1985SedimentologyRequires access

Stylolite‐controlled layering in an homogeneous limestone: pseudo‐bedding produced by burial diagenesis

John F. Simpson

Open publisher page 39 citations

Abstract

ABSTRACT It is often assumed that layering in many shelf and platform limestones at weathered outcrop is always bedding: the layers always beds, and the surfaces always bedding planes. Recognition of bedding is fundamental to facies and basin analysis. Examination of part of the Lower Carboniferous High Tor Limestone of the Gower, South Wales, shows that a totally diagenetic layering (pseudo‐bedding) resembling, and parallel to primary depositional layering (true bedding), has been produced by the generation of parallel, more or less evenly‐spaced stylolite surfaces during burial diagenesis. These stylolite surfaces are picked out by weathering at outcrop and resemble bedding planes. Evidence that the stylolite surfaces do not mark original bedding planes includes: a cross‐cutting relationship of a stylolite surface to a primary bedding surface; lack of lithological change across, or sedimentary structures associated with, a stylolite surface; original bedding that is not coincident with stylolite surfaces and has not suffered pressure‐dissolution; and lack of sedimentological evidence that the layers defined by the stylolite surfaces are true primary depositional beds. The generation of parallel and more or less evenly‐spaced stylolite surfaces could be explained by a mathematical‐kinetic model based on the relationship between pressure‐dissolution, diffusion, and reprecipitation. Recognition of true bedding depends upon presence of lithological changes and/or sedimentary structures. It is suggested that pseudo‐bedding could be confused with true bedding in some open platform/shelf lagoon facies where lithological changes or sedimentary structures are scarce or absent.

About this research paper

What this paper is about

ABSTRACT It is often assumed that layering in many shelf and platform limestones at weathered outcrop is always bedding: the layers always beds, and the surfaces always bedding planes. Recognition of bedding is fundamental to facies and basin analysis. Examination of part of the Lower Carboniferous High Tor Limestone of the Gower, South Wales, shows that a totally diagenetic layering (pseudo‐bedding) resembling, and parallel to primary depositional layering (true bedding), has been produced by the generation of parallel, more or less evenly‐spaced stylolite surfaces during burial diagenesis. These stylolite surfaces are picked out by weathering at outcrop and resemble bedding planes. Evidence that the stylolite surfaces do not mark original bedding planes includes: a cross‐cutting relationship of a stylolite surface to a primary bedding surface; lack of lithological change across, or sedimentary structures associated with, a stylolite surface; original bedding that is not coincident with stylolite surfaces and has not suffered pressure‐dissolution; and lack of sedimentological evidence that the layers defined by the stylolite surfaces are true primary depositional beds. The generation of parallel and more or less evenly‐spaced stylolite surfaces could be explained by a mathematical‐kinetic model based on the relationship between pressure‐dissolution, diffusion, and reprecipitation. Recognition of true bedding depends upon presence of lithological changes and/or sedimentary structures. It is suggested that pseudo‐bedding could be confused with true bedding in some open platform/shelf lagoon facies where lithological changes or sedimentary structures are scarce or absent.

Why it matters

OpenAlex reports 39 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

ABSTRACT It is often assumed that layering in many shelf and platform limestones at weathered outcrop is always bedding: the layers always beds, and the surfaces always bedding planes. Recognition of bedding is fundamental to facies and basin analysis. Examination of part of the Lower Carboniferous High Tor Limestone of the Gower, South Wales, shows that a totally diagenetic layering (pseudo‐bedding) resembling, and parallel to primary depositional layering (true bedding), has been produced by the generation of parallel, more or less evenly‐spaced stylolite surfaces during burial diagenesis. These stylolite surfaces are picked out by weathering at outcrop and resemble bedding planes. Evidence that the stylolite surfaces do not mark original bedding planes includes: a cross‐cutting relationship of a stylolite surface to a primary bedding surface; lack of lithological change across, or sedimentary structures associated with, a stylolite surface; original bedding that is not coincident with stylolite surfaces and has not suffered pressure‐dissolution; and lack of sedimentological evidence that the layers defined by the stylolite surfaces are true primary depositional beds. The generation of parallel and more or less evenly‐spaced stylolite surfaces could be explained by a mathematical‐kinetic model based on the relationship between pressure‐dissolution, diffusion, and reprecipitation. Recognition of true bedding depends upon presence of lithological changes and/or sedimentary structures. It is suggested that pseudo‐bedding could be confused with true bedding in some open platform/shelf lagoon facies where lithological changes or sedimentary structures are scarce or absent.

Key concepts: Stylolite, Bedding, Geology, Diagenesis, Sedimentary depositional environment, Sedimentary rock, Facies, Outcrop

Related papers

Back to paper searchBrowse research topicsOriginal source
Stylolite‐controlled layering in an homogeneous limestone: pseudo‐bedding produced by burial diagenesis — Research Paper | ScholarLens