1995Scottish Journal of GeologyRequires access

Palaeomagnetic investigation of organic-rich lacustrine deposits, Middle Old Red Sandstone, Scotland

Lisa E. Plaster-Kirk, R. Douglas Elmore, Michael S. Engel, Scott W. Imbus

Open publisher page 14 citations

Abstract

Synopsis Organic-rich lacustrine carbonate laminites and mudstones in the Old Red Sandstone (middle Devonian) from the Orcadian Basin, Scotland, contain a magnetization that resides primarily in magnetite. After removal of a modern viscous magnetization at low demagnetization temperatures, a southerly and shallow Late Carboniferous component (before tilt: decl = 184°, incl = −5°, k = 36, α 95 = 7.3, n = 12 sites) is removed between 100 and 450°C in most specimens. A regional fold test on the shallowly dipping rocks is inconclusive, but suggests a post-folding time of remanence acquisition. A few specimens also contain a northerly and shallow component interpreted as the antipodal equivalent of the southerly and shallow direction. Rock-magnetic studies performed on representative specimens suggest that the remanent magnetic carrier is single domain, non-interacting magnetite. Partial anhysteretic remanent magnetization measurements indicate a wide range of grain sizes. The southerly component is interpreted as a Late Palaeozoic chemical remanent magnetization (CRM). The association between the CRM and the organic-rich source rocks suggests a remagnetization mechanism related to diagenesis of the hydrocarbons.

About this research paper

What this paper is about

Synopsis Organic-rich lacustrine carbonate laminites and mudstones in the Old Red Sandstone (middle Devonian) from the Orcadian Basin, Scotland, contain a magnetization that resides primarily in magnetite. After removal of a modern viscous magnetization at low demagnetization temperatures, a southerly and shallow Late Carboniferous component (before tilt: decl = 184°, incl = −5°, k = 36, α 95 = 7.3, n = 12 sites) is removed between 100 and 450°C in most specimens. A regional fold test on the shallowly dipping rocks is inconclusive, but suggests a post-folding time of remanence acquisition. A few specimens also contain a northerly and shallow component interpreted as the antipodal equivalent of the southerly and shallow direction. Rock-magnetic studies performed on representative specimens suggest that the remanent magnetic carrier is single domain, non-interacting magnetite. Partial anhysteretic remanent magnetization measurements indicate a wide range of grain sizes. The southerly component is interpreted as a Late Palaeozoic chemical remanent magnetization (CRM). The association between the CRM and the organic-rich source rocks suggests a remagnetization mechanism related to diagenesis of the hydrocarbons.

Why it matters

OpenAlex reports 14 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

Synopsis Organic-rich lacustrine carbonate laminites and mudstones in the Old Red Sandstone (middle Devonian) from the Orcadian Basin, Scotland, contain a magnetization that resides primarily in magnetite. After removal of a modern viscous magnetization at low demagnetization temperatures, a southerly and shallow Late Carboniferous component (before tilt: decl = 184°, incl = −5°, k = 36, α 95 = 7.3, n = 12 sites) is removed between 100 and 450°C in most specimens. A regional fold test on the shallowly dipping rocks is inconclusive, but suggests a post-folding time of remanence acquisition. A few specimens also contain a northerly and shallow component interpreted as the antipodal equivalent of the southerly and shallow direction. Rock-magnetic studies performed on representative specimens suggest that the remanent magnetic carrier is single domain, non-interacting magnetite. Partial anhysteretic remanent magnetization measurements indicate a wide range of grain sizes. The southerly component is interpreted as a Late Palaeozoic chemical remanent magnetization (CRM). The association between the CRM and the organic-rich source rocks suggests a remagnetization mechanism related to diagenesis of the hydrocarbons.

Key concepts: Geology, Red sandstone, Geochemistry, Paleontology, Red beds, Sedimentary rock

Related papers

Back to paper searchBrowse research topicsOriginal source
Palaeomagnetic investigation of organic-rich lacustrine deposits, Middle Old Red Sandstone, Scotland — Research Paper | ScholarLens