Reverse metasomatism of subduction zone fluids
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
https://link.springer.com/content/pdf/10.1007/s11430-023-1241-6.pdf
Reference22 articles.
1. Chen A X, Chen Y X, Gu X, Zeng Z, Xiao Z, Schertl H P, Han X, Zhao Z F, Huang F. 2023. Barium isotope behavior during interaction between serpentinite-derived fluids and metamorphic rocks in the continental subduction zone. Geochim Cosmochim Acta, 353: 61–75
2. Chen S, Hin R C, John T, Brooker R, Bryan B, Niu Y, Elliott T. 2019. Molybdenum systematics of subducted crust record reactive fluid flow from underlying slab serpentine dehydration. Nat Commun, 10: 4773
3. Chen Y X, Demény A, Schertl H P, Zheng Y F, Huang F, Zhou K, Jin Q Z, Xia X P. 2020. Tracing subduction zone fluids with distinct Mg isotope compositions: Insights from high-pressure metasomatic rocks (leucophyllites) from the Eastern Alps. Geochim Cosmochim Acta, 271: 154–178
4. Chen Y X, Lu W, He Y, Schertl H P, Zheng Y F, Xiong J W, Zhou K. 2019. Tracking Fe mobility and Fe speciation in subduction zone fluids at the slab-mantle interface in a subduction channel: A tale of whites-chist from the Western Alps. Geochim Cosmochim Acta, 267: 1–16
5. Chen Y X, Schertl H P, Zheng Y F, Huang F, Zhou K, Gong Y Z. 2016. Mg-O isotopes trace the origin of Mg-rich fluids in the deeply subducted continental crust of Western Alps. Earth Planet Sci Lett, 456: 157–167
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