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Preservation of Mesoproterozoic age deep burial fluid signatures,NW Scotland
Institution:1. Tomsk State University, prosp. Lenina 36, Tomsk, 634050, Russia;2. Area de Geodinamica Interna Departamento de Geologia, Universidad de Salamanca, 37008, Salamanca, Spain;3. Senckenberg Naturhistorische Sammlungen Dresden, Museum für Mineralogie und Geologie, Königsbrücker Landstraße 159, 01109 Dresden, Germany;1. State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences (Wuhan), Wuhan 430074, China;2. Institute for the Environment, Halsbury Building, Brunel University, Kingston Lane, Uxbridge, Middlesex UB8 3PH, UK;3. School of Life and Environmental Sciences, Deakin University, Melbourne Burwood Campus, Burwood, Victoria 3125, Australia
Abstract:Bedding-parallel fibrous calcite is a widely developed feature of mudrock successions, reflecting conditions of fluid overpressure (Stoneley, 1983, Parnell et al., 2000, Cobbold et al., 2013). The calcite preserves signatures of fluids developed during deep burial, including hydrocarbons. Most studied examples are of Phanerozoic (<540 Ma) age. This study reports well-preserved fibrous calcite in the Mesoproterozoic (~1180 Ma) Stoer Group, NW Scotland. The fibrous calcite occurs immediately above a unit of carbonaceous black shale. If hydrocarbons were generated from the black shales, they could have contributed to the development of fluid overpressure, but there is no direct evidence for this. The calcite reflects the original deep burial fluid, rather than a later overprint, because (i) it has a distribution related to stratigraphy, (ii) the bedding-parallel fibres have not been recrystallized, and (iii) later veining is at high angles to bedding. The calcite contains fluid inclusions, and has yielded stable isotope and entrained volatile data, indicating the potential to record diagenetic processes over one billion years ago.
Keywords:Diagenesis  Oxygenation  Mesoproterozoic  Precambrian  Calcite  Stoer Group  Scotland
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