GENESIS OF SCAPOLITE FROM GRANULITES ( lower-crustal xenoliths from the Pamir diatremes ): RESULTS OF STUDY OF MELT INCLUSIONS
I.A. Madyukova, V.P. Chupina,b, and D.V. Kuz'mina,c
aV.S. Sobolev Institute of Geology and Mineralogy, Siberian Branch of the Russian Academy of Sciences, pr. Akademika Koptyuga 3, Novosibirsk, 630090, Russia bNovosibirsk State University, ul. Pirogova 2, Novosibirsk, 630090, Russia cMax Planck Institut fur Chemie, 27 Joh.-Joachim-Becher-Weg, Mainz, 55128, Germany
Keywords: Scapolite, granulite xenolith, melt inclusions, incongruent melting, lower crust, Pamir
Pages: 1319-1333 Subsection: PETROLOGY AND MINERALOGY OF LITHOSPHERE
Abstract
The results of mineralogical and thermobarogeochemical studies of lower-crustal xenolith of scapolite-bearing granulites from the fergusite-porphyry diatremes in Southeastern Pamir (Tajikistan) are presented. All minerals (including garnet, clinopyroxene, and scapolite) of these granulites contain primary melt inclusions, which were studied using thermometric and microprobe methods (EPMA, SIMS, Raman spectroscopy). We have established that their compositions correspond to acid (from rhyodacites to rhyolites), essentially potassic melts of normal and high alkalinity with H2O ≤ 4 wt.%, Cl ≤ 0.8 wt.%, and CO2 ~ 1 wt.%. The melts are depleted in HREE and have high Th/U ratios (7.7-9.4). Study of melt inclusions using mineralogical thermobarometers showed that the scapolite-bearing granulite crystallized at ~1000?C and ~15 kbar. This rock resulted, most likely, from the incongruent melting of carbonate-bearing biotite-quartz-plagioclase substrate in the lower crust, which was accompanied by the crystallization of garnet, clinopyroxene, sphene, plagioclase, and scapolite trapping microportions of acid melts as inclusions. The minerals crystallized not from melt but in its presence. High-Ca scapolite (Me67-69) crystallized instead of plagioclase when the melts reached high contents of CO2 (~1 wt.%) and Cl (≤0.8 wt.%) in the presence of CO2-rich fluid.
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