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在冷俯冲带形成15埃相,成为最膨胀的水合矿物。

Formation of the 15 Å phase as the most expanded hydrated mineral in cold subduction zone.

作者信息

Bang Yoonah, Kim Juhyeok, Choi Jinhyuk, Sim Heehyeon, Zhang Dongzhou, Jeon Tae-Yeol, Shin Tae Joo, Liermann Hanns-Peter, Kwon Kideok D, Lee Yongjae

机构信息

Department of Earth System Sciences, Yonsei University, Seoul, Republic of Korea.

Korea Atomic Energy Research Institute (KAERI), Daejeon, Republic of Korea.

出版信息

Nat Commun. 2025 Mar 7;16(1):2279. doi: 10.1038/s41467-025-56672-6.

Abstract

Talc, as an important class of clay minerals constituting subducting oceanic crust, has long been known to undergo interlayer expansion by ~6% to contain net ~13 wt.% water into the 'so-called' 10 Å phase. Although subduction fluid is mildly alkaline and includes various salts and other dissolved species, its effect on the stability of subducting minerals has not yet been considered. Here, we report that subducting talc, when exposed to alkaline salty water conditions, breaks down to form a super-hydrated 15 Å phase at ~3.0 GPa and ~350 °C, corresponding to a depth of ~90-95 km along a cold subduction geotherm. The 15 Å phase remains stable down to ~125 km depth, where it transforms into the previously known 10 Å phase. Our combined experimental and computational results show that the super-hydrated 15 Å phase contains net ~31 wt.% water through interlayer expansion by ~60%. Our work thus demonstrates mineral transformation under more realistic subduction environments, which calls for reevaluation of subduction-related geochemistry and seismicity as well as water transportation into the deep Earth.

摘要

滑石作为构成俯冲洋壳的一类重要粘土矿物,长期以来已知其层间会膨胀约6%,在所谓的10埃相中含有约13重量%的净含水量。尽管俯冲流体呈弱碱性,包含各种盐类和其他溶解物质,但其对俯冲矿物稳定性的影响尚未得到考虑。在此,我们报告称,当俯冲滑石暴露于碱性盐水条件下时,在约3.0吉帕和约350℃的条件下会分解形成一种超水合的15埃相,这相当于沿着冷俯冲地热梯度在约90 - 95千米的深度。这种15埃相在深度降至约125千米时仍保持稳定,在该深度它会转变为先前已知的10埃相。我们综合的实验和计算结果表明,这种超水合的15埃相通过约60%的层间膨胀含有约31重量%的净含水量。因此,我们的工作证明了在更现实的俯冲环境下的矿物转变,这需要重新评估与俯冲相关的地球化学和地震活动以及水向地球深部的输送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8e8/11889167/8e31cad9881b/41467_2025_56672_Fig1_HTML.jpg

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