Hostname: page-component-78c5997874-s2hrs Total loading time: 0 Render date: 2024-11-08T09:21:02.209Z Has data issue: false hasContentIssue false

Petrochemistry of Paleozoic spilites of the eastern Alps (Austria)

Published online by Cambridge University Press:  01 May 2009

J. Loeschke
Affiliation:
Geologisches Institut, D-74 Tubingen, Germany

Summary

In the Karawanken Mountains (SE Austria) spilites (pillow lavas and sills) are found intercalated in a sequence of Paleozoic slates and graywackes. The petrogenesis of these spilites is interpreted as follows: The pillow lavas and sills consolidated as mugearites and hawaiites, which were derived from an alkali olivine-basaltic magma by fractional crystallization. Under low temperature metamorphic conditions water entered into the rocks predominantly from external sources. The primary minerals (Na-Ca plagioclase, pyroxene and glass) were thus replaced either partially or completely by minerals characteristic of spilites (albite, chlorite, epidote and others). The spilites analysed are of secondary origin. They are compared with spilites and basalts of other (continental and oceanic) areas.

Type
Articles
Copyright
Copyright © Cambridge University Press 1973

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Amstutz, G. 1968. Spilites and spilitic rocks. In Hess, H. & Poldervaart, A. (Eds): Basalts. Vol. 2, 737–53. Interscience, New York.Google Scholar
Bailey, E., Irwin, W. & Jones, D. 1964. Franciscan and related rocks, and their significance in the geology of western California. Bull. Calif. Div. of Mines and Geology 183, 177 p.Google Scholar
Cann, J. R. 1971. Major element variation in ocean-floor basalts. Phil. Trans. R. Soc. Lond. A, 268, 495505.Google Scholar
Chayes, F. 1964. A petrographic distinction between Cenozoic volcanics in and around the open oceans. J. geophys. Res. 69, 1573–88.CrossRefGoogle Scholar
Gentili, G. & Pellizzer, R. 1964. Le rocce erruttive del Paleozoico Carnico. Boll. Soc. geol. ital. 83, 151205.Google Scholar
Groschopf, R. 1970. Zur Petrographie und Tektonik des schwachmetamorphen Altpaläozoikums im NE Klagenfurter Becken. Mitt. Ges. Geol. Bergbaustud. Wien 19, 215–78.Google Scholar
Hekinian, R. 1971. Petrological and geochemical study of spilites and associated rocks from St John, U.S. Virgin Islands. Bull. geol. Soc. Am. 82, 659–82.CrossRefGoogle Scholar
Hentschel, H. 1951. Die Umbildung basischer Tuffe zu Schalsteinen. Neues Jb. Miner. Abh. 82, 199230.Google Scholar
Hentschel, H. 1970. Vulkanische Gesteine. In Lippert, H. J., Hentschel, H. & Rabien, A. (Eds): Erläuterungen zur geologischen Karte von Hessen 1: 25 000, Bl. Dillenburg, Nr. 5215. 550 pp. Hess. Landesamt. Bodenforsch., Wiesbaden.Google Scholar
Herrmann, A. & Wedepohl, K. 1970. Untersuchungen an spilitischen Gesteinen der variskischen Geosynkline in Nordwestdeutschland. Contr. Miner. Petrol., 29, 255–74.CrossRefGoogle Scholar
Hopgood, A. M. 1962. Radial distribution of soda in a pillow of spilitic lava from the Franciscan, California. Am. J. Sci., 260, 383–96.CrossRefGoogle Scholar
Kubler, B. 1968. Évaluation quantitative du métamorphisme par la crystallinité de l'illite. Bull. Cent. Rech. Pau—S.N.P.A. 2, 385–97.Google Scholar
Lodemann, C. 1970. Geochemie der Metamorphose im Saualpen-Kristallin (Ostkärnten) Neues Jb. Miner. Abh. 112, 188218.Google Scholar
Loeschke, J. 1970. Zur Geologic und Petrographie des Diabaszuges westlich Eisenkappel (Ebriachtal/Karawanken/Österreich). Oberrhein. geol., Abh. 19, 73100.Google Scholar
Loeschke, J. Zur Petrogenese paläozoischer Spilite aus den Ost-Alpen. Neues Jb. Miner, Abh. (in press)Google Scholar
Manson, V. 1967. Geochemistry of basaltic rocks: Major elements. In Hess, H. & Poldervaart, A. (Eds): Basalts. Vol. 1, 215–69. Wiley, New York.Google Scholar
Matthews, D. H. 1971. Altered basalts from Swallow Bank, an abyssal hill in the NE Atlantic, and from a nearby seamount. Phil. Trans. R. Soc. Lond. A, 268, 551–71.Google Scholar
Moore, J. G. 1965. Petrology of deep-sea basalt near Hawaii. Am. J. Sci. 263, 4052.CrossRefGoogle Scholar
Muffler, L., Short, J., Keith, T. & Smith, V. 1969. Chemistry of fresh and altered basaltic glass from the upper Triassic Hound Island volcanics, southeastern Alaska. Am. J. Sci. 267, 196209.CrossRefGoogle Scholar
Narebski, W. 1964. Petrochemistry of pillow lavas of the Kaczawa Mountains and some general petrogenetical problems of spilites. Pr. Muz. Ziemi, Pr. petrogr. 7, 69205.Google Scholar
Nicholls, G. D. 1958. Autometasomatism in the lower spilites of the Builth volcanic series. Q. Jl. geol. Soc. Lond. 114, 137–62.CrossRefGoogle Scholar
Nockolds, S. R. 1954. Average chemical compositions of some igneous rocks. Bull. geol. Soc. Am. 65, 1007–32.CrossRefGoogle Scholar
Rösler, H. J. 1960. Zur Petrographie, Geochemie und Genese der Magmatite und Lagerstätten des Oberdevons und Unterkarbons in Ostthüringen. Freiberger Forschungs Hft. C 92, 275 pp.Google Scholar
Sharfman, V. S. 1968. Average chemical properties of spilites. Dokl. Acad. Sci. USSR Earth Sci. 180, 164–5.Google Scholar
Sundius, N. 1930. On the spilitic rocks. Geol. Mag. 67, 117.CrossRefGoogle Scholar
Thornton, C. P. & Tuttle, O. F. 1960. Chemistry of igneous rocks. I. Differentiation index. Am. J. Sci. 258, 664–84.CrossRefGoogle Scholar
Turner, J. & Verhoogen, J. 1960. Igneous and metamorphic petrology, 694 pp., McGraw-Hill, New York.Google Scholar
Tyrrell, G. W. & Peacock, M. A. 1926. The petrology of Iceland. Trans. R. Soc. Edinb. 55, 5176.CrossRefGoogle Scholar
Vallance, T. G. 1960. Concerning spilites. Proc. Linn. Soc. N.S.W. 85, 852.Google Scholar
Vallance, T. G. 1969. Spilites again: some consequence of the degradation of basalts. Proc. Linn. Soc. N.S.W. 94, 851.Google Scholar
Vuagnat, M. 1949. Variolites et spilites. Archs Sci. 2 (2), 223–36.Google Scholar
Weaver, C. E. 1960. Possible uses of clay minerals in the search for oil. Clays Clay Miner. 8, 214–27.CrossRefGoogle Scholar
Weber, K. Kristallinität des Illits in Tonschiefern und andere Kriterien schwacher Metamorphose in nordöstlichen Rheinischen Schiefergebirge. Neues Jb. Geol. Paläont. Abh. (in press).Google Scholar
Wells, A. K. 1923. Nomenclature of the spilitic suite. Part II: The problem of spilites. Geol. Mag. 60, 6274.CrossRefGoogle Scholar
Winkler, H. G. 1970. Abolition of metamorphic facies, introduction of the four divisions of metamorphic stage, and of classification based on isogrades in common rocks. Neues Jb. Miner. Mh. 5, 189248.Google Scholar