YENİŞARBADEMLİ (ISPARTA, TÜRKİYE) BATISINDAKİ MAFİK-ORTAÇ DAYKLARDAKİ EPİDOTLARIN MİNERALOJİSİ VE JEOKİMYASAL KARAKTERİ
Öz
Anahtar Kelimeler
Kaynakça
- Abbo, A., Avigad, D., Gerdes, A., Güngör, T., 2015, Cadomian Basement and Paleozoic to Triassic Siliciclastics of the Taurides (Karacahisar dome, south‐central Turkey): Paleogeographic Constraints from U–Pb–Hf in zircons, Lithos 227, 122–139.
- Armbruster, T., Bonazzi, P., Akasaka, M., Bermanec, V., Chopin, C., Gieré, R., Heuss-Assbichler, S., Liebscher, A., Menchetti, S., Pan, Y., Pasero, M., 2006. Recommended Nomenclature of Epidote-Group Minerals. European Journal of Mineralogy 18 (5), 551–567.
- Arnason, J.G., Bird, D.K., Liou, J.G., 1993. Variable controlling epidote compositionin hydrothermal and low-pressure regional metamorphic rocks. Abhand. Geol.Bund. 49, 17–25.
- Baker, M.J., Wilkinson, J.J., Wilkinson, C.C., Cooke, D.R., Ireland, T., 2020. Epidote Trace Element Chemistry as an Exploration Tool in the Collahuasi District. Northern Chile. Economic Geology 115 (4), 749–770.
- Bird, D.K., Spieler, A.R., 2004. Epidote in geothermal systems. Rev. Mineral. Geochem.56, 235–300.
- Bird, D.K., Cho, M., Janik, C.J., Liou, J.G., Caruso, L.J., 1988. Compositional,order–disorder, and stable isotope characteristics of Al–Fe epidote, State 2-14drill hole, Salton Sea geothermal system. J. Geophys. Res. 93, 13135–13144.
- Chukhrov, F.V.,1972. Mineraly (Minerals), Handbook, (3). Moscow, Nauka.
- Cooke, D.R., et al., 2014. New Advances in Detecting the Distal Geochemical Footprints of Porphyry Systems—Epidote Mineral Chemistry as a Tool for Vectoring and Fertility Assessments, Building Exploration Capability for the 21st Century. Society of Economic Geologists.
Ayrıntılar
Birincil Dil
Türkçe
Konular
Maden Yatakları ve Jeokimya, Mineraloji-Petrografi
Bölüm
Araştırma Makalesi
Yazarlar
Yayımlanma Tarihi
20 Mart 2025
Gönderilme Tarihi
20 Kasım 2024
Kabul Tarihi
24 Ocak 2025
Yayımlandığı Sayı
Yıl 2025 Cilt: 13 Sayı: 1