotopic Ages for Alkaline Igneous Rocks, Including a 26 Ma Ignimbrite, from the Peshawar Plain of Northern Pakistan and Their Tectonic Implications. Journal of Asian Earth Sciences, 2013, 62: 414-424.
CrossRef Google scholar
Anczkiewicz R, Burg J P, Hussain S S, . Stratigraphy and Structure of the Indus Suture in the Lower Swat, Pakistan, NW Himalaya. Journal of Asian Earth Sciences, 1998, 16(2–3): 225-238.
CrossRef Google scholar
Chappell B W, White A J R. I- and S-Type Granites in the Lachlan Fold Belt. Transactions of the Royal Society of Edinburgh: Earth Sciences, 1992, 83: 1-26.
CrossRef Google scholar
Chappell B W. Aluminium Saturation in I- and S-Type Granites and the Characterization of Fractionated Haplogranites. Lithos, 1999, 46: 535-551.
CrossRef Google scholar
Chappell B W, White A J R. Two Contrasting Granite Types: 25 Years Later. Australian Journal of Earth Sciences, 2001, 48: 489-499.
CrossRef Google scholar
Coward M P, Jan M Q, Rex D, . Geo-Tectonic Framewok of the Himalaya of N Pakistan. Journal of Geological Society of London, 1982, 139: 299-308.
CrossRef Google scholar
Coward M P, Rex D C, Asif K M, . Collision Tectonics in the NW Himalaya. Collision Tectonics. Geological Society of London Special Publication, 1986, 19: 203-219.
CrossRef Google scholar
Coward M P, Buffer R W H, Chambers A F, . Folding and Imbrication of the Indian Crust during Himalayan Collision. Philosophical Transaction of the Royal Society London, 1988, 326(A1): 89-116.
CrossRef Google scholar
Dahlquist J A, Galindo C, Pankhurst R J, . Magmatic Evolution of the Peñón Rosado Granite: Petrogenesis of Garnet Bearing Granitoids. Lithos, 2007, 95(3–4): 177-207.
CrossRef Google scholar
Deer W A, Howie R A, Zussman J. An Introduction to the Rock-Forming Minerals, 1992, 2nd ed. England: Longman Scientific and Technical
DiPietro J A, Pogue K R, Lawrence R D, . Stratigraphy South of the Main Mantle Thrust, Lower Swat, Pakistan. Himalayan Tectonics, Special Publication, 1993, 74: 207-220.
CrossRef Google scholar
DiPietro J A, Pogue K A, Hussain A, . Geologic Map of Indus Syntaxis and Surrounding Area, Northwest Himalaya, Pakistan. Geological Society of America, Special Paper, 1998, 328.
du Bray E A. Garnet Composition and Their Use as Indicators of Peraluminous Granitoid Petrogenesis, Southeastern Arabian Shield. Contributions to Mineralogy and Petrology, 1988, 100: 204-212.
CrossRef Google scholar
El Bouseily A M, El Sokkary A A. The Relation between Rb, Ba and Sr in Granitic Rocks. Chemical Geology, 1975, 16: 207-219.
CrossRef Google scholar
Harris N, Inger S. Trace Element Modeling of Pelite-Derived Granites. Contributions to Mineralogy and Petrology, 1992, 110: 46-56.
CrossRef Google scholar
Holtz F, Johannes W. Genesis of Peraluminous Granites. I. Experimental Investigation of Melt Compositions at 3 and 5 kb and Various H O Activities. Journal of Petrology, 1991, 32: 935-958.
CrossRef Google scholar
Hussain A, Dipietro J A, Pogue K A, . Geologic Map of 43-B Degree Sheet of NWFP Pakistan. Geologic Map Series, Geological Survey of Pakistan, Map No. 11, 2004
Jan M Q, Khan M A, Tahirkheli T, . Tectonic Subdivision of Granitic Rocks of North Pakistan. Geological Bulletin, University of Peshawar, 1981, 14: 159-182.
Jan M Q, Karim A. Continental Magmatism Related to Late Paleozoic-Early Mesozoic Rifting in North Pakistan and Kashmir. Geological Bulletin, University of Peshawar, 1990, 23: 1-25.
Kazmi A H, Lawrence R D, Dawood H, . Geology of Indus Suture in the Mingora-Shangla Area of Swat, North Pakistan. Geological Bulletin, University of Peshawar, 1984, 17: 127-144.
Kebede T, Koeberl C, Koller F. Magmatic Evolution of the Siqii-Wagga Garnet Bearing Two Mica Granite, Wallagga Area, Western Ethopia. Journal of African Earth Sciences, 2001, 32: 193-221.
CrossRef Google scholar
Kempe D R C, Jan M Q. An Alkaline Igneous Province in North West Frontier Province, West Pakistan. Geological Magazine, 1970, 107: 395-398.
CrossRef Google scholar
Khan M I, Hammad M. Petrology of Utla Granite, Gadoon Area: [Dissertation], 1978 Pakistan: University of Peshawar
King B H. The Structure and Petrology of Part of Lower Swat, West Pakistan, with Special Reference to the Origin of Granitic Gneisses: [Dissertation], 1964 London: University of London
Koh J S, Yun S H. The Geochemistry of Yuksipryeong Two-Mica Leuco-Granite, Yeongnam Massif, Korea. Journal of Petrological Society of Korea, 2003, 12(3): 119-134.
Lawrence R D, Kazmi A H, Snee L W. Kazmi A H, Snee L W. Geological Settings of Emerald Deposits of Swat, North Pakistan. Emeralds of Pakistan, 1989 Pakistan: Geological Survey of Pakistan
Le Fort P, Debon F, Sonet J. The “Lessor Himalayan” Cordierite Granite Belt, Typology and Age of the Pluton of Mansehra, Pakistan. Geological Bulletin, University of Peshawar, 1980, 13: 51-62.
Le Fort P, Debon F, Sonet J. Shams F A. The Lower Paleozoic “Lesser Himalayan” Granite Belt: Emphasis on Simchar Pluton of Central Nepal. Granite of Himalayas, Karakoram and Hindukush, Institute of Geology, 1983 Lahore: Punjab University, 235-256.
Le Maitre R W. Igneous Rocks: A Classification and Glossary of Terms, 2002, 2nd ed. Cambridge: Cambridge University Press
CrossRef Google scholar
London D. Phosphorous in S-Type Magmas: The P2O5 Content of Feldspar from Peraluminous Granites, Pegmatites and Rhyolites. American Mineralogist, 1992, 77: 126-145.
Martin N R, Siddique S F A, King B H. A Geological Reconnaissance of the Region between Lower Swat and Indus River of Pakistan. Geological Bulletin, Punjab University, 1962, 2: 1-13.
Maniar P D, Piccoli P M. Tectonic Discrimination of Granitoids. Geological Society of America Bulletin, 1989, 101: 635-643.
CrossRef Google scholar
Miller C F. Are Strongly Peraluminous Magmas Derived from Pelitic Sedimentary Sources?. Journal of Geology, 1985, 93: 673-689.
CrossRef Google scholar
Miyashiro A. Metamorphism and Metamorphic Belts, 1973 London: George Allen and Unwin
CrossRef Google scholar
Nagudi B, Koeberl C, Kurat G. Petrography and Geochemistry of Singo Granite, Uganda, and Implications for Its Origin. Journal of African Earth Sciences, 2003, 36: 73-87.
CrossRef Google scholar
Patino Douce A E, Johnston A D. Phase Equilibria and Melt Productivity in the Politic System: Implication for the Origin of Peraluminous Granitoids and Aluminous Granulites. Contributions to Mineralogy and Petrology, 1991, 107: 202-218.
CrossRef Google scholar
Patino Douce A E, Beard J S. Dehydration-Melting of Biotite Gneiss and Quartz Amphibolite from 3 to 15 kbar. Journal of Petrology, 1995, 36: 707-738.
CrossRef Google scholar
Pearce J A, Gale G H. Identification of Ore Deposition Environment from Trace Element Geochemistry of Associated Igneous Host Rocks. Volcanic Processes in Ore Genesis. Geological Society of London, Special Publication, 1979, 7: 14-24.
CrossRef Google scholar
Pearce J A, Harris N B W, Tindle A G. Trace Element Discrimination Diagrams for the Tectonic Interpretation of Granitic Rocks. Journal of Petrology, 1984, 25: 956-983.
CrossRef Google scholar
Pogue K R, Hussain A. New Light on Stratigraphy of Nowshera Area and the Discovery of Early to Middle Ordovician Trace Fossils in NWFP Pakistan. Geological Survey of Pakistan Information Release, 1986, 135 15.
Pogue K R, Wardlaw B R, Harris A G, . Paleozoic and Mesozoic Stratigraphy of Peshawar Basin, Pakistan: Correlations and Implications. Geological Society of America Bulletin, 1992, 104: 915-927.
CrossRef Google scholar
Rafiq M, Jan M Q. Petrography of Ambela Granitic Complex, NW Pakistan. Geological Bulletin, University of Peshawar, 1988, 21: 27-48.
Rafiq M, Jan M Q. Geochemistry and Petrogenesis of Ambela Granitic Complex, NW Pakistan. Geological Bulletin, University of Peshawar, 1989, 22: 159-179.
Sajid M, Arif M. Field Features and Petrography of Igneous Rocks from Utla (Gadoon), NW Pakistan: Preliminary Investigation. Journal of Himalayan Earth Sciences, 2010, 43: 75-76.
Searle M P, Khan M A, Fraser J E, . The Tectonic Evolution of the Kohistan-Karakoram Collision Belt along Karakom Highway Transect, North Pakistan. Tectonics, 1999, 18(6): 929-949.
CrossRef Google scholar
Shaltegger U, Zeilinger G, Frank M, . Multiple Mantle Sources during Island Arc Magmatism: U-Pb and Hf Isotopic Evidence from the Kohistan Arc Complex, Pakistan. Terra Nova, 2002, 14: 461-468.
CrossRef Google scholar
Shams F A. Geology of the Mansehra-Amb State Area, North-Western Pakistan. Geological Bulletin, Punjab University, Lahore, 1969, 1-32.
Siddique S F A, Chaudhry M N, Shakoor A. Geology and Petrology of Feldspathoidal Syenites and the Associated Rocks of Koga Area, Chamla Valley, Swat, West Pakistan. Geological Bulletin, Punjab University, 1968, 7: 1-29.
Skjerlie K P, Johnston A D. Vapour-Absent Melting from 10 to 20 kbar of Crustal Rocks that Contain Multiple Hydrous Phases: Implications for Anatexis in the Deep to very Deep Continental Crust and Active Continental Margins. Journal of Petrology, 1996, 37: 661-691.
CrossRef Google scholar
Stauffer K W. Silurian-Devonian Reef Complex near Nowshera, West Pakistan. Geological Society of America Bulletin, 1968, 79: 1331-1350.
CrossRef Google scholar
Sylvester P J. Post-Collisional Strongly Peraluminous Granites. Lithos, 1998, 45: 29-44.
CrossRef Google scholar
Taylor S R, McLennan S M. The Continental Crust: Its Composition and Evolution, 1985 Oxford: Blackwell
Treloar P J, Rex D C. Cooling and Uplift History of the Crystalline Thrust Stack of the Indian Plate Internal Zones West of Nanga Parbat, Pakistan Himalaya. Tectonophysics, 1990, 180: 323-349.
CrossRef Google scholar
Treloar P J, Broughten R D, Williams M P, . Deformation, Metamorphism and Imbrication of the Indian Plate South of MMT, North Pakistan. Journal of Metamorphic Geology, 1989, 7: 111-127.
CrossRef Google scholar

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