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Texture, porosity and diagenesis - a Marcellus Shale case study

dc.contributor.authorDelle Piane, Cen_AU
dc.contributor.authorLuzin, Ven_AU
dc.contributor.authorBourdet, Jen_AU
dc.contributor.authorDewhurst, DNen_AU
dc.contributor.authorRaven, Men_AU
dc.date.accessioned2026-05-08T04:57:09Zen_AU
dc.date.issued2016-05-02en_AU
dc.date.statistics2026-05-08en_AU
dc.description.abstractMarcellus Shale samples were used to quantify mineralogy and texture, evaluate the abundance and thermal maturity of organic matter, describe porosity and interpret the diagenetic history of this post-mature shale-gas reservoir. A multidisciplinary approach was adopted comprising X-ray diffraction to quantify the mineralogy, neutron diffraction to quantify the texture of the rock-forming minerals, electron microscopy to visualise porosity in the shale and distinguish between detrital and diagenetic phases and Raman spectroscopy to quantify thermal transformation in the organic matter. Results indicate that the samples are composed of quartz, illite, calcite, chlorite, albite, and pyrite with a total organic content ranging between 3 and 7 wt %. There is a significant crystallographic preferred orientation in the diagenetic illite and calcite that can be well modelled assuming transverse isotropy; quartz shows random texture. Nano sized pores are observed within the organic matter as well as at mineral junctions. Raman geothermometry indicate that the sediment witnessed maximum temperatures of approximately 250°C commensurate with the high optical reflectance (R0 > 4.5%) reported on the same material. This and the analysis of illite cristallinity indicate that the Marcellus Shale has been exposed to prehnite-pumpellyite metamorphic facies and a maximum burial depth of 6-8 km. © EAGE Publications BVen_AU
dc.identifier.citationDelle Piane, D., Luzin, V., Bourdet, J., Dewhurst, D. N., & Raven, M. (2016). Texture, porosity and diagenesis - a Marcellus Shale case study. Paper presented to the Fifth EAGE Shale Workshop, May 2-4, 2016, Catania, Italy. Retrieved from https://www.earthdoc.org/content/papers/10.3997/2214-4609.201600395en_AU
dc.identifier.conferenceenddate2016-05-04en_AU
dc.identifier.conferencename5th EAGE Shale Workshop: Quantifying Risks and Potentialen_AU
dc.identifier.conferenceplaceCatania, Italyen_AU
dc.identifier.conferencestartdate2016-05-02en_AU
dc.identifier.pagination1-5en_AU
dc.identifier.urihttps://apo.ansto.gov.au/handle/10238/17214en_AU
dc.language.isoenen_AU
dc.publisherEuropean Association of Geoscientists & Engineersen_AU
dc.relation.urihttps://www.earthdoc.org/content/papers/10.3997/2214-4609.201600395en_AU
dc.subjectTextureen_AU
dc.subjectPorosityen_AU
dc.subjectDiagenesisen_AU
dc.subjectShalesen_AU
dc.subjectMineralogyen_AU
dc.subjectX-ray diffractionen_AU
dc.subjectReservoir Rocken_AU
dc.subjectElectron microscopyen_AU
dc.subjectCalciteen_AU
dc.subjectIlliteen_AU
dc.subjectQuartzen_AU
dc.titleTexture, porosity and diagenesis - a Marcellus Shale case studyen_AU
dc.typeConference Paperen_AU

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