Isotope disequilibrium caused by the influx of fluids during crustal anatexis
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https://figshare.com/articles/dataset/Isotope_disequilibrium_caused_by_the_influx_of_fluids_during_crustal_anatexis/16948570
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Isotope disequilibrium during crustal anatexis is increasingly recognized in the magmatic systems, which is usually attributed to stoichiometry or peritectic phases of melting reactions. However, whether fluid influx can contribute to isotope disequilibrium during fluid-fluxed melting remains poorly constrained. Here we report combined Mg-O-Sr isotopic data for migmatites from Dabie orogen. Except for one sample that has experienced post-migmatization metasomatism, leucosomes show considerably lower δ<sup>26</sup>Mg (-0.71‰ ~ -0.23‰) and δ<sup>18</sup>O (3.7‰ ~ 8.7‰) but higher <sup>87</sup>Sr/<sup>86</sup>Sr(i) (0.7089 ~ 0.7131) than the corresponding melanosomes (-0.29‰ ~ -0.11‰, 6.9‰ ~ 10.6‰ and 0.7080 ~ 0.7119, respectively). Such isotopic difference between leucosomes and melanosomes cannot result from fractionation during either fractional crystallization, accumulation or equilibrium, incongruent to non-modal melting, but most likely records isotope disequilibrium during crustal anatexis. Co-variations of δ<sup>18</sup>O, δ<sup>26</sup>Mg and <sup>87</sup>Sr/<sup>86</sup>Sr(i) of leucosomes indicate influx of external fluids and their preferential partition into melts. The external fluids could have low δ<sup>18</sup>O and δ<sup>26</sup>Mg but high <sup>87</sup>Sr/<sup>86</sup>Sr(i) and were most likely derived from dehydration of the surrounding eclogites and gneisses with Neoproterozoic protoliths experienced meteoric-hydrothermal exchange. One leucosome is plotted off the major trends by its rather low δ<sup>26</sup>Mg (~ -0.71‰), and may have been overprinted by Fe-Mg inter-diffusion. Simple diffusion calculations suggested that the timescale to reach isotopic equilibration during fluid-fluxed melting is larger by one order of magnitude than that of dehydration melting. Hence, fluid-fluxed melting may generate melts out of isotope equilibrium with restite, and cautions should be taken in interpretation of isotopic data of the resulting granitoids.
提供机构:
He, Yongsheng
创建时间:
2021-11-08



