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The AAPG/Datapages Combined Publications Database

Journal of Sedimentary Research (SEPM)

Abstract


Journal of Sedimentary Research, Section A: Sedimentary Petrology and Processes
Vol. 66 (1996)No. 1. (January), Pages 155-162

The Role of Skeletal Microstructure During Selective Silicification of Brachiopods

Roberta L. Daley (*), Donald W. Boyd

ABSTRACT

Thin sections of partially silicified brachiopods from the Mississippian Lodgepole Limestone show authigenic silica in contact with original calcite microstructure. No void-filling quartz morphologies are present. Of the three types of biogenic microstructures represented in the taxonomically diverse material, fibrous structure was the most susceptible to Previous HitreplacementNext Hit, whereas laminar structure was the most resistant to silicification. This difference probably reflects the greater microporosity and reactive surface area of the fibrous structure. Skeletal microstructure was more important than valve thickness in determining extent of silicification, although there is a positive correlation between thickness and Previous HitreplacementNext Hit in any one taxon. The lack of a uniform silicification pattern a ong these monomineralic taxa of different microstructure indicates that skeletal factors exerted the most significant controls on brachiopod Previous HitreplacementNext Hit.

Microstructure-controlled Previous HitreplacementNext Hit typifies fibrous layers whereas laminar layers show microstructure-independent Previous HitreplacementNext Hit. Prismatic structure, characteristic of an inner Previous HitlayerNext Hit in spiriferide valves, shows the former mode of Previous HitreplacementNext Hit in some instances and the latter mode in others. In both cases, silicificafion is most complete adjacent to the overlying fibrous Previous HitlayerNext Hit. Microstructure-controlled Previous HitreplacementNext Hit commonly involves anhedral or subhedral megaquartz in contrast to the fibrous quartz morphology reported by several authors for silicified brachiopods from other regions. Microstructure-independent Previous HitreplacementNext Hit involves either spherulitic chalcedony or euhedral megaquartz. Both modes of Previous HitreplacementTop, that replicating microstructure and that crosscutting it, have been observed in different parts of a single valve.


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