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◆ Chemical Geology2026-03-04· Geology

Unmixing fluid histories in polymineralic fault rocks using isotopic evolution and the PolyFrac tool: a case study from Lemnos Island, Greece

Vincenzo Moretto, Luigi R. Berio, Luigi Dallai, Giulio Viola, Fabrizio Balsamo, Mattia Pizzati, Georg Grathoff, Laurence N. Warr, Ruikai Xie, Luca Aldega

原始摘要(英文原文)· Original abstract
This study investigates the evolution of the isotopic composition of fluids in equilibrium with polymineralic fault rocks from the Kornos-Aghios Ioannis and Partenomythos fault zones on Lemnos Island (North Aegean Sea, Greece). Using a multi-method approach by combining stable isotope analysis (δD, δ 18 O), K-Ar geochronology on fault rocks, and X-ray diffraction of distinct grain-size fractions (from <0.1 to 10 μm) separated from clay-rich gouges, this study examines grain-size dependent isotopic fluid signatures preserved in clay-rich gouges. Coarse fractions record equilibrium water compositions with δD w between −96.5‰ and − 61.6‰ and δ 18 O w from −2.5‰ to 4.0‰, whereas fine fractions yield increased δD w (from −54.6‰ to −45.4‰) and δ 18 O w (2.0‰ to 3.7‰) values, approaching modern meteoric water signatures. These trends reflect progressive fluid-rock interaction within the fault zones, initially involving hot hydrothermal fluids ( T > 130 °C) in Aquitanian-Burdigalian times followed by subsequent re-equilibration at shallower crustal levels with meteoric waters (~60–65 °C). Authigenic illite-smectite in the <0.1 μm fraction of one fault gouge yields a ~ 16 Ma K-Ar age, marking the latest episode of recorded faulting and meteoric fluid infiltration. To resolve the complex isotopic signals arising from polymineralic clay-rich fault rocks, PolyFrac was developed as a quantitative spreadsheet-based tool. It integrates hydrogen and oxygen isotope data, X-ray diffraction-derived detrital and authigenic mineral proportions, and fluid temperature estimates to reconstruct fluid histories in polymineralic systems. • Fluid isotopic signatures can be constrained from polymineralic fault rocks. • Minerals of different grain-sizes are not always in isotopic equilibrium. • Different grain-size fractions can record fluid mixing and multiple fluid sources. • PolyFrac allows modelling of fluid isotopic evolution.
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Unmixing fluid histories in polymineralic fault rocks using isotopic evolution and the PolyFrac tool: a case study from Lemnos Island, Greece — 科研速览 Science Skim