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Non-traditional stable isotope behaviors in immiscible silica-melts in a mafic magma chamber
Dan Zhu; Huiming Bao; Yun Liu
2015
Source PublicationScientific Reports
Issue5
Abstract
Non-traditional stable isotopes have increasingly been applied to studies of igneous processes including planetary differentiation. Equilibrium isotope fractionation of these elements in silicates is expected to be negligible at magmatic temperatures (delta Fe-57 difference often less than 0.2 per mil). However, an increasing number of data has revealed a puzzling observation, e.g., the delta Fe-57 for silicic magmas ranges from 0% up to 0.6%, with the most positive delta Fe-57 almost exclusively found in A-type granitoids. Several interpretations have been proposed by different research groups, but these have so far failed to explain some aspects of the observations. Here we propose a dynamic, diffusion-induced isotope fractionation model that assumes Si-melts are growing and ascending immiscibly in a Fe-rich bulk magma chamber. Our model offers predictions on the behavior of non-traditional stable isotope such as Fe, Mg, Si, and Li that are consistent with observations from many A-type granitoids, especially those associated with layered intrusions. Diffusion-induced isotope fractionation may be more commonly preserved in magmatic rocks than was originally predicted.
Subject Area矿床地球化学
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/352002/5756
Collection矿床地球化学国家重点实验室_矿床地球化学国家重点实验室_期刊论文
Recommended Citation
GB/T 7714
Dan Zhu,Huiming Bao,Yun Liu. Non-traditional stable isotope behaviors in immiscible silica-melts in a mafic magma chamber[J]. Scientific Reports,2015(5).
APA Dan Zhu,Huiming Bao,&Yun Liu.(2015).Non-traditional stable isotope behaviors in immiscible silica-melts in a mafic magma chamber.Scientific Reports(5).
MLA Dan Zhu,et al."Non-traditional stable isotope behaviors in immiscible silica-melts in a mafic magma chamber".Scientific Reports .5(2015).
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