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Strongly peraluminous fractionated S-type granites in the Baoshan Block, SW China: Implications for two-stage melting of fertile continental materials following the closure of Bangong-Nujiang Tethys.

Authors :
Zhu, Ren-Zhi
Lai, Shao-Cong
Qin, Jiang-Feng
Zhao, Shao-Wei
Santosh, M.
Source :
Lithos. Sep2018, Vol. 316, p178-198. 21p.
Publication Year :
2018

Abstract

Strongly peraluminous fractionated S-type granites are important indicators of compositional maturity of the continental crust. Here we report the finding of strongly peraluminous fractionated S-type granites from the western Baoshan Block in the southeastern Tibetan–Himalayan orogenic belt. We present LA ICP-MS zircon U–Pb ages from biotite- and two-mica- granites which reveal two distinct periods of magmatism at 121.8 ± 1.1 Ma and 81.9–79.7 Ma. These Cretaceous granites are strongly peraluminous (A/CNK = 1.18–1.31), high-K calc-alkaline, enriched in Rb, Th, K, and Pb, and depleted in Ba, Sr and Ti. They also show high normative- corundum contents of 2.84–4.42 wt%, moderately high P 2 O 5 content (0.22–0.28 wt%) and high differentiation index (DI) of 93.1–96.8, similar to the features of fractionated S-type granites. The low total Fe 2 O 3 T + MgO + TiO 2 contents (<3.0 wt%) are also consistent with the results from experimental studies on S-type granite melts. The S-type granites from Baoshan show high Al 2 O 3 /TiO 2 (93.8–182.9), Rb/Ba (6.19–23.5), and Rb/Sr (17.0–30.5) values, and low CaO/Na 2 O (0.09–1.19). They also display negative εNd( t ) values (−11.7 to −13.6) and εHf( t ) ranges (−5.47 to −0.77 for biotite granites and −7.67 to −0.81 for two-mica granites) suggesting evolved and heterogeneous continental crustal sources for the magma. The initial 206 Pb/ 204 Pb (17.527 to 19.277), 207 Pb/ 204 Pb (15.772 to 15.888), and 208 Pb/ 204 Pb (39.237 to 39.498) isotopic ratios are also consistent with lower to upper crustal affinity. Our data, in conjunction with those from experimental studies suggest that the strongly peraluminous S-type granites were derived from partial melting of metasedimentary, pelite-dominated source within continental crustal basement, similar to typical fractionated S-type granites from the Jiangnan Orogen (SE China), Erzgebirge (Central Europe), Eastern Australia and the low-temperature SP granites in the Himalayas. We correlate the Early- to Late- Cretaceous magmatism with two-stage melting of fertile continental materials following the final closure and termination of Bangong-Nujiang Tethys ocean. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00244937
Volume :
316
Database :
Academic Search Index
Journal :
Lithos
Publication Type :
Academic Journal
Accession number :
131368107
Full Text :
https://doi.org/10.1016/j.lithos.2018.07.016