Yıl: 2020 Cilt: 0 Sayı: 161 Sayfa Aralığı: 81 - 99 Metin Dili: İngilizce DOI: 10.19111/bulletinofmre.543419 İndeks Tarihi: 05-10-2020

Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey

Öz:
Gökçeada Island, which is situated west of Biga Peninsula, has widespread magmatism withvariable ages. Lower-Middle Eocene Dağiçitepe volcanics are the oldest volcanic unit in theisland and consist of lavas, tuff-tuffites. They are influenced by alteration and almost all minerals,except quartz, are transformed into other minerals. Lower Oligocene Gökçeada andesitic lava/domes exhibiting hypocrystalline porphyric texture, are the products of NE-SW trending domes/cryptodomes. The phenocrysts assemblages consist of plagioclase, hornblende, clinopyroxene ±biotite and quartz. Middle Miocene Eşelek volcanics, which occur as lavas and pyroclastic rocks,exhibit hypocrystalline porphyric and intersertal textures. They are composed of plagioclase,hornblende and clinopyroxene crystals. Rhyolitic Dağiçitepe volcanics and andesitic Gökçeadalava/domes have calc-alkaline, andesitic Eşelek volcanics have tholeiitic character. They havegeochemical features similar to subduction-related magmas. Lower-Middle Eocene Dağiçitepevolcanics are the products of syn-collisional magmas that have undergone processes of crustalcontamination due to thickened crust. Whereas, Lower Oligocene Gökçeada andesitic lava/domes arethe products of post-collisional magmas and were derived from metasomatized lithospheric mantle.Middle Miocene Eşelek volcanics were also derived from lithospheric mantle but, the mantle sourcegenerating Eşelek volcanics were relatively depleted over time. Geochemical data demonstrate thedecreasing role of subduction signature and crustal contamination during the genesis and evolutionof Gökçeada volcanics from Lower-Middle Eocene to Middle Miocene.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Adam, J., Green, T. 2006. Trace element partitioning between mica- and amphibole-bearing garnet lherzolite and hydrous basanitic melt: 1. Experimental results and the investigation of controls on partitioning behaviour. Contributions to Mineralogy and Petrology 152, 1-17.
  • Adam, J., Green, T. 2010. Trace element partitioning between mica-and anphibole-bearing garnet lherzolite and hydrous basanitic melt: 2. Tasmanian Cainozoic basalts and the origins of intraplate basaltic magmas. Contribution to Mineralogy and Petrology, DOI 10.10007/s00410-010-0570-7.
  • Akartuna, M. 1950. İmroz adasında bazı jeolojik müşahadeler. Türkiye Jeoloji Kurumu Bülteni 2/2, 8-17.
  • Akartuna, M., Atan, O.R. 1978. Gökçeada’nın (Çanakkale) jeoloji ve sedimantoloji hakkında ön rapor. Maden Tetkik ve Arama Genel Müdürlüğü, Rapor No: 105, Ankara (yayınlanmamış).
  • Akdeniz, N. 1980. Başlamış Formasyonu. Journal of Geological Engineering 10, 39-47.
  • Akyürek, B., Soysal, Y. 1983. Biga yarımadası güneyinin (Savaştepe-Kırkağaç-Bergama-Ayvalık) temel jeoloji özellikleri. Maden Tektik ve Arama Dergisi 95, 1-12.
  • Altunkaynak, Ş. 2007. Collision-driven slab breakoff magmatism in Northwestern Anatolia, Turkey. Journal of Geology 115, 63–82.
  • Altunkaynak, Ş., Dilek, Y. 2006. Timing and nature of postcollisional volcanism in western Anatolia and geodynamic implications. In: Dilek, Y., Pavlides, S. (Eds.), Post collisional tectonics and magmatism in the Mediterranean region and Asia: Geological Society of America Special Paper 409, 321–351.
  • Altunkaynak, Ş., Genç, Ş.C. 2008. Petrogenesis and time- progressive evolution of the Cenozoic continental volcanism in the Biga Peninsula. Lithos, 102, 316-340.
  • Altunkaynak, Ş., Dilek, Y. 2013. Eocene mafic volcanism in northern Anatolia: its causes and mantle sources in the absence of active subduction. International Geology Review 55, 13, 1641-1659.
  • Altunkaynak, Ş., Dilek, Y., Genç, Ş.C., Sunal, G., Gertisser, R., Furnes, H., Foland, K. A., Yang, J. 2012a. Spatial, temporal and geochemical evolution of Oligo-Miocene granitoid magmatism in western Anatolia, Turkey. Gondwana Research 21, 961-986.
  • Altunkaynak, Ş., Sunal, G., Aldanmaz, E., Genç, Ş.C., Dilek, Y., Furnes, H., Foland, K. A., Yang, J., Yıldız, M. 2012b. Eocene Granitic Magmatism in NW Anatolia (Turkey) revisited: New implications from comparativezircon SHRIMP U–Pb and 40Ar- 39Ar geochronology and isotope geochemistry on magma genesis and emplacement. Lithos 155, 289-309.
  • Atabey, E., Ilgar, A., Saltık, A. 2004. Çanakkale havzasının orta-üst Miyosen stratigrafisi, Çanakkale, KB Türkiye. Maden Tetkik ve Arama Dergisi 128, 79-97.
  • Aysal, N. 2015. Mineral chemistry, crystallization conditions and geodynamic implications of the Oligo–Miocene granitoids in the Biga Peninsula, Northwest Turkey. Journal of Asian Earth Science 105, 68-84.
  • Aysal, N.. Keskin, M., Kasapçı, C., Güngör, Y., Ündül, Ö., Peytcheva, I. 2018. Geochronology and geochemistry of the Gökçeada volcanics: Geodynamic significance of the Oligosen Magmatism on the Biga Peninsula, western Turkey. 8. Geochemistry Symposium Abstracts Book, 02-06 May 2018, Antalya, Turkey.
  • Bryant, J.A., Yogodzinski, G.M., Hall, M.I., Lewicki, J.L., Bailey, D.G. 2006. Geochemical constraints on the origin of volcanic rocks from the Andean Northern Volcanic Zone, Ecuador. Journal of Petrology 47, 6, 1147-1175.
  • Chen, B., Long, X., Wilde S.A., Yuan, C., Wang, Q., Xia, X., Zang, Z. 2017. Delamination of lithospheric mantle evidenced by Cenozoic potassic rocks in Yunnan, SW China: A contribution to uplift of the Eastern Tibetan Plateau. Lithos 284-285, 709- 729.
  • DePaolo, D.J. 1981. Trace element and isotopic effects of combined wall-rock assimilation and fractional crystallisation. Earth Planetary Science Letter 53, 189-202.
  • Edwards, C., Menzies, M., Thirwall, M. 1991. Evidence from Muriah, Indonesia, for the interplay of supra-subduction zone and intraplate processes in the genesis of potassic alkaline magmas. Journal of Petrology 32, 555–592.
  • Elmas, A., Koralay, E., Duru, O., Schmidt, A. 2017. Geochronology, geochemistry, and tectonic setti,ng of the Oligocene magmatic rocks (Marmaros Magmatic Assemblage) in Gökçeada Island, northwest Turkey. International Geology Review 59, 4, 420-447.
  • Ercan, T., Satır, M., Dora, A., Sarıfakıoğlu, E., Yıldırım, T., Adis, C., Walter, H.J., Özbayrak, İ.H. 1995. Biga Yarımadası, Gökçeada, Bozcaada ve Tavşan Adaları’ndaki Tersiyer yaşlı volkanitlerin petrolojisi ve bölgesel yayılımı. Maden Tetkik ve Arama Dergisi 117, 55-86.
  • Ersoy, Y.E., Helvacı, C., Uysal, İ., Karaoğlu, Ö., Palmer, M.R., Dindi, F. 2012. Petrogenesis of the Miocene volcanism along the İzmir-Balıkesir Transfer Zone in western Anatolia, Turkey: implications for origin and evolution of potassic volcanism in post-collisional areas. Journal of Volcanology and Geothermal Research 241-242, 21-38.
  • Fitton, J. G., James, D., Kempton, P.D., Ormerod, D.S., Leeman, W.P. 1988. The role of lithospheric mantle in the generation of late Cenozoic basic magmas in the Western United States. Journal of Petrology Special Lithosphere Issue, 331-349.
  • Gamble, J., Woodhead, J., Wright, I., Smith, I. 1996. Basalt and sediment geochemistry and magma petrogenesis in a transect from oceanic island arc to rifted continental margin arc: the Kermadec- Hikurangi margin, SW Pacific. Journal of Petrology 37, 6, 1525-1546.
  • Genç, Ş.C., Yılmaz, Y. 1997. An example of Post-collisional Magmatism in Northwestern Anatolia: the Kızderbent Volcanics (Armutlu peninsula, Turkey). Turkish Journal of Earth Science 6, 33- 42.
  • Genç, Ş.C., Altunkaynak, Ş. 2007. Eybek graniti (Biga yarımadası, KB Anadolu) üzerine: Yeni jeokimya verileri ışığında yeni bir değerlendirme. Yerbilimleri 28, 2, 75-98.
  • Gill, J.B. 1981. Orogenic andesites and plate tectonics. Springer - Verlag, New York, 392 p.
  • Gülmez, F., Genç, Ş.C., Keskin, M., Tüysüz, O. 2013. A post-collision slab-breakoff model for the orgin of the Middle Eocene magmatic rocks of the Armutlu-Almacık belt, NW Turkey and its regional implications. Geological Society, London, Special Publications 372, 107-139.
  • Haase, K.M., Mühe, R., Stoffers, P. 2000. Magmatism during extension of the lithosphere: geochemical constraints from lavas of the Shaban Deep, northern Red Sea. Chemical Geology 166, 225- 239.
  • Harris, N.B.W., Kelley, S., Okay, A.İ. 1994. Post-collsion magmatism and tectonics in northwest Anatolia. Contributions to Mineralogy and Petrology 117, 241-252.
  • Hickey, R.V., Frey, F.A., Gerlach, D.C., Escobar, L.L. 1986. Multiple source basaltic arc rocks from the southern volcanic zone from of the Andes (34°-41°S): Trace element and isotopic evidence for contributions from subducted oceanic crust. Journal of Geophysical Research 91, B6, 5963-5983.
  • Hickey, R.V., Roa, H.M., Escobar, L.L., Frey, F. 1989. Geochemical variations in Andean basaltic and silicic lavas from the Villarica-Lanin Chain (39.5°S): an evaluation of source heterogeneity, fractional crystallization and crustal assimilation. Contribution to Mineralogy and Petrology 3, 361- 386.
  • Hofmann, A.W. 1988. Chemical differentiation of the Earth: the relationship between mantle, continental crust, and oceanic crust. Earth and Planetary Science Letters 90, 297–314.
  • Hofmann, A.W., Jochum, K.P., Seufer, M., White W.M. 1986. Nb and Pb in oceanic basalts: new constraints on mantle evolution. Earth and Planetary Science Letters 79, 33-45.
  • Ilgar, A., Demirci, E.S., Duru, M., Pehlivan, Ş., Dönmez, M., Akçay, A.E. 2008. 1/100.000 ölçekli, Türkiye Jeoloji Haritaları Çanakkale H15 ve H16 Paftaları No: 100. Maden Tetkik ve Arama Genel Müdürlüğü, Ankara.
  • Irvine, T. N., Baragar, W. R. A. 1971. A guide to the chemical classification of the common volcanic rocks. Canadian Journal of Earth Science 8, 523-548.
  • Karacık, Z. Yılmaz, Y., Pearce, J., Ece, Ö.I. 2008. Petrochemistry of the South Marmara granitoids, northwest Anatolia, Turkey. International Journal of Earth Science 97, 1181-1200.
  • Kesgin, Y., Varol, B. 2003. Gökçeada ve Bozcaada’nın Tersiyer jeolojisi (Çanakkale), Türkiye. Maden Tetkik ve Arama Dergisi 126, 49-67.
  • Köprübaşı, N., Aldanmaz, E. 2004. Geochemical constraints on the petrogenesis of Cenozoic I-type granitoids in Northwest Anatolia, Turkey: evidence for magma generation by lithospheric delamination in a post-collisional setting. International Geology Review, 46, 705–729.
  • Labanieh, S., Chauvel, C., Germa, A., Q., X. 2012. Martinique: a clear case for sediment melting and slab dehydration as a function of distance to the trench. Journal of Petrology 53, 12, 2411-2464.
  • Langmuir, C.H., Vocke, R.D., Hanson, G.N., Hart, S.R. 1978. A general mixing equation with applications to İcelandic basalts. Earth and Planetary Science Letters 37, 380-392.
  • Li, D., He, D., Fan, C. 2015. Geochronology and Sr-Nd- Hf isotopic composition of the granites, enclaves, and mafic dykes in the Karamaya area, NW China: Insights into late Carboniferous crustal growth of West Junggar. Geoscience Frontiers 6, 2, 153-173.
  • McDonough, W.F.1990. Constraints on the composition of the continental lithospheric mantle. Earth and Planetary Science Letters 101, 1-18.
  • McDonough, W.F., Sun, S.S. 1995. The composition of the Earth. Chemical Geology 120, 223-253.
  • McKenzie, D.P., O’Nions, R.K. 1991. Partial melt distributions from inversion of rare earth element concentrations. Journal of Petrology 32, 1021-1091.
  • McLennan, S.M. 2001. Relationship between the trace element composition of sedimenatry rocks and upper continental crust. Geochemistry Geophysics Geosystems 2, DOI: 10.1029/ 2000GC000109.
  • Normand, M.D., Garcia, M.O. 1999. Primitive magmas and source characteristics of the Hawaiian plume: petrology and geochemistry of shield picrites. Earth and Planetary Science Letters 168, 27-44.
  • Okay, A.İ., Tüysüz, O. 1999. Tethyan sutures of northern Turkey. In: Durand, B., Jolivet, L., Horvath, F., Seranne, M. (Eds.), The Mediterranean Basin: Tertiary Extansion within the Alpine Orogen, Geological Society London Special Publications 156, 1, 475-515.
  • Okay, A.İ., Siyako, M., Bürkan, K.A. 1990. Biga Yarımadası’nın jeolojisi ve tektonik evrimi. Türkiye Petrol Jeologları Derneği Bülteni 2, 1, 83-121.
  • Okay, A.İ., Tansel, İ., Tüysüz, O. 2001. Obduction, subduction and collision as reflected in the Upper Cretaceous-Lower Eocene sedimentary record of western Turkey. Geological Magazine 138, 2, 117-142.
  • Pearce, J.A. 1996. Sources and settings of granitic rocks. Episodes 19, 4, 120-125.
  • Pearce, J.A., Harris, N.B.W., Tindle, A.G. 1984. Trace element discrimination diagrams for the tectonic interpretation of granitic rocks. Journal of Petrology 25, 956-983.
  • Plank, T. 2005. Constraints from thoriıum/lanthanum on sediment recycling at subduction zones and the evolution of the continents. Journal of Petrology 46, 5, 921-944.
  • Plank, T., Langmuir, C.H. 1998. The chemical composition of subducting sediment and its consequences for the crust and mantle. Chemical Geology 145, 325- 394.
  • Rollinson, H.R. 1993. Using geochemical data: evaluation, presentation, interpretation. Longman Scientific and Technical, John Wiley and Sons, Inc., New York, 352 p.
  • Sarı, R., Türkecan, A., Dönmez, M., Küçükefe, Ş., Aydın, Ü., Özmen, Ö. 2015. The geology of Gökçeada (Çanakkale). Bullettin of the Mineral Research and Exploration 150, 1-18.
  • Shaw, D.M. 1970. Trace element fractionation during anatexis. Geochimica Cosmochimica Acta 34, 237-243.
  • Sun, S.S., McDonough, W.F. 1989. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes. In: Saunders, A.D. and Norry, M.J. (eds.), Magmatism in ocean basins. Geological Society of London Special Publication 42, 313-345.
  • Sylvester, P.J. 1998. Post-collisional strongly peraluminous granites. Lithos 45, 29-44.
  • Şengör, A.M.C., Yılmaz, Y. 1981. Tethyan evolution of Turkey: a plate tectonic approach. Tectonophysics 75, 181-241.
  • Şentürk, K., Karaköse, C. 1987. Çanakkale Boğazı ve dolayının jeolojisi. Maden Tetkik ve Arama Genel Müdürlüğü Rapor No: 9333, Ankara, (unpublished).
  • Taylor, S., R., McLennan, S.M. 1985. The continental crust: its composition and evolution. An examination of the geochemical record preserved in sedimentary rocks. Blackwell Scientific Publications 46, pp.838.
  • Temel, R.Ö., Çiftçi, N.B. 2002. Gelibolu Yarımadası, Gökçeada ve Bozcaada Tersiyer Çökellerinin stratigrafisi ve ortamsal özellikleri. Türkiye Petrol Jeologları Derneği Bülteni 14, 17-50.
  • Thiéblemont, D., Tegyey, M. 1994. Une discrimination géochimique des roches différenciées témoin de la diversité d’origlisboaine et de situation tectonique des magmas calcoalcalins. Comptes Rendus de l’académie des Sciennces Paris 319, 87-94.
  • Thompson, R.N. 1982. Magmatism of the British Tertiary province. Scottish Journal of Geology 18, 49-107.
  • Thompson, R.N., Morrison, M.A., Dickin, A.P., Hendry, G.L. 1983. Continental flood basalts. arachnids rule OK? In: Hawkesworth, C.J. and Norry, M.J. (eds) Continental Basalts and Mantle xenoliths. Nantwich: Shiva, 158-185.
  • Tunç, İ.O., Yiğitbaş, E., Şengün, F. Wazeck, J., Hofmann, M., Linnemann, U. 2002. U-Pb zircon geochronology of northern metamorphic massifs in the Biga peninsula (NW Anatolia-Turkey): new data and a new approach to understand the tectonostratigraphy of the region. Geodinamica Acta 25, n3-4, Special Issue: Tectonics of the eastern Mediaterranean-Black Sea Region: Part A, dedicated in honor of Aral Okay’s 60th birthday, DOI: 10.1080/09853111.2013.87824.
  • Qian, X., Feng Q., Chonglakmani, C., Monjai, D. 2013. Geochemical and geochronological constrains on the Chiang Khong volcanic rocks (northwestern Thailand) and its tectonic implications. Frontiers of Earth Science 7, 4, 508-521.
  • Winchester, J.A., Floyd, P.A. 1977. Gerochemical discrimination of different magma series and their differentiation products using immobile elements. Chemical Geology 20, 325-343.
  • Yılmaz, Y. 1989. An approach to the origin of young volcanc rocks of western Turkey. In: Şengör, A.M.C. (eds), Tectonic ovolution of the Tethyan region. Kluwer Academics, Hague-The Netherlands 159-189.
  • Yılmaz, Y., Genç, Ş.C., Yiğitbaş, E., Bozcu, M. Yılmaz, K. 1995. Geological evolution of the Late Mesozoic continental margin of Northwestern Anatolia. Tectonophysics 243, 155-171.
  • Yılmaz, Y., Tüysüz, O., Yiğitbaş, E., Genç Ş.C., Şengör, A.M.C. 1997. Geology and tectonic evolution of the Pontides. In: Robinson, A.G. (Ed.), Regional and Petroleum Geology of the Black Sea and surrounding region. American Association of Petroleum Geologists, Memoir 68, 183-226.
  • Yılmaz Şahin, S., Örgün, Y., Güngör, Y., Göker, A.F., Gültekin, A.H., Karacık, Z. 2010. Mineral and Whole-rock Geochemistry of the Kestanbol Granitoid (Ezine-Çanakkale) and its Mafic Microgranular Enclaves in Northwestern Anatolia: Evidence of Felsic and Mafic Magma Interaction. Turkish Journal of Earth Science 19, 101-122.
  • Zak, J., Kratinova, Z., Trubac, J. Mrlina, J. 2011. Structure, emplacement, and tectonic setting of Late Devonian granitoid plutons in the Teplá– Barrandian unit, Bohemian Massif. International Journal of Earth Science 100, 7, 1477-1495.
APA Şen P, Sarı R, Sen E, Dönmez C, ÖZKÜMÜŞ S, küçükefe ş (2020). Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. , 81 - 99. 10.19111/bulletinofmre.543419
Chicago Şen Pınar,Sarı Ramazan,Sen Erdal,Dönmez Cahit,ÖZKÜMÜŞ Serkan,küçükefe şahset Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. (2020): 81 - 99. 10.19111/bulletinofmre.543419
MLA Şen Pınar,Sarı Ramazan,Sen Erdal,Dönmez Cahit,ÖZKÜMÜŞ Serkan,küçükefe şahset Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. , 2020, ss.81 - 99. 10.19111/bulletinofmre.543419
AMA Şen P,Sarı R,Sen E,Dönmez C,ÖZKÜMÜŞ S,küçükefe ş Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. . 2020; 81 - 99. 10.19111/bulletinofmre.543419
Vancouver Şen P,Sarı R,Sen E,Dönmez C,ÖZKÜMÜŞ S,küçükefe ş Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. . 2020; 81 - 99. 10.19111/bulletinofmre.543419
IEEE Şen P,Sarı R,Sen E,Dönmez C,ÖZKÜMÜŞ S,küçükefe ş "Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey." , ss.81 - 99, 2020. 10.19111/bulletinofmre.543419
ISNAD Şen, Pınar vd. "Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey". (2020), 81-99. https://doi.org/10.19111/bulletinofmre.543419
APA Şen P, Sarı R, Sen E, Dönmez C, ÖZKÜMÜŞ S, küçükefe ş (2020). Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. Bulletin of the mineral research and exploration, 0(161), 81 - 99. 10.19111/bulletinofmre.543419
Chicago Şen Pınar,Sarı Ramazan,Sen Erdal,Dönmez Cahit,ÖZKÜMÜŞ Serkan,küçükefe şahset Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. Bulletin of the mineral research and exploration 0, no.161 (2020): 81 - 99. 10.19111/bulletinofmre.543419
MLA Şen Pınar,Sarı Ramazan,Sen Erdal,Dönmez Cahit,ÖZKÜMÜŞ Serkan,küçükefe şahset Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. Bulletin of the mineral research and exploration, vol.0, no.161, 2020, ss.81 - 99. 10.19111/bulletinofmre.543419
AMA Şen P,Sarı R,Sen E,Dönmez C,ÖZKÜMÜŞ S,küçükefe ş Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. Bulletin of the mineral research and exploration. 2020; 0(161): 81 - 99. 10.19111/bulletinofmre.543419
Vancouver Şen P,Sarı R,Sen E,Dönmez C,ÖZKÜMÜŞ S,küçükefe ş Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey. Bulletin of the mineral research and exploration. 2020; 0(161): 81 - 99. 10.19111/bulletinofmre.543419
IEEE Şen P,Sarı R,Sen E,Dönmez C,ÖZKÜMÜŞ S,küçükefe ş "Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey." Bulletin of the mineral research and exploration, 0, ss.81 - 99, 2020. 10.19111/bulletinofmre.543419
ISNAD Şen, Pınar vd. "Geochemical features and petrogenesis of Gökçeada volcanism, Çanakkale, NW Turkey". Bulletin of the mineral research and exploration 161 (2020), 81-99. https://doi.org/10.19111/bulletinofmre.543419