The formation of sediment-derived granitoids often occurs at relatively low temperatures during incongruent melting or muscovite dehydration. However, the petrogenesis of high- to ultrahigh-temperature S-type granites remains enigmatic. Volatile compositions can be powerful tracers of fluid origins and can provide insights into granite petrogenesis. We present data on the chlorine (Cl), fluorine (F), and water (H2O) contents, along with hydrogen and oxygen isotopic compositions, of apatite from the Darongshan-Shiwandashan granitic belt in South China. The petrogenesis and geodynamic setting responsible for the formation of this largest Mesozoic granitic complex in South China are highly debated. Various interpretations include those related to the collision between South China and Indochina in the southwest, subduction and tearing of the Paleo-Pacific oceanic slab in the southeast, and heating by the Emeishan mantle plume. The Cl/F ratio of melt, calculated from apatite data, decreases from southwest to northeast, which suggests halogen inputs from a northeastward-subducting slab. The δ18O value of apatite is relatively uniform across the granite suites, ranging from 9.7‰ to 12.1‰, and indicates a common metasedimentary source. The δD value of apatite varies widely, with the lowest hydrogen isotopic ratios (−238.6‰ ± 27.2‰) being comparable to those in the mantle transition zone, which possibly indicates H2O contributions from a deep mantle that was transferred into the upper crust. Based on these results, we propose a unified model involving the subduction of the Paleo-Tethyan oceanic crust and subsequent slab tearing, which favors the underplating of basaltic magmas from both the mantle wedge and deep mantle at the mantle-crust transition. These mafic magmas released fluids and heat into the overlying continental crust, inducing partial melting of metasedimentary rocks and formation of the high- to ultrahigh-temperature Darongshan-Shiwandashan granitic belt. Apatite is a powerful recorder of magmatic, metamorphic, and metasomatic processes occurring in complex geodynamic scenarios.
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Research Article|
May 06, 2025
Early Publication
Volatiles and hydrogen isotopes in apatite reveal slab tearing-induced high-temperature S-type granitic magmatism in South China Available to Purchase
Hu Nie;
Hu Nie
1
Hubei Key Laboratory of Petroleum Geochemistry and Environment, College of Resources and Environment, Yangtze University, Wuhan 430100, China2
YU-CUGW Joint Research Center on Deep Earth and Surface Dynamic Coupling, College of Resources and Environment, Yangtze University, Wuhan 430100, China
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Xiao-Ping Xia;
Xiao-Ping Xia
1
Hubei Key Laboratory of Petroleum Geochemistry and Environment, College of Resources and Environment, Yangtze University, Wuhan 430100, China2
YU-CUGW Joint Research Center on Deep Earth and Surface Dynamic Coupling, College of Resources and Environment, Yangtze University, Wuhan 430100, China
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Omar Bartoli;
Omar Bartoli
3
Dipartimento di Geoscienze, Università degli Studi di Padova, Via G. Gradenigo 6, Padova 35131, Italy
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Christopher J. Spencer;
Christopher J. Spencer
4
Department of Geological Sciences and Geological Engineering, Queen’s University, Kingston, Ontario K7L 2N8, Canada
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Yang Meng;
Yang Meng
5
State Key Laboratory of Isotope Geochemistry and Chinese Academy of Sciences Center for Excellence in Deep Earth Science, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China
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Wen-Xia Li
Wen-Xia Li
1
Hubei Key Laboratory of Petroleum Geochemistry and Environment, College of Resources and Environment, Yangtze University, Wuhan 430100, China2
YU-CUGW Joint Research Center on Deep Earth and Surface Dynamic Coupling, College of Resources and Environment, Yangtze University, Wuhan 430100, China
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Hu Nie
1
Hubei Key Laboratory of Petroleum Geochemistry and Environment, College of Resources and Environment, Yangtze University, Wuhan 430100, China2
YU-CUGW Joint Research Center on Deep Earth and Surface Dynamic Coupling, College of Resources and Environment, Yangtze University, Wuhan 430100, China
Xiao-Ping Xia
1
Hubei Key Laboratory of Petroleum Geochemistry and Environment, College of Resources and Environment, Yangtze University, Wuhan 430100, China2
YU-CUGW Joint Research Center on Deep Earth and Surface Dynamic Coupling, College of Resources and Environment, Yangtze University, Wuhan 430100, China
Omar Bartoli
3
Dipartimento di Geoscienze, Università degli Studi di Padova, Via G. Gradenigo 6, Padova 35131, Italy
Christopher J. Spencer
4
Department of Geological Sciences and Geological Engineering, Queen’s University, Kingston, Ontario K7L 2N8, Canada
Yang Meng
5
State Key Laboratory of Isotope Geochemistry and Chinese Academy of Sciences Center for Excellence in Deep Earth Science, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China
Wen-Xia Li
1
Hubei Key Laboratory of Petroleum Geochemistry and Environment, College of Resources and Environment, Yangtze University, Wuhan 430100, China2
YU-CUGW Joint Research Center on Deep Earth and Surface Dynamic Coupling, College of Resources and Environment, Yangtze University, Wuhan 430100, China
Publisher: Geological Society of America
Received:
15 Aug 2024
Revision Received:
07 Mar 2025
Accepted:
26 Mar 2025
First Online:
06 May 2025
Online ISSN: 1943-2674
Print ISSN: 0016-7606
© 2025 Geological Society of America
GSA Bulletin (2025)
Article history
Received:
15 Aug 2024
Revision Received:
07 Mar 2025
Accepted:
26 Mar 2025
First Online:
06 May 2025
Citation
Hu Nie, Xiao-Ping Xia, Omar Bartoli, Christopher J. Spencer, Yang Meng, Wen-Xia Li; Volatiles and hydrogen isotopes in apatite reveal slab tearing-induced high-temperature S-type granitic magmatism in South China. GSA Bulletin 2025; doi: https://doi.org/10.1130/B37968.1
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