Türkiye Jeoloji Bülteni
Türkiye Jeoloji Bülteni

Türkiye Jeoloji Bülteni

1980 AĞUSTOS Cilt 23 Sayı 2
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CONTENTS
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The Structural Behavior of Taurus Between Hellenides and Zagrids
Luc-Emmanuel Ricou
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Abstract: The soulheastren part of Turkey is easily correlated with the Zagros and shows form South to North: the ArabianPlatform, the ophiolitic and radiolaritic nappes emplaced during the Meastrichtian, the Bitlis-Pütürge metamorphic belt emplacedduring the Mio-Pliocene. Correlatione are given in terms of structural units and paleogeographic zones.North oî the Bitlis-Pütürge massives appears the typical Tauric organisatino, 1. e. an east-west belt of limestone outcropsextending from the Aegean Sea to the Munzur dağ, the Taurus Calcareous Axis, surrounded by radiolaritic series, ophiolites andmetamorphic massives. A stratigraphic and structural analysis shows that these limestone outcrops are tectonec windows beloningto the Arabian platform and covered by radiolaritic, aphiolitic and metamorphic nappes.Consequently a paleogeographic recontruction is given for the mesozoic times in wich the Apullian, Ionian and Gavore zones inGreece, the Taurus limestone Axis and the Arabian platform all belong to the same arabo-african platform over wich te formations coming from the Tethys will be overthrusted from North to South in three mainsstages: meastrichtian, eo-oligosene andmio-pliocene.

  • radiolarit

  • ophiolit

  • paleogeographic

  • Taurus

  • Akkuş, M, 1971, Geologicand stratigraphic investigation of the Daren- de—Balaban basin (Malatya, ESE Turkey), M.T.A. Derg., 76, 1-54

  • Altınlı E., 1966, Geology of Eastren arid Southern Anatolia: M.T.A. Derg. no: 66, 35-76

  • Argyriadis, I.,1974a,Le Paleozoique superieur du massif d’AIanya (Turquie meridionale). Description, correlations et position structural: Bull. Soc. Geol France, 7 XVI no 2, 112-115.

  • Argyriadis, I., 1974 b, Mesogee perminne, chaine hercynienne et cassure tethysienne: Bull. Soc. Geol. France, 7, XVII, 56-67

  • Aykulu, A., and Evans, A.M., 1974, Structures in the Iranides of sout¬heastern Turkey: Geol. Rundschau, 63, 1, 292-304.

  • Belov, A. A., 1973, Paleozoic tectonics of the western and central Taurus (Turkey): Geotectonics no 1, 31-38.

  • Bergougnan, H., 1975, Relations entre les edifices taurique et pontique dans le Nord-Est de I `Anatolie: Bull. Soc. Geol. France (7) XVn, 1045-1057.

  • Biju-Duval B., Courrier, P. et` Letouzey J., 1974, Interpretation de la structure de Misis et son extension en Mediterrannee orientate: 2o Reunion Annuelle des Sciences de la Tere, Nancy 1974, s.48

  • Bizon, G., Bizon, J. J. et Ricou, L. E., 1972, Etude stratigraphique et paleageographique des formations. Tertiaires de La region de Neyriz (Farsinterne, Zagros İrinien): Rev. Inst. Fr. Petrole, XXVn, no 3, 369-405.

  • Blumenthal, M., 1951, Recherches geologiques dans le Taurus occidental dans I1 arriere pays d` Alanya: M.T.A. yayını seri A, no 5, 134s.

  • Blumenthal, M., 1952, Das Taurische Hochgebirge des Aladağ: Ver offen. Inst. lagerst. Turkei, sen. D, no 6.

  • Blumenthal, M., 1960-1963, Le systeme structural du Taurus sud- anatolien: In Livre alia Memoire du profisseur P. Fallot, t. II, 611-662. Mem. h. s. soc. Geol. France, Paris.

  • Brand, J. 1970, .Les formations du Zagros dans la ` region de Kermanshah (Iran) et leurs rapports structuraux: C.R. Acad Sc. Paris, 271, 1241-1244.

  • Braud, J. ve Ricou L. E., 1971, L`accident du Zagros ou Main Thrust, un charriage et un coulissment: C.R. Acad. Sc. Paris t. 272, 203-206.

  • Braud, J. ve Ricou, L. E., 1975, elements de contiuite entre le Zagros et la Turquie de Sud—Est: Bull. soc. Geol. France, (7) XVII, no 6,1015-1023.

  • Brunn, J. H., Graciansky, P.c., Gutnic, M., jutean, T., Lefeure, R, Mar¬coux, `ö., Monod, O. et Poisson, A. (1970), Structures majeures et correlations stratigraphiques dans les Taurides occidentales: Bull. Soc. geol. France, (7) XII, 515,556.

  • Brunn, J. H., Dumont, J. F., Graciansky P.C. deGGutnic, M., Juteau, T- Marcoux, J., Monod, et Poisson, A., 1971, Outline of the Geolgy of The Westren Taurids. In: Geology and History of Turkey, A.S. Campbell ed. P.E.S.L. Tripoli, 225-255.

  • Brunn, J. H., Argyriadis, I, Ricou, L.E, Poisson, A., Marcoux, J. et Graciansky, Pc, 1976, Elements majeurs de liaison` entre Tauri¬des et hellenides. Bull. `Soc. Geol. France, (7), XVII, no 2, 481-497.

  • Colin, H: J., 1962, Geologische Untersuchungen im Raume Fethiye— Antalya Kaş-Finike (Sw Anatolien): M.T.A., Derg. no 59, 19.

  • Dean, W. T. ve Monod O., 1970, Lower Paliozoic stratigraphy arı faunas of the Taurus mountains near Beyşehir, Turkey: Bull, British Museum, Geology., 19, 411-426.

  • Dewey, J. F., Pitmann, W.C., Ryan, B.F. ve Bonmn, J., 1975, Plate tec¬tonics and the evolution or the alpine system: Geol Soc. Amer. Bull. 84, 3137-3180.

  • Dubertret, L., 1955, Geolegie des roches vertes du Nord-Ouest de la Syrie et du Hatayj Notes et Meories Moyen Orient, t. 6, 3-179.

  • Dumont, J.F., Gutnie, M., Marcoux, J., Monod, c, Poisson, A., `1972, Le Trias des Taurides occidentales (Turquie). Definition du bassin pamphylien: un nouveau domaine a ophiolites a marge externe de la chaine Taurique: Z. Dtsch. ■ Geol. Ges. 123, 385¬409.

  • Flügeı, H., 1964, Die Entwicklung des vorderasiatischen Palaozoicums: Geotekt. Forsch., 18, 1—68.

  • Fourquin, C, 1975, L`Anatolie .du Nord-Ouest, marge meridionale du continent Europeen, histoire paleogeographique, tectonique et magmatique durant le Secondaire et le Tertiaire: Bull. Soc. Geol. France, XVII, 1058-1070.

  • Frech, F., 1916, Geologie Kleinasiens im Bereich Des Bağdat Bahn: Z. Dstch. Geol. Ges., 68, 1-325.

  • A.C.M., Hugnes Clarke, W.M., Stuart- Hoody, M., Pilaar H.F.W., and Reinhard, MJB., 1973, late Cretaceous nappes in Oman and Their geologic evolution. Amer. Ass. Petr.Geol.Voi# 57, no 1: s. 5-27.

  • Graciansky, P. Ch. de, 1972, Recherches geologiques dans le Taurus Iycien: These, Üniversite Paris XI Orsay,` Ser. A, 896.

  • Griffits, W.R., Albers, J.P. ve Oner, O., 1972, Massive sulfide Copper Deposite of the Ergani—Maden area, Southeastren Turkey. Econ. Geol. vol. 67. no 6, s. 701-716.

  • Gutnic, M., Kelter D. ve Monod O., 1968, Decoverte de nappes de charriage dans le Nord du Taurus Occidental (Turquie meridiona¬le): Ç.R. Acad. Sc. Paris, D. 266,988-991.

  • Gutnic, M. ve Monod O., 1970, Une serie mesozoique condendee dans les nappes du Taurus Occidental: la serie de Boyalı Tepe: C.R. Somm.Soc.Geol. France, 5, 166-167.

  • Hail, R. ve Mason, R., 1972, A tectonic melange from the Eastern Taurus Mountanis: Geol. Soc. London, 128, 395-397.

  • Juteau T., 1974, Les ophiolites des nappes d` Antalya (Taurides occiden¬tals, Turquie): These, Üniversite Nancy I, Sciences de la Terre, 32,692 s

  • Kunding, 1956, The position in time and space of the ophiolites with relation to orogenic metamorphism: Geol. Min. jb., 18 106— 114.

  • Kurtman, F., 1967, Geologie des Munzur Dağ Gebiiges: Geol. Ruhdsch., 56, 791-794.

  • Lahner, L., 1972, Geologische l&iterschungen an der Ostflanke des mittleren Amonos (SETurkei): Geotekt. Forsch., 42,

  • Lapierre, H., 1970-1975, les formations sedimentaires et eruptives des nappes de Mammonia et leurs relations avec le massif du Troodos (Chypre): These Üniversite Nancy I. Mem. Soc. Geol. France, no 123-132 s.

  • Lapierre, H. ve Parrot, J. F., 1972, Identite Geologique des Regions de Paphos (Chypre) et du Baer-Bassit (Syrie): C.R. Acad. Sc. Paris, 274, 1999-2002.

  • Lefevre, R., 1967, Un nouvele element de la geologie du Taurus Lycien; les nappes d`Antalya (Turquie): C.R. Acad. Sc. Paris, 265, 1365.

  • Marcoux, J. ve Poisson, A., 1972, Une Nouvelle unite structural mq`eure dans les nappes d`Antalya: la nappe inferieure et ses series radiolaritiques mesozoiques (Taurides occidentales, Turquie): C.R. Acad. Sc. Paris, 275, 655-658.

  • Metz. K., 1956, Ein Beitrag zur Kenntnis des Gebirgsbaues von Aladağ Und Karanfil Dai und ihres Westrandes (Kilikischer Taurus): M.TA. Bull. 48,68-78.

  • Monod, O., 1967, Presence d`une faune Ordovicienne dans les schistes de Seydişehir ala base des calcaires du Taurus occidental. Bull. M.TA 69, s. 79-89.

  • Monod, O., 1974, Le domiino d` Antalya, Temoin de la Fracturation de la plate—forme airicane au cours du Trias: Bull. Soc. Geol. France, (7) XVI, 2,116-127.

  • Monod, O., 1977, Rechrerches geologiques le Taurus occidentel au Sud de Beyşehir (Turquie):These, Üniversite Paris XI Orsay

  • Nebert, K, 1959. Daten zur Geologie des Munzur a gebietes: M.TA Bull. 52, s. 34-44.

  • Özgül, N., 1976, Toroslar`ın bazı temel jeoloji özellikleri: Türkiye jeoloji Kurumu Bült., 19/1,65-78.

  • Özgül, N.,Metin, S. And Dean W.T., 1972, Lower Paleozoic stratigraphy ans faunas of the Eastren Taurus mountains in the Tufanbeyli region, southern Turkey: M.T.A. Bull., 79, 9-16.

  • özgül, N. ad Aipat E., 1973, Structural units of the Taurus orogenic belt and their continualion in neighbouring regions: 23° Con- gresCiens, Athenes. Bull. Soc. geol. Grece, t. x, 1, 156-164.

  • özgül, N., Metin, s., Göğer, E., Bingöl, 1., Baydar, O.Ş ve Erdoğan, B., 1973, Tufanbeyü dolayının Kambryien - Tersiyen kayaları: Türkiye. Jeol. Kur. Bul., 1, 82-100.

  • Parrot, J.F., 1974, Le Secteur de Tamina (Tourmanli): etude DD d`une sequence volcano—sedimantaire de la region ophiolitique de Baer-Bassit (Nordouest de la Syrie): Ch. Orstom, Geol. VI (2), 127-146.

  • Parrot, J.F., 1974, L`assemblage ophiolitique du Bear-Bassit (nord¬ouest de la Syrie); etude Petrographique et geochipique du complexe filonien, Des formations efusives du volcano—sedi¬mantaire. Cah. Orstom, ser, Geol. VI (2) s. 97-126.

  • Radelli, L., 1971, Sur la tectonique de la chaine anatolienne de Bitlis n Tectonque de rAfiique, Unes Sciences dela Terre, 6, 131-139

  • Ricou, L.E., 1968, Une coupe atravera les series a radiolarites des monts Pichakun (Zagros, Iran): Bull. soc. Geol. Fr. (7) XX, 478-485.

  • Ricou, L.E., 1971, Le Croissant Ophiolitique peri-Arabe. Une ceinture de nappes mises en place au Cretace superieur: Rev. Geol. Dyn. XIII, 327-350.

  • Ricou, L.E., 1973, Relations entre stades paleographiques et phases tectoniques sur Fexample des Zagrides: Bull. Soc. Geol. FR, (7) XV, 612-623.

  • Ricou, L.E., 1974, Evolution structurale des Zagrides, La region—clef de Neyriz (Zagros Iranien): These Univ. Orsay. Mem Soc. Geol. France N.S.LV, 125, 140.

  • Ricou , L.E., 1975, L` enracinement des ofhiolites et radiolarites du Croissant Ophiolitique peri—araba. Correlations avec les ta¬urides et les Hellenides, Premier Symposium de Geodynamique de LAsie du Sud—Ouest, Theran, Service Gelogique de I1 Iran.

  • Ricou, L.E., Argyriadis, I. et Lefevre, R. 1974, Proposition d`une origine interne pour les nappes d`Antalya et le massif d`Alanya (Taurides Occidentales: Bull. Soc. Geol. Fnance, (7) XVI, 107-111.

  • Ricou, L.E., Argyriadis, L. et Marcoux, Ö., 1975 LAxe Calcaire du Taurus, un aliğnement de fenetres arabo—afticaines sous les nappes a materiel radiolaritique, ophiolitique: Bull Soc. Geol. France, (7) XVII, 1024-1044.

  • Rigo de Righi, M., and Cortesini A., 1964, Gravity tectonics in foothills structure belt of Suoth—East Turkey: Amer. Ass. Petr. Geol., 48/12, 1011-1937.

  • Schmidt, G.C., 1964, A review of Permian and Mesozoic formations exposed near the Turkey—Iraq border at Harbol:M.T.A. Dergisi, 62,103-119

  • Tolun, N., 1951, Etude geologique du bassin nord-est de Diyarbakır: M.TA. dergisi, 41, 65-98.

  • Turner, W.M., 1968, A progress report on the geology of western Cyprus, including the Akamas peninsula: Univ. of Nev Mexico, Abuquir- que.

  • Whitechurch, H., Parrot, J.F., 1974, Les ecailles metamorphiques infraeri- dotitiques du Baer—Bassit (Nord-Ouest de la Syrie): Cah. Orstom, ser. Geol.VI, (2), 173-184.

  • Wolfart, R., 1967, Zur Entficklung der Palazooschen Tethys in Vordera- sien: Erdöl und Kohle, 20/3, 168-180.

  • Geology and Mineralogy of Western Anatolian Lead-Zinc Deposits and Some Comments About Their Genesis
    Ahmet Çağatay
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    Abstract: Tpo types of lead-zinc deposits were studied in western Anatolia. Tha first is the strata-bound type deposits (IzmirBay mdir-Sariyurt) and the second is the hydrothermal-contact metasomatic type deposits that are related to the granitoid intrusions in the Biga Peninsula.All the deposits studied occur in similar metamorphic schists, except for the Yenice-Arapuç an hydro thermal-matasonaticdeposit that is found in sandstones and the Balya deposit that is in dacites at the contact with limestones.Galena and sphalerite are the main ore minerals in both types of the lead-zinc deposits. Chalcopyrite, pyrite, pyrrhotite,hematite, magnetite, ilmenite and rutile may also be present in minor quantities. In addition, minor- trace quantities of tetrahedrite-tennantite, antimonite, arsenopyrite, bournonite, boulangerite, jamesonite, heyrovskyite, bismuthinite, native bismuth,orpiment and realgar were found in the Balya deposit; and jamesonite, mareasite and arsenopyrite in the Torbalı-Taşkesik deposit.The geological and mineralogical studies suggest that the hydro termal-contact metasomatic lead-zinc deposits of the BigaPaninsula were formed as a result of the remobilization of the strata-bound type deposits by the granitoid intrusions in this region.In conclusion, the lead-zinc deposits of the Biga Peninsula can be attributed to the polygene tic class of ore deposits.

  • Lead-Zinc Deposits

  • contact hydrothermal

  • Galena

  • hematite

  • Western Anatolia

  • Akyol, Z., 1979, Balya kurşun-çinko maden yatağı: Jeoloji Mi ., 7, 47-59.

  • Alkan, V., 1974, İzmir-Bayındır-Sarıyurt işaretiyle gelen numunelerin petrografik—mineralojik tetkik ve tayini: M.T.A. Balıkesir Bölge Lab. Arş., Rapor No. Ba: 120 yayınlanmamış.

  • Çağatay, A., ve Eyyüboğlu, T., 1979, Batı Anadolu`daki bazı antimonit, aresnopirit, zinober, şeelit yatak ve zuhurlarınınjeoloji—mineralojik incelenmesi ve elde edilen jenetik bulgular: Jeoloji Müh., 9,51-62.

  • Çağatay, A., ve Aydın, E., 1979, Balıkesir-Balya madende izlenen bir Pb—Bi maden minerali heyrovskyit üzerinde çalışma: Yerbilimleri, yayında.

  • Dileköz, E., ve Çağatay, A., 1973, İzmir-Bayındır-Sarıyurt işaretiyle gelen numunelerin mineralojik tetkik neticesi: M.T.A. Lab. Dairesi Arş., Rapor No. 201/77211, yayınlanmamış.

  • Gjelsvik, T., 1957, Türkiye`nin batısında Biga yarımadasında Alpin volkanizmaya bağlı maden yatakları üzerine aramalar: M.T.A. Derleme Rapor No. 2480, yayınlanmamış.

  • Göktepeli, A., Gönül, G., ve Açıkgöz, H., 1975, Balıkesir-Dursunbey Kurşun—Çinko—Bakır yatağı ara rezerv raporu: M.T.A. Derleme Rapor No. 5392, yayınlanmamış.

  • Höll, R., 1966, Genese und Altersstellung von Vorkommen der S.-W-Hg formation in der Türkei und auf Chios, Griechenland: Bayer. Akad. Wiss. Math. Naturwiss., 127.

  • Kaaden, G. v.d., 1957, Çanakkale-Biga-Edremit yarımadası bölgesindeki jeolojik etüd saha çalışmaları: M.T.A. Derleme Rapor No. 2661, yayınlanmamış.

  • Kızılkaya, H., 1965, Kazdağ masifi ve civarında yapılan kurşun—çinko— bakır—pirit prospeksiyonu hakkında: M.T.A. Derleme Rapor No. 3755, yayınlanmamış.

  • Kovenko, V., 1940, Balya kurşun madenleri: M.T.A. Dergisi, 4/21, 580-587.

  • Maucher, A., 1965, Die Antimon-Wolfram-Ouecksilber Formation und ihre Beziehungen zu Magmatismus und Geotektonik: Freiberger Forschungshefte, 186, 173-188.

  • Meer Mohr, H. v.d., 1959, Balya mıntıkasındaki kurşun zuhurlarının prospeksiyonu hakkında toplu rapor: M.T.A. Derleme Rapor No. 2703, yayınlanmamış.

  • Özcan, H., 1976, İzmir-Bayındır-Ilıcadere Zn-Pb madeni raporu: M.T.A. Derleme Rapor No. 5756, yayınlanmamış.

  • Özocak, R., 1970, Balıkesir ili, Dursunbey ilçesi güneyi (Alaçam dağı) maden prospeksiyonu ve Anadolu kurşun madeni jeolojik etüdü: M.T.A. Derleme Rapor No. 4888, yayınlanmamış.

  • Ramdohr, P., 1975, Die Erzmineralien und ihre Verwachsungen: Akademic-Verlag, Berlin, 1089 s.

  • Takashima, K., 1974, Dursunbey-Balıkesir kurşun-çinko yataklarının jeolojisi: M.T.A. Derleme Rapor No. 5388, yayınlanmamış.

  • Yücelay, A., 1970, Çanakkale ili, Yenice ilçesi, Kurttaşı köyü kurşun— çinko—bakır zuhuru etüdü: M.T.A. Derleme Rapor No. 4578, yayınlanmamış.

  • Sedimentary Environments and Lignite Occurences in The Units of Oligocene Age in The Vicinity of Keşan (Edirne) and Marmara Ereğlisi (Tekirdağ).
    Muzaffer Şenol
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    Abtract: The Oligocene-aged sediments of the investigated areas were deposited in fluvial and deltaic environments. This canbe stated on the basis of the lithofacies, sedimentary structures, fossil content and geometry of the sedimentary bodies involved;also on their relation in vertical sequences and comparison with the studies made in modern environments.Furthermore in the fluvial environments we distinguished both braided and meandering channel deposits and flood-plaindeposits.In the deltaic deposits we have seen deltasand interdeltaic sediments such as lagoon.Lignites are found in the Keşan-area in the marshes of deltaic plains and lagoons. In Marmara Ereğlisi they are enconunteredin the flood-plains meandering rivers.

  • lignite

  • fossil

  • lagoon

  • deltasand

  • Oligocene

  • Coleman, J. M., 1969, Brahmapudra River: Channel processess and sedimentation. Sediment. Geol. 3, 129-239

  • Deoglas, D. T., 1962, The structure of the sedimentary deposits of braided rivers. Sedimentology., 1, 167—190

  • Donaldson, A. C, Martin, R. H., Kanes, W. H., 1970, Holocene Buadalupe delta of Texas gulf coast. In: Morgan, J. P., ed., Deltaic sedimentation, modern and ancient. Soc. Econ. Paleontologists Mineralogists Spec. Publ. 15, 107-137

  • Erkılıç, M., 1977, Trakya uranyum aramaları ön raporu. M.T.A. Uranyum servisi rap. no. 488, Ankara

  • Gökçen, S. L., 1971, Keşan bölgesi türbiditlerinde siklik sedimantasyon. Hacettepe fen ve müh. bil. der. 1, 50—65, Ankara

  • Gökçen, S. L.,1972, Keşan bölgesi kumtaşlarının yapısal dokusal özellikleri ve bölgenin sedimenter fasiyesleri. Hacettepe fen ve müh. bil. der. 2, 1, 50-65, Ankara

  • Kara, H., Tuncalı, E., 1978, Köprüce Çiftlik ile sultanköy arasının jeolojisi. M.T.A. (Yayınlanmamış), Ankara

  • Koop, K., Pavoni, N., Schmdler, C, 1969, Geologie Thrakiens IV: Das Ergene-Becken. Beih. z. Geol. Jahrb., Helt 76, 136s., Hannover

  • Lebküchner, F. R., 1974,-Orta Trakya Oligosen`inin jeolojisi hk. M.T.A. der. 83, 1-30, Ankara

  • McGowen, J.H., Garner, L.E., 1970, Physiographic features and stratification types of coarse—grained point bars: Modern and ancient examples: Sedimentology 14,77—111

  • Reineck, H-E., 1970b, Marine Sandkörper, rezent und fossil. Geol. Rundschau 60, 302-321

  • Scruton, P.C., 1960, Delta building and deltaic sequence, in: Shepard, F. P., Phleger, F.B., Andel, T.H. Van

  • Singh, I.B., 1972, On the bedding in the natural—levee and the point—bar deposits of the Gomti River, Uttar Pradesh, India. Sediment. Geol. 7,309-317

  • Ternek, Z., 1949, Geological study of the region Keşan Karadağ. Istanbul

  • Wentworth, C.K., 1922, A. scale of grade and class terms for clastic sediments. J. Geol. 30, 377-92.

  • Williams, P.F., Rust, B.R., 1969f , The sedimentology of a braided river. J. Sediment. Petrol. 39, 649-679.

  • The Geology of The Fylsch Assemblages in Southern Bornova (İzmir)
    Fuzuli Yağmurlu
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    Abstract: To the south of Bornova, on the bases of stratigraphic and depositional characteristics, three different flysch units arerecognized. These are, in ascending order, (1) the Arapdere litharenite-shale unit, which is Late Cretaceus in age and underlies theKurudağ limestone unit, (2) the Izmirlik shale-litharenite unit which is Late Cretaceus and early Paleocene in age and overlies theKurudağ limestone unit, (3) Beşiktaş litharenite-shale unit which is middle Paleocene in age and rests unconformably on the olderunits.Paleocurrent data from the Paleocene and Cretaceus flysch units, indicate that the main current directions were from south.Vertically drapped N-S trending older faults, are cut by E-W trending younger faults. The study area is divided in a mozaicblock pattern by two main fault systems. The folds have NNE trending axes. The overturned folds to the south recognized bydepositional features are trending in ENE-WSW direction. 

  • flysch

  • litharenite-shale

  • limestone

  • İzmir

  • Akartuna, M., 1962, İzmir-Torbah-Seferihisar-Urla bölgesinin jeolojik etüdü: İ.Ü. Fen Fak. Mon., 18

  • Brinkmann, R., 1966, Geotektonische Gliederung von West-anatolien. N.Jb.Geol.Mh., 603-618

  • Brinkmann, R., 1972, Mesozoic troughs and crustal structure in Westanatolien: Geol. Soc. America Bull., 83, 819-826

  • Dzulynski, S. ve Walton, E.K., 1965, Sedimentary features of flysch and greywackes: Development in Sedimentology, 7, 274, Elsevier Pub. Amsterdam.

  • Folk, R.L., 1962, Spectral subdivision of limestone types. In: W.E. Ham (ed), Classification of carbonate rocks: Amer. Assoc. Petrol. Geo. Mem., 1, 62-84

  • Folk, R.L., 1968, Petrology of sedimentary rocks: Hemphill`s, Austin, 170

  • Hamilton, WJ. ve Strickland, H.E., 1840, On the geology of the Western part of Asia Minor: Trans. Geol. Soc, London, tb., 1—39

  • Kaya, O., 1972, Tavşanlı yöresi ofiyolit sorununun ana çizgileri: Türkiye Jeol. Kur. Bült., XV-I, 26-108

  • Konuk, T., 1977, Bornova filisinin yaşı hakkında: Ege Üniv. Fen Fak. Dergisi Seri-B, 1-1, 65-74

  • Norman, T., 1973, Ankara Yahşıhan bölgesinde Üst Kretase-Alt Tersiyer sedimentasyonu: Türkiye Jeol. Kur. Bült. XVI—1, 41—67

  • Oğuz, M., 1966, Manisa Dağı`nın kuzey ve kuzeybatısının jeolojisi: Ege Üniv. Fen Fak. İlmi rap. serisi, 33

  • Parejas, E., 1942, Tektoniquie de la Turquie: İ.Ü. Fen Fak. Mon. 3/4

  • Phillipson, A., 1911, Reisen und Forschungen im westlichen Kleinasien: Pet. Mitt. Erg. H., 172

  • Verdier, J., 1963, Kemalpaşa Dağı etüdü: M.T.A. Dergisi, 61, 38-40

  • Geology of Attepe-Mansurlu Iron Mine
    İsmail Henden Erhan Önder
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    Abstract: In Attepe, the ore is found within the Cambrien Limestones. Structural control has played an important role in theemplacement of the ore body. The ore has replaced the limestone in a faulted syncline.Primary ore mineral is siderite with lesser amount of hematite. Siderite has almost totaly altered to geothite and limonite,except in few places. Due to this alteration, grade of the ore has increased and impurities have been washed out.The ore minerals, transported in hydrothermal fluids, replaced the limestone. Locally the ore minerals filled the fault zones.The source of the ore bearing fluids is thought to be a deep seated intrusion, which is expressed as a domal structure on the surface.The ore bearing fluids reached the surface by NNE-SSW trending faults.During the exploration activities, 4900 m diamond drill holes have been made, and reserves are estimated as 34 million tonsof iron with a grade 58.44 % Fe, 2.94 % SiO2 and 0.55 % Al2O3.

  • Iron

  • siderite

  • limonite

  • Attepe

  • Arıkan, Y., 1968, Mansurlu Demir Zuhurları (Feke-Yahyalı: AdanaKayseri): M.T.A. Maden Etüd Arşivi Rap. No. 410 (Yayınlanmamış)

  • Blumenthal, M.M., 1941, Niğde ve Adana Vilayetleri Dahilindeki Torosların Jeolojisine Umumi bir Bakış: M.T.A. Seri B No. 6, 48 s.

  • Deer, W.A., Howie, R.A., ve Zussman, J., 1970, An Introduction to the Rock Forming Minerals: Longmans, London, 528 s.

  • McKinstry, H.E., 1948, Mining Geology: Prentice Hall, Englewood Guffs, N.J., 680 s.

  • Sendier, J., 1962, Mise en valuer des Gisements metalliferes: Paris, 146 s.

  • Shepparrd., S.M.F., 1976, Identification of the origin of ore forming solutions by the use of stable isotopes; Volcanic processts in Ore Genesis, Proceedings of a joint meeting of the Volcanic Studies Group of the Geological Society of London and the Instition of Mining and Metallurgy: London, 25—41.

  • Özgül, N., 1976, Toroslarin Bazı Temel Jeoloji Özellikleri: Türkiye Jeol Kur. Bült. 19/1; 65-78.

  • Nannoplankton Biostratigraphy of The Haymana Region (SW Ankara)
    Hatice Vedia Toker
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    Abstract: The formations of Campanian-Lutetian age are exposed in the region of Haymana, SW of Ankara. These formationsof about 5000 m thickness are represented lithologically by conglomerates, sandstones, shales, marls and a veriety of limestones.The formations named by Yüksel (1970) as Haymana, Kavak, Çaldağ, Kadıköy, Gedik, Karahoca and Çayraz were sampled, and107 Nannoplankton species have been distinguished in the samples collected. By means of these Nannoplankton forms that thefollowing biozones have been defined in the area studied: Tetralithus gothicus, Tetralithus trifidus, Arkhangelskiella cymbiformis,Lithraphidites quadratus, Cruciplaculithus tenuis, Chiasmolithus danicus, Ellipsolithus macellus, Fasciculithus tympaniformis,Heliolithus kleinpelli, Discoaster gemmeus, Discoaster multiradiatus, Marthasterites contortus, Discoaster binodosus, Marthasteritestribrachiatus, Discoaster lodoensis, Discoaster sublodoensis. These zones of the research area were correlated with the other regions,and their compatiblity with the planktonic Foraminifera zones described there were proved. Moreover, an environmental interpretation based on the Nannoplankton species is also provided here. 

  • Nannoplankton

  • conglomerate

  • Foraminifera

  • Haymana

  • Akarsu, İ., 1971, Polatlı-Haymana civarının detay petrol jeooljisi: T.P.A.O. raporu No: 2502, Ankara (yayınlanmamış)

  • Bramlette, M.N., Sullivan, F.R., 1961, Coccolithophorids and related Nannoplankton of the eraly Tertiary in California: Micropaleon· tology, 7, 129-188.

  • Bramlette, M.N., Wilcoxon, J.A., 1867, Middle Tertiary Calcareous Nannoplankton of the Cipero Section, Trinidad, W.l.: Tulane Studies in Geology 5, 93-131.

  • Bukry, D., 1969, Coccolith stratigraphy leg 6. Deep Sea Drilling project, 6, 965-1045.

  • Bukry, D., 1974, Coccolitlı stratigraphy leg 17: Deep Sea Drilling Projeci J 7, 1048-1069.

  • Ccpck, P., Hay, W.W., 1969, Zonation of the Upper Cretaceous using Calcareous Nannoplankton: XXXII Intern. Geol. Congr. Proc. Paleobot. Sect. 334-339.

  • Decima, F.P., Roıh, P.H., Todesco, L., 1975, Nannoplankton Calcareo del Paleocene e deli `Eocene della Sezione di Possagno: Schweiz. Palaont. Abh. 97, 35-55.

  • Dizer, A., 1968, Etude micropaleontologique du Nummulitique de Haymana (Turquie): Rev. Micropal., 11, 13-21.

  • El-Dawoody, A.S., Barakat, M.G., 1973, Nannobiostratigraphy of the Upper Paleosene Lower Eosene duwi range, Ouseir District, Egypt: Eighth Arab Petroleum Congress.

  • Erk, A.S., 1957, Ankara civarının petrol ihtimalleri: M.T.A. rapor no: 2608, Ankara (yayınlanmamış).

  • Gartner, S.Jr., Bukry, D., 1969, Tertiary Holococcoliths: Journ. Pal. 43, 1213-1221.

  • Gökçen, S.L., I 976, Haymana Güneyinin Sedimantolojik İncelenmesi (SW Ankara): Doc. tezi, H.Ü. Yerbilimleri Enstitüsü, Ankara, (yayınlanmamış).

  • Gökçen, S.L., 1977, Haymana (GB Ankara) güneyindeki tortul istifin sedimanter petrolojik incelenmesi: M.T.A. dergisi, 89, 118-141.

  • Hay, W.W., Mohler, H.P., 1967, Calcareous Nannoplankton from early Tertiary rocks at Pont Labau, France and Paleocene-Early Eocene correlations:Journ. Pal., 41, 1505-1541.

  • Hillebrandt, A. von., 1975, Correlation entre !es biozones de grands Foraminiferes et de Foraminiferes planctoniques de I `Ilerdien: Bull. Socie. Geol. France, 7o, Tome XVII.

  • Kapellos, C., 1973, Biostratigraphie des Gurnigelfiysches mit besonderer Berücksichtigung der Nummuliten und des Nannoplanktons, unter Einbeziehung des Palaogenen Nannoplanktons der Kırım: Suisses Paleonı., 96, 1-129.

  • Manivit, H., 19 71, Les Nannofossiles calcaires du Cretace Francais: Centre Nat. Recher. Sci., 1-261.

  • Martini, E., 1970, Les Nannofni, E., 1970, Standart Tertiary and Quaternary calcareus Nannoplankıon zonation.: Proceeding 11. Plankıonic conf. Roma. 739-803.

  • Martini, E., 1976, Cretaceous to Recent Calcareous Nannoplankton from the Central Pacific Ôcean (D.S.D.P. leg 33): Deep Sea Drilling Projeci 33, 383-423.

  • Meriç, E., 1967, Sur quelques Loftusia: Rev. Rac. de Scie. Univ. d `Istanbul, Serie B, 32, 1-58.

  • Perch-Nielsen, K., 1969, Die Coccolithen einiger Danischer Maastrichtien und Danien Localitaten: Dansk. Geol. Foren 19, 51-68.

  • Perc-Nielsen, K., 1972, Neue Coccolithen aus dem Paleozan von Denemark, der Bucht von Biskaya und dem Eosan der Labrador See: Bull. Geol. Society Denemark, 21, 1-75.

  • Righi, M., Cortesini, A., 1960, Regional studies Central Anatolia Basin. Progress Repon 1. Stratigraphy (Turkish Gulf Oil Co.). T.C. Petrol Dairesi Arşivi. 11. Ankara (Yayınlanmamış).

  • Risatti, J .B., 197 3, Nannoplankton biostratigraphy of the Upper Bluffport marl-Lower Prairie Bluff Chalk interval in Missisippi. Proc· ced. Symp. Calc. Nannofos. Gulf Coast section: Soc. Econ. Paleont. Minerol. 8-34.

  • Roth, P.H., 1973, Calcareous Nannofossils-leg 17, D.S.D.P.: Deep Sea Drilling Projeci 17, 695-707.

  • Schmidı, G.C., 1960, Geological evoluation of the licences 360-363 and 365-367, District 11: T.C. Petrol Dairesi Arşivi, Ankara (yayınlanmamış).

  • Sirel, E., 1975, Polatlı (GB Ankara) Güneyinin Stratigrafisi: Türkiye Jeol. Kur. Bült. 18, 181-192.

  • Stainforth, R.M., Lamb,J.L., Luterbacher, H., 1975, Cenozoic Planktonic Foraminiferal zonation and characteristics of index forms: Univ. Kansas Paleont. Contr. 62, 163-244.

  • Toker, V., 1979, Haymana yöresi (GB Ankara) Üst Kretase Plankto`nik Foraminifera`ları ve biyostratigrafi incelemesi: Türkiye J eol. Kur. Bült. 22, 121-134.

  • Ünalan, G., Yüksek, V., Tekeli, T., Gönenç, O., Seyit, Z., Hüseyin, S., 1976, Haymana-Polatlı yöresinin (güneybatı Ankara) Üst Kretase-Alt Tersi yer Stratigrafisi ve Paleocoğrafik evrimi: Türkiyejeol. Kur. Bült. 19, 159-176.

  • Worsley, H., 19·69, The nature of the terminal Cretaceous event as evindenced by calcareous Nannoplankton extinction in Alabama and other areas: Univ. Publ. PH. D. Thesis Univ. lllinois.

  • Yüksel, S., 1970, Etude Geologique de la Region d`Haymana (Turquie cenırale): These, Fac. Scie. de L`Universite de Nancy, France.

  • Yüksel, S., 1973, Haymana yöresi tortul dizisinin düşey yönde gelişimi ve yanal fasiyes dağılışı: M.T .A. dergisi, 80, 50-53.

  • Ziegler, K., 1936, Haymana kömür havzası hakkında: M.T.A. rapor no. İ20, Ankara (yayınlanmamış).

  • Stratigraphy of The Area Between Ünye-Ordu-Koyulhisar-Reşadiye
    Hasan Çetin İsmail Terlemez Ali Yilmaz
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    Abstract: Strata of various facies of Middle Jurassic-Pliocene age invertal outcrop in the area between Ünye-Ordu-Koyulhisar-Reşadiye. Of these rocks, limestone of Middle-Upper Jurassic-Lower Cretaceous age forms the basement. Tuffite, andesiteflows, agglomerate, limestone and sandstone alternation of Cenomanian-Campanian age covers the limestone with an angularunconformity. That unit is cut by dacite and syenites especially at Gölköy and Ulubey areas. Tuffite-argillaceous limestone alternation at the north, sand, and argillaceous limestone alternation at the south overlie the previous unit. These two sequences ofMaastrichtian age are thought to have a lateral interfingering below the younger units. Paleocene aged tuffite, agglomerate andlimestone with coal seams, argillaceous limestone and sandstone alternation is deposited as a continuation of the units of Maastrichtian age. Limestone and at some places basalt cover these units with an angular unconformity. Then agglomerate and andesiteflows and sandstone with agglomerate beds are deposited. These units are of Eocene age. Various basaltic formations are developedduring Miocene-Pliocene period. These are followed by young alluvium and landslides. 

  • Stratigraphy

  • andesite flows

  • agglomerate

  • sandstone

  • Ordu

  • Ağralı, B., 1967, Ordu ili, Gölköy—Aybastı arasındaki sahada yapılan 1/25.000 ölçekli jeolojik löve ve bölgedeki kömür zuhurlarının incelenmesi hakkında rapor: Maden Tetkik ve Arama Enst., Derleme Rap., no. 4262, yayınlanmamış.

  • Bora, E., Erler, A., ve Ildız, T., 1970, Giresun G39-a2 ve G39-a3 paftalarının jeolojik etüdleri ve maden prospeksiyonu raporu: Maden Tetkik ve Arama Enst., Derleme Rap. no. 4438, yayınlanmamış.

  • Gedikoğlu, A., 1970, Etude geologique de la region de Gölköy: These de 3 e cycle, Fac. Sc. Üniversite de Grenoble, yayınlanmamış.

  • Kalyoncuoğlu, A., Yaşar, M., ve Karabulut, A., 1975, Reşadiye (Tokat) bentonit sahalarında ayrıntılı çalışma raporu: Maden Tetkik ve Arama Enst., Derleme Rap. no. 5395, yayınlanmamış.

  • Kronberg, P., 1969, Doğu Karadeniz dağlarının (Kuzeydoğu Türkiye) tektoniği üzerine fotojeolojik veriler: Maden Tetkik ve Arama Enst. Dergisi, sayı 74, 57—65.

  • Pejatoviç, S. 1971, Doğu Karadeniz—Küçük Kafkasya bölgesindeki metalojenik zonlar ve bunların metalojenik özellikleri: Maden Tetkik ve Arama Ens. Dergisi, sayı. 77, 10—21.

  • Schultze-Westrum, H.H., 1960, Giresun—Aksudere (Doğu Pontos cevher bölgesi) hinterlandında yapılan prospeksiyon ve jeoloji harita çalışmaları hakkında rapor: Maden Tetkik ve Arama Enst., Derleme Rap., no. 3184, yayınlanmamış.

  • Schultze-Westrum, H.H., 1962, Ordu-Piraziz-Çambaşı hinterlandı çevresinde 1961 senesinde yapılan cevher yatakları prospeksiyonu ve jeolojik yeni löveler (1/25.000): Maden Tetkik ve Arama Enst., Derleme Rap., no. 3337, yayınlanmamış.

  • Seymen, I., 1975, Kelkit vadisi kesiminde Kuzey Anadolu Fay zonunun tektonik özelliği: Doktora Tezi, İst. Teknik Univ., 192 s.

  • Wedding, H., 1963, Kelkit hattı jeolojisine ait düşünceler ve Kelkit-Bayburt (Gümüşhane) çevresindeki Jura Stratigrafisi: Maden Tetkik ve Arama Enst. Dergisi, Sayı 61, 31—66.

  • A Lower Carboniferous Sequence Defined by A Distinctive Facies in The Taurus Mountains (Aladağ Region)
    Ahmet Aksay
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    Abstract: Lower Carboniferous sequence of Nohutluk Tepe in the Aladağ region of Taurus Mountains consists of "deep-water" (basinal-lower slope) facies in the lower parts and "shallow-water" (shelf edge) facies in the upper parts.Basinal-lowerslope facies is generally represented by silicified limestones. These rocks have turbiditic origin. They showlamination and fine grading; they contain radiolaria and other planktonic fossils with transported echinoderm fragments. Associatedrocks are shale, radiolaria bearing lime mudstones, limestone with volcanic grains and altered tuffs.Shelf-edge facies is represented by skeletal and oolitic limestones. There are quartzite and quartz sandstone interbeds withlimestones. Previous studies in the Taurus Mountains have indicated the presence of Lower Canboniferous sequence of shallow waterfacies in a near shore environment. It is the first time that this study distinguished the presence of deep-water facies in the LowerCarboniferous sequence of Nohutluk Tepe in the Aladağ region.

  • Carboniferous sequence

  • silicified limestones

  • oolitic limestones

  • Taurus

  • Altınlı, İ.E., 1966, Doğu ve Güneydoğu Anadolu`nun Jeolojisi: Maden Tetkik ve Arama Enst. Derg., 66, 35-74.

  • Behrens, E.W., 1965, Environment Reconstruction for a part of the Glen Rose Limestone, Central Texas: Sedimentology, 4 65—111.

  • Blumenthal, MM., 1952, Toroslar`da Yüksek Aladağ silsilesinin coğrafyası, stratigrafisi ve tektoniği hakkında yeni etüdler: Maden Tetkik ve Arama Ents., Ankara, No: 6,136 s.

  • Demirtaşlı, E., 1967, Pınarbaşı—Sarız—Mağara civarının jeoloji raporu: Maden Tebrik ve Arama Enst., Derleme, No: 1935, (yayınlanmamış).

  • Demirtaşlı, E., Çatal, E., Dil, N., Kırağlı, C. ve Salana, A., 1978, Excursion B ve Excursion C: Guidebook, Field Excursions on the Carboniferous Stratigraphy in Turkey, 25—37.

  • Dumont, J.F. ve Lys, M., 1973, Pisidya Torosları Otoktonunda (Göller Bölgesi) bulunan Gökdağ Karbonifer Serisinin tanımlanması (Viziyen, Başkiriyen): Cumhuriyetin 50. Yılı Yerbilimleri Kongresi-Tebliğler, 192-203.

  • Dunham, RJ., 1962, Classification of carbonate rocks according to depo âtio nal texture; Ham, W .E., ed., Classification of Carbonate Rocks da: Am. Assoc. Petroleum Geologists, Mem. 1,108—121.

  • El Ishmawi, R., 1972, Geologie des nördlichen Mittelteils des Amanos— Gebirges zwischen islahiye und Bahçe (S—Türkei), Geotekt, Forsch., 42, 34-63.

  • Kellog, H.E., 1960, Stratigraphic Section of Hazro Area: Petrol İşleri Genel Müdürlüğü Arşivi (yayınlanmamış rapor).

  • Monod. O., 1977, Recherches geologiques dans le Taurus occidental au Sud de Beyşehir (Turquie): These, Univ. Paris-Sud, 511 s.

  • Özgül, N., Metin, S., Erdoğan, B., Göğer, E., Bingöl, İ. ve Baydar, O., 1973, Tufanbeylî Dolayının Kambriyen—Tersiyer Kayaları: Türkiye Jeol. Kur. Bült., 16,1,82-100.

  • Özgül, N., 1976, Toroslar`ın bazı temel jeoloji özellikleri: Türkiye Jeol. Kur. Bült., 19,1,65-78.

  • Volcanics of Triassic Age in Bitlis Metamorphic Rocks
    Doğan Perinçek
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    Abstract: The aim of this study is to introduce the Upper Trassic sequence around Dol Village (Palu-Elazığ).in the studied area the magmatic rocks which are composed of metabasalt and metadiabase are in primary relation and alsocontemporaneous with the Norian sedimentary sequence. This sedimentary sequence is represented by crystalline limestone,marble, silicified shale, radiolarite, radiolarian chert, sericite-chlorite schist, glaucophane schist, metaquartzite and metatuff.In the crystalline limestone which is interfingering with metabasalt, Megalodont fragments have been found.By this study the presence of Upper Triassic aged volcanic material bearing sedimentary sequence in Bitlis metamorphites hasbeen proved for the first time by all its evidences. It is known that the splitting of the Arabian and Anatolian continents andforming of an ocean have started in Upper Triassic. At the beginning of rifting a deep trough has formed on the continental crustby block faulting. The Norian aged sequence around Dol Village has been deported in this trough. 

  • metabasalt

  • marble

  • rifting

  • Bitlis

  • Açıkbaş, D., ve Baştuğ, C. 1975, V. Bölge Cacas—Hani yöresi kuzey sahalarının jeoloji raporu ve petrol olanakları: T.P.A.O., Rap. no: 917, yayınlanmamış

  • Baştuğ, C, 1976, Bitlis napının stratigrafisi ve Güneydoğu Anadolu sütur zonunun evrimi: Yeryuvarı ve İnsan, 1/3, 55—61.

  • Boray, A., 1975, Bitlis dolayının yapısı ve metamorfizması; Türkiye Jeol. Kur. Bült., 18/1,81-84.

  • Dewey, J.F., Pitman, W.C., Ryan, W.B.F., ve Bonnin, J., 1973, Plate tectonics and the Alpine system. Geol. Soc. America Bull., 84,3137-3180.

  • Erdoğan, B., 1977, Geology, geochemistry and genesis of the sulphide deposits of the Ergani—Maden region, Southeast Turkey: University of NewBrunswick, Ph. D. Thesis, 288 s, yayınlanmamış.

  • Hall, R., 1974, The structure and petrology of an ophiolitic melange near Mutki, Bitlis province, Turkey: University of London, Ph. D. Thesis, 351 s., yayınlanmamış.

  • Hall, R., 1976, Ophiolite emplacement and evolution of the Taurus sature zone, Southeastern Turkey: Geol. Soc. America Bull., 87, 1078-1088.

  • Hutchinson, R.W., ve Engels, G.G., 1970, Tectonic significance of regional geology and evaporite lithofacies in northeastern Ethopia: Phil. Trans. R. Soc. A, 267, 313-329, Fig. 14.8

  • Kellogg H.E., 1960 Stratigraphic report, Bitlis-Siirt Area, Petroleum District V., Southeast Turkey: Petrol İşleri Genel Müdürlüğü Arşivi, Ankara, yayınlanmamış.

  • Özkaya, İ., 1978, Ergani-Maden yöresi stratigrafisi; Türkiye Jeol. Kur. Bült., 21/2, 129-139.

  • Perinçek, D., 1979 a, Güneydoğu Anadolu`da allokton birimler: 33. Türkiye Jeoloji Bilimsel ve Teknik Kurultayı, Bildiri özetleri, s.115-116.

  • Perinçek, D., 1979 b, Palu-Karabegan-Elazığ-Sivrice-Malatya alanının jeooljisi ve petrol imkanları: T.P.A.O., Ankara, Rap. no. 1361, yayınlanmam iş.

  • Perinçek, D., 1979 c, interrelation of the Arabian and Anatolian plates, Guide book for excursion

  • Rigo de Righi, M., ve Cortesini, A., 1964, Gravity tectonics in foothills structure belt of Southeast Turkey: A.A.P.G. Bul, 48, 1911-1937.

  • Savcı, H. ve Yöndem, F., 1979, Hizan-Bitlis-Mutki- Meydan dolayının jeoloji incelemesi ve petrol olanaklarının araştırılması: T.P.A.O. Rap. no. 1356, yayınlanmamış.

  • Soytürk, N., ve Baştuğ, C, 1973, Kozluk-Baykan yöresi jeoloji raporu: T.P.A.O. Rap. no. 795, yayınlanmamış.

  • Sungurlu, O., 1974, VI. Bölge kuzeyinin jeolojisi ve petrol imkanları: Türkiye İkinci Petrol Kongresi Tebliğleri, 85-107.

  • A Study on Regional Metamorphism of Northeastern Part of Central Anatolian Massif (Akdağmadeni, Yozgat)
    Yavuz Erkan
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    Abstract: In this paper, some data related to the regional metamorphism, obtained during a study on mineralization around a graniteintrusion in the east of Akdağ madeni (Yozgat Î35-c2 sheets), are presented.The study area has a southwest plunging anticlinal structure with a granite intrusion in the center. Indications of contact metamorphism in the rock groups, namely calcsilicatic gneiss, marble, quartzite/quartzschist, gneiss and amphibolite around the graniteintrusion, are clearly seen. Calcite+diopside+scapolite+plagioclase+sphene paragenesis in the calcsilicatic gneisses, and sillimanite+orthoclase paragenesis in the gneisses are observed. Reddish-brown pleochroism color in biotites of the gneisses, and brownishgreen pleochroism color in hornblendes of the amphibolites were determined. All the mineral groups which exist in the abovementioned rocks indicate a high degree of regional metamorphism in the area.On the basis of the petrological data obtained in this study, it is not possible, as it was done by some previous investigtors, todivide the regional metamorphic rocks as upper and lower series and to map them as such. It is not also possible to state thatinitially a high degree of metamorphism, has been effective in the area.In the study area, a carbonaceous series with about 1500 m thickness wnich includes some pelitic layers, had been subjected to anintermediate pressure/high temperature metamorphism, as it is in the vicinity of Kırşehir. It was not possible to differentiate anymetamorphic zoning in the study area; and it is accepted that all the rocks in the area belong to a single metamorphic zone. 

  • granite intrusion

  • regional metamorphism

  • anticlinal

  • biotite

  • amphibolite

  • Yozgat

  • Bard, J.D., 1970, Composition of hornblendes formed during the Hercynian progressive metamorphism of the Aracene Metamorphic Belt (SW-Spain): Contr. Mineral, and Petrol., 28, 117-134.

  • Binns, R.A., 1965, The mineralogy of metamorphosed basic rocks from the Willyama complex, Broken Hill District, New South Wales, Part: l-Hornblendes:Min. Mag., 35, 306-326.

  • Erkan, Y., 1975, Orta Anadolu Masifinin güneybatısında (Kırşehir Bölgesinde) etkili rejyonal metamorfizmanın petrolojibincelenmesi: H.Ü. Yerbilimleri Enstitüsü, Doçentlik Tezi, 147 s

  • Erkan, Y., 1976 a, Kırşehir çevresindeki rejyonal metamorfik bölgede saptanan isogradlar ve bunların petrolojik yorumlanmaları: Yerbilimleri, 2/1, 23-54.

  • Erkan, Y., 1976 b, Orta Anadolu Masifindeki karbonatlı kayaçlarda plajiyoklaz bileşimi ile metamorfizma arasındaki ilişkilerin incelenmesi: Yerbilimleri, 2/2, 107-111.

  • Hietanen, A., 1967, Scapolite in the Belt series in the St. Joe—Clearwater Region, Idaho: Geol. Soc. Amer. Spec. Paper, 86, 1—56.

  • Miyashiro, A., 1958, Regional metamorphism of the Gosaisyo—Takanuki district in the Central Abukama Plateau: Tokyo Uni., Journ. Faculty Sci., 11,219-272.

  • Miyashiro, A., 1973, Metamorphism and Metamorphic Belts: Halsted Press, New York, 400 s.

  • Pollak, A., 1958, Über einige geologische Beobachtungen im Zentralanatolischen Massiv: Notizbl. hess. L.— Amt. Bodenforschung, 87,239-245.

  • Ramsay, C.R. ve Davidson, L.R., 1970, The origin of scapolite in the regionally metamorphosed rocks of the Mary Kathleen, Oueensland, Australia: Contr. Mineral, and Petrol., 25,41—51.

  • Serdyuchenko, D.P., 1975, Some Precambrian scapolite—bearing rocks evolved from evaporites: Lithos, 8, 1—7.

  • Shaw, D.M., 1960, The geochemistry of scapolite, Part I: Previous work and general mineralogy, Part II: Trace elements, petrology and general geochemistry: J. Petrology, 1, 218-260, 261-285.

  • Sobolev, V.S., 1972, The facies of metamorphism: Australian Nat. Uni. Press, Canberra, 416 s.

  • Trommsdorff, V., 1966, Progressive Metamorphose kieseligcr Karbonatgesteine in the Zentralalpen: Schweiz. Miner. Petrogr. Mitt., 46,431-460.

  • Trover, W.E., 1969, Optische Bestimmung der gesteinsbildenden Minerale: Teil II: Textband: E. Schweizerbart1 sche Verlag., Stuttgart, 822 s.

  • Vache, R., 1962, Die {Contaktlagerstaette von Akdağmadeni und ihr geologischer Rahmen innerhalb des Zentralanatolischen Kristallins: M.T.A. Enst. Dergisi, 60, 22-36.

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