Revealing the link between A-type granites and hottest melts from residual metasedimentary crust

Author:

Carvalho B.B.1ORCID,Bartoli O.1,Cesare B.1,Satish-Kumar M.2,Petrelli M.3,Kawakami T.4,Hokada T.5,Gilio M.6

Affiliation:

1. 1Dipartimento di Geoscienze, Università di Padova, Via G. Gradenigo 6, 35129 Padua, Italy

2. 2Faculty of Science, Niigata University, 8050 Ikarashi 2-no-chi, Nishi-ku, Niigata-shi 950-2181, Japan

3. 3Dipartimento di Fisica e Geologia, Università di Perugia, Piazza dell’Università 1, 06123 Perugia, Italy

4. 4Department of Geology and Mineralogy, Kyoto University, Kitashirakawa-Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan

5. 5Geoscience Group, National Institute of Polar Research, 10-3 Midori-cho, Tachikawa, Tokyo 190-8518, Japan

6. 6Dipartimento di Scienze della Terra e dell’Ambiente, Università di Pavia, Via Adolfo Ferrata 1, 27100 Pavia, Italy

Abstract

Abstract Among S-, I-, and A-type granites, the latter are the most debated in terms of origin, and metasedimentary crust is usually discarded as a potential source. Here we tackle this issue by adopting an in-source perspective, rather than focusing on the final product (granite), documenting the occurrence of pristine melt inclusions (MIs) in garnet from residual metapelitic ultrahigh-temperature (UHT) granulite from East Antarctica. Coexistence of sapphirine + quartz, phase equilibria calculations, and Zr-in-rutile thermometry indicate that MIs trapped UHT melts formed at peak conditions (930–1000 °C) from a residual metapelitic source. MIs are granitic with weakly peraluminous to weakly peralkaline affinity, ferroan character, high alkali contents, high K/Na and Ga/Al, and low Ca, Ba, Sr, and H2O concentrations. These features and geochemical modeling indicate that MIs represent primary melts for high-SiO2 A-type granites. Therefore, MIs reveal the missing link between A-type granites and the hottest metasedimentary crust. Voluminous amounts of slightly peraluminous, high-SiO2 A-type granites can be produced in large, residual UHT terranes such as those of eastern Gondwana. Our results provide a wider view of processes responsible for granite formation and show that a larger variety of granites must be considered in models of the effects of UHT anatexis on crustal differentiation.

Publisher

Geological Society of America

Subject

Geology

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