阿拉伯-努比亚地盾蛇绿岩镁同位素对俯冲带流体-岩石相互作用和碳循环的启示

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Yuan-Ru Qu, Sheng-Ao Liu, Hamed Gamaleldien
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引用次数: 0

摘要

在俯冲带中,流体-岩石相互作用在元素动员、传质和关键金属的形成中起着重要作用。然而,在俯冲通道内跟踪多阶段流体-岩石相互作用仍然是难以捉摸的。本文对埃及东部沙漠阿拉伯-努比亚盾(ED)瓦迪巴拉米耶(Wadi Al Barramiyah)的一套俯冲蛇绿质岩进行了大块岩石主微量元素和镁(Mg)同位素分析。岩石组包括蛇纹岩、滑石岩、滑石白云岩、透闪岩为主的片岩和大理岩。滑石岩石的MgO含量低,δ 26mgsm -3值相对于蛇纹岩(- 0.18‰)高(0.03 ~ 0.13‰),表明滑石交代替代反长岩过程中释放了同位素轻流体。以透闪岩为主的片岩和滑石白云岩比滑石岩和蛇纹岩的CaO含量高(- 0.25‰~ - 0.03‰),δ26Mg含量低(- 1.04‰~ - 0.18‰)。这些特征以及高的CaO/Al2O3和低的Rb/Sr比值表明,附近大理岩中存在低δ26Mg富碳酸盐流体,δ26Mg极低(低至- 2.38‰)。我们的研究结果表明,反长花岗岩脱水释放了大量富水流体,促进了大理岩中碳酸盐矿物的溶解。随后的碳酸盐交代作用有效地隔绝了含水含碳流体中的碳,将硅酸盐矿物转化为碳酸盐。这些新结果突出了msamuange岩石在俯冲带多阶段流体-岩石相互作用和碳循环中的重要作用,为地幔Mg同位素非均质性和壳幔相互作用提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Insights Into Subduction-Zone Fluid-Rock Interactions and Carbon Cycling From Magnesium Isotopes of Subducted Ophiolitic Mélanges in the Arabian-Nubian Shield

Insights Into Subduction-Zone Fluid-Rock Interactions and Carbon Cycling From Magnesium Isotopes of Subducted Ophiolitic Mélanges in the Arabian-Nubian Shield

Fluid-rock interactions play an important role in element mobilization, mass transfer, and formation of critical metals in subduction zones. However, tracking the multistage fluid-rock interactions within subduction channels remains elusive. Here we conducted bulk-rock major and trace element and magnesium (Mg) isotopic analyses on a suite of subducted ophiolitic mélange rocks from Wadi Al Barramiyah in the Arabian-Nubian Shield of the Eastern Desert (ED) of Egypt. The rock suite includes serpentinites, talc rocks, talc-dolomite rocks, tremolite-dominated schists, and marbles. Talc rocks are characterized by low MgO contents and high δ26MgDSM-3 values (0.03–0.13‰) relative to serpentinites (−0.18‰), indicating the release of isotopically light fluid during the metasomatic replacement of antigorite by talc. Tremolite-dominated schists and talc-dolomite rocks display higher CaO contents and lower δ26Mg (−0.25‰ to −0.03‰ and −1.04‰ to −0.18‰, respectively) than those of talc rocks and serpentinites. These signatures, along with high CaO/Al2O3 and low Rb/Sr ratios, indicate infiltration of low-δ26Mg carbonate-rich fluids, supported by extremely low δ26Mg (down to −2.38‰) observed in nearby marbles. Our findings demonstrate that antigorite dehydration liberates substantial numbers of H2O-rich fluids, facilitating the dissolution of carbonate minerals in marbles. Subsequent carbonate metasomatism effectively sequesters carbon from aqueous carbon-bearing fluids, transforming silicate minerals into carbonates. These new results highlight the significant role of mélange rocks in the multistage fluid-rock interactions and carbon recycling in subduction zones, offering valuable insights into mantle Mg isotopic heterogeneity and crust-mantle interactions.

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来源期刊
Geochemistry Geophysics Geosystems
Geochemistry Geophysics Geosystems 地学-地球化学与地球物理
CiteScore
5.90
自引率
11.40%
发文量
252
审稿时长
1 months
期刊介绍: Geochemistry, Geophysics, Geosystems (G3) publishes research papers on Earth and planetary processes with a focus on understanding the Earth as a system. Observational, experimental, and theoretical investigations of the solid Earth, hydrosphere, atmosphere, biosphere, and solar system at all spatial and temporal scales are welcome. Articles should be of broad interest, and interdisciplinary approaches are encouraged. Areas of interest for this peer-reviewed journal include, but are not limited to: The physics and chemistry of the Earth, including its structure, composition, physical properties, dynamics, and evolution Principles and applications of geochemical proxies to studies of Earth history The physical properties, composition, and temporal evolution of the Earth''s major reservoirs and the coupling between them The dynamics of geochemical and biogeochemical cycles at all spatial and temporal scales Physical and cosmochemical constraints on the composition, origin, and evolution of the Earth and other terrestrial planets The chemistry and physics of solar system materials that are relevant to the formation, evolution, and current state of the Earth and the planets Advances in modeling, observation, and experimentation that are of widespread interest in the geosciences.
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