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Ahmadi, Zahra, Nieto, Fernando, Khormali, Farhad, Velilla, Nicolás, Einali, Morteza, Maghsoudi, Abbas, Amini, Arash (2025) Hydrothermal Retrogradation from Chlorite to Tosudite: Effect on the Optical Properties. Minerals, 15 (3). doi:10.3390/min15030326

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Reference TypeJournal (article/letter/editorial)
TitleHydrothermal Retrogradation from Chlorite to Tosudite: Effect on the Optical Properties
JournalMinerals
AuthorsAhmadi, ZahraAuthor
Nieto, FernandoAuthor
Khormali, FarhadAuthor
Velilla, NicolásAuthor
Einali, MortezaAuthor
Maghsoudi, AbbasAuthor
Amini, ArashAuthor
Year2025Volume<   15   >
Issue<   3   >
URL
DOIdoi:10.3390/min15030326Search in ResearchGate
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Mindat Ref. ID18174422Long-form Identifiermindat:1:5:18174422:3
GUID0
Full ReferenceAhmadi, Zahra, Nieto, Fernando, Khormali, Farhad, Velilla, Nicolás, Einali, Morteza, Maghsoudi, Abbas, Amini, Arash (2025) Hydrothermal Retrogradation from Chlorite to Tosudite: Effect on the Optical Properties. Minerals, 15 (3). doi:10.3390/min15030326
Plain TextAhmadi, Zahra, Nieto, Fernando, Khormali, Farhad, Velilla, Nicolás, Einali, Morteza, Maghsoudi, Abbas, Amini, Arash (2025) Hydrothermal Retrogradation from Chlorite to Tosudite: Effect on the Optical Properties. Minerals, 15 (3). doi:10.3390/min15030326
InLink this record to the correct parent record (if possible)
Abstract/NotesIn the argillic alteration zone of the SinAbad area of the Urumieh–Dokhtar magmatic belt (Iran), Mg-rich, Fe-poor chlorites, which crystallised at temperatures between 160 °C and 260 °C, were affected by extensive alteration to smectite mixed-layering at the micro- and nano-scales during the retrograde evolution of the hydrothermal system. Chlorites retain their usual optical aspect and properties, except for the index of refraction perpendicular to the (001) layers, which becomes lower than those parallel to the layers, producing an increase in birefringence and change in the optic and elongation signs, in comparison to the ordinary ones for Mg chlorites. Scanning electron microscopy (SEM) maps and compositions, and electron microprobe (EMP) analyses indicate minor but ubiquitous Ca (and K) content. X-ray diffraction (XRD) of chloritic concentrates allowed the identification of chlorite and tosudite. High-resolution transmission electron microscopy (HRTEM) images show major 14 Å (chlorite), with the frequent presence of 24 Å (contracted tosudite) individual layers and small packets up to five layers thick. Lateral change from 14 Å to 24 Å individual layers has been visualised. High-resolution chemical maps obtained in high-angle annular dark-field (HAADF) mode confirm the existence of areas preferentially dominated by chlorite or tosudite. The overall chemical compositions obtained by SEM, EMP, and transmission electron microscopy (TEM) align from the chlorite to the tosudite end-members, whose pure compositions could be determined from extreme analytical electron microscopy (AEM) analyses. The described intergrowths and interlayers, under the optical resolution, could provide a clue to explain changes in the normal optic properties of chlorite, which are mentioned, but not explained, in the literature.

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LocalityCitation Details
SinAbad area, Jiroft County, Kerman Province, Iran

Mineral Occurrences

LocalityMineral(s)
SinAbad area, Jiroft County, Kerman Province, Iran Albite, Biotite, Calcite, Calcium Amphibole Subgroup, Chlorite Group, Epidote, Feldspar Group, Granite, Hornblende, Illite, K Feldspar, Magnetite, Muscovite, Plagioclase, Porphyry, Quartz, Rutile, Sericite, Smectite Group, Tosudite


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To cite: Ralph, J., Von Bargen, D., Martynov, P., Zhang, J., Que, X., Prabhu, A., Morrison, S. M., Li, W., Chen, W., & Ma, X. (2025). Mindat.org: The open access mineralogy database to accelerate data-intensive geoscience research. American Mineralogist, 110(6), 833–844. doi:10.2138/am-2024-9486.
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