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Ferroglaucophane- and chloritoid-bearing metapelites from the phyllite series, southern Peloponnese, Greece

Published online by Cambridge University Press:  05 July 2018

Christos Katagas*
Affiliation:
Geological Laboratory, University of Patras, Patras, Greece

Summary

The unusual assemblage ferroglaucophane-chloritoid-paragonite-garnet-muscovite-chlorite-quartz has been found in metapelites of the phyllite series, north-east of Neapolis, southern Peloponnese, Greece. The chemical compositions of the coexisting phases are given, and the physical and chemical constraints which may control the appearance of this assemblage are briefly discussed.

Type
Research Article
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 1980

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References

Bearth, (P.), 1963. Schweiz. Mineral. Petrogr. Mitt. 43, 269–86.Google Scholar
Bearth, (P.) 1967. Beitr. Geol. Karte Schweiz, NF 132. Google Scholar
Chatterjee, (N. D.), 1973. Contrib. Mineral. Petrol. 42, 259–71.CrossRefGoogle Scholar
Eugster, (H. P.), Albee, (A. L.), Bence, (A. E.), Thompson, (J. B.Jr.) and Waldbaum, (D. R.), 1972. J. Petrol. 13, 147–79.CrossRefGoogle Scholar
Fytrolakis, (N.), 1971. Bull. geol. Soc. Greece, 8, 7081.Google Scholar
Hoffman, (C.), 1972. Contrib. Mineral. Petrol. 34, 135–49.CrossRefGoogle Scholar
Hoschek, (G.), 1969. Ibid. 22, 208–32.Google Scholar
Jacobshagen, (V.), Makris, (J.), Richter, (D.), Bachmann, (G.), Doert, (U.), Giese, (P.), and Risch, (H.), 1976. Z. dt. geol. Ges. 127, 337–63.Google Scholar
Ktenas, (K. A.), 1907. Mineral. Petrol. Mitt. NF 26, 257320.Google Scholar
Ktenas, (K. A.) 1924. C.R. somm. Soc. geol. France, 24, 61–3.Google Scholar
Ktenas, (K. A.) 1926. Prakt. Akad. Ath. 1, 53–9.Google Scholar
Lasaulx, (A.), 1883. Verth. Naturh. Vet. Preuss. Rheinl. 40, 263–76Google Scholar
Lys, (M.) and Thiébault, (F.), 1971. C.R. Acad. Sci. Paris, D272, 12.Google Scholar
Makanjuola, (A. A.) and Howie, (R. A.), 1972. Contrib. Mineral. Petrol. 35, 83118.CrossRefGoogle Scholar
Panagos, (A. G.), Pe, (G. G.), Piper, (D. J. W.), and Kotopouli, (C. N.), 1979. N. Jb. Geol. PaliJont. Mh. 3, 181–90.Google Scholar
Paraskevopoulos, (G.), 195.. Pract. Akad. Ath. 24, 1830.Google Scholar
Paraskevopoulos, (G.) 1964. N.Jb. Mineral. Abh. 101, 195209.Google Scholar
Richter, (D.), 1975. N. Jb. Geol. Paläont. Abh. 149, 129–47.Google Scholar
Roever, (de W. P.), and Nijhuis, (N.), 1964. Geol. Rudschau, 53, 324–36.CrossRefGoogle Scholar
Thiébault, (F.), 1975. C.R. Acad. Sci. Paris, D280, 947–50.Google Scholar
Thiébault, (F.) 1976. Bull. Soc. geol. France, 7, t. XVIII, 346.CrossRefGoogle Scholar
Tschopp, (H.), 1923. Eclogae Geol. Helv. 18, 77206.Google Scholar
Velde, (B.), 1967. Morbihan. Bull. Soe. Franc. Mineral. Crist. 90, 265–6.Google Scholar
Wedepohl, (K. H.), 1969. In K. H., Wedepohl (ed.), Handbook of geochemistry,1, New York, Springer, 250–71.CrossRefGoogle Scholar