RADIAXIAL FIBROUS CALCITES AS LOW-MAGNESIAN CALCITE CEMENT PRECIPITATED IN A MARINE-METEORIC MIXING ZONE

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dc.contributor.author Kim Y.
dc.contributor.author Lee Y.Il.
dc.date.accessioned 2022-02-14T01:54:14Z
dc.date.available 2022-02-14T01:54:14Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=5148818
dc.identifier.citation Sedimentology, 2003, 50, 4, 731-742
dc.identifier.issn 0037-0746
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/35298
dc.description.abstract Radiaxial fibrous calcite (RFC) has previously been interpreted as a marine or replacive cement. Study of the Dongjeom Formation (Early Ordovician), Korea, shows that RFC can form in marine-meteoric mixing zones as a low-magnesian calcite (LMC) cement. RFC in the shallow-marine Dongjeom Formation occurs in arenaceous limestones at the top of a transgressive facies overlying a regressive facies. It shows well-developed growth zonation, and lighter oxygen isotope values and more radiogenic strontium isotope ratios than those of Early Ordovician marine calcite. Such petrographic and chemical evidence indicates that the RFC was precipitated as a primary LMC cement in a marine and meteoric mixing zone. Owing to the unique environment of formation, the Dongjeom RFC is characterized by growth zonal fabric comprising alternating subzones, which may indicate precipitation from varying fluids. In addition, this study documents the importance of substrate for development of RFC. Early 'nucleation' for RFC occurred mainly on microcrystalline skeletal grains and internal sediments, whereas on homogeneously altered substrates, thin-coated banding structure developed, ultimately forming coarse crystalline spar. This suggests that microcrystalline substrates are preferred sites for nucleation of RFC.
dc.subject GROWTH ZONE
dc.subject LOW-MAGNESIAN CALCITE
dc.subject MIXING ZONE
dc.subject RADIAXIAL FIBROUS CALCITE
dc.subject SUBSTRATE
dc.subject Ordovician
dc.title RADIAXIAL FIBROUS CALCITES AS LOW-MAGNESIAN CALCITE CEMENT PRECIPITATED IN A MARINE-METEORIC MIXING ZONE
dc.type Статья
dc.subject.age Paleozoic::Ordovician
dc.subject.age Палеозой::Ордовикская ru


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