Genesis of the Mengshan Granitoid Complex in an Early Mesozoic Intracontinental Subduction Tectonic Setting in South China: Evidence from Zircon U-Pb-Hf Isotopes and Geochemical Composition

Author:

Wei Jin123,Ouyang Yongpeng2345ORCID,Zou Jing23,Zeng Runling23,Zhang Xinming4,Zhang Tao4,Sui Shenao4,Zhang Da4,He Xiaolong1ORCID,Zhang Yaoyao6ORCID

Affiliation:

1. School of Environment and Resources, Xiangtan University, Xiangtan 411105, China

2. The Tenth Geological Brigade of Jiangxi Geological Bureau, Yingtan 335001, China

3. Yingtan Key Laboratory of Exploration and Research of Scarce and Advantage Minerals, Yingtan 335001, China

4. School of Earth Sciences and Resources, China University of Geosciences, Beijing 100083, China

5. Jiangxi Province Key Laboratory of Exploration and Development of Critical Mineral Resources, Nanchang 330009, China

6. Chinese Academy of Geological Sciences, Beijing 100037, China

Abstract

The Mengshan granitoid complex is located in the central part of Jiangnan Orogen and belongs to the western part of Jiangxi Province, where several phases of granitic magmatism record the crustal evolution of the late-Indosinian. However, its petrogenesis remains uncertain, largely due to controversies over its origin, evolutionary process and tectonic setting during intrusion. In this study, the lithological features and contact relationships observed in the systematic field geological investigations indicate that the late magmatic phases of the Mengshan granitoid complex are mainly composed of medium–fine-grained biotite monzogranite and fine-grained monzogranite, both of which developed primary fine-grained muscovite. Petrological, petrographic, geochemical and zircon U-Pb-Hf isotopic studies were further carried out on these rocks. Zircon U-Pb isotopic analyses suggest that the medium–fine-grained biotite monzogranite mainly formed at 220.7 ± 1.0 Ma to 218.0 ± 0.8 Ma, and that the fine-grained monzogranite formed at 211.5 ± 2.9 Ma to 212.9 ± 1.0 Ma. Whole-rock geochemical analysis results suggest that these rocks are rich in Cs, Rb, and U, and deficient in Ba, Sr, and Ti, and that they have properties characteristic of rocks with high silica, low P content and high K calc-alkali. Mineralogical and geochemical analysis results suggest that they are S-type granites. The εHf(t) values of the early-stage medium–fine-grained biotite monzogranite and late-stage fine-grained monzogranite range from –4.7 to 0.3 and from –3.2 to 0.7, respectively. Geochemical and isotopic data suggest that these granitoids were derived from the partial melting of Proterozoic continent basement rocks, and that minor mantle materials were involved during their generation. The presence of the early Mesozoic Mengshan granitoid complex reflects a reduplicated far-field converge effect of the collision of the North China and South China blocks and the subduction of the Palaeo-Pacific plate into the South China block. The thickening of the Earth’s crust facilitated crustal delamination, underplating of mantle-derived magma, and crustal heating, triggering intense partial melting of the lithosphere and magma enrichment.

Funder

Jiangxi Geological Bureau Young Science and Technology Leader Training Programme Project

National Natural Science Foundation of China

project of Science and Technology Department of Hunan Province

Natural Science Foundation of Jiangxi Province

Geological survey project funded by the Provincial Department of Finance of Jiangxi Province

Key R&D Project of Science and Technology Department of Jiangxi Province

Science and Technology Programme Project of Yingtan City

Publisher

MDPI AG

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