(Table S1) Qualitative and semi-quantitative abundance of magnetic particles in Paleocene-Eocene sediments

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Main Authors: Kopp, Robert E, Schumann, Dirk, Raub, Timothy, Powars, David S, Godfrey, Linda V, Swanson-Hysell, Nicholas L, Maloof, Adam C, Vali, Hojatollah
Format: Dataset Open Access
Language:en
Published: PANGAEA 2014
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author Kopp, Robert E
Schumann, Dirk
Raub, Timothy
Powars, David S
Godfrey, Linda V
Swanson-Hysell, Nicholas L
Maloof, Adam C
Vali, Hojatollah
author_facet Kopp, Robert E
Schumann, Dirk
Raub, Timothy
Powars, David S
Godfrey, Linda V
Swanson-Hysell, Nicholas L
Maloof, Adam C
Vali, Hojatollah
collection Datos científicos de ciencias marinas y ambientales
contents On the mid-Atlantic Coastal Plain of the United States, Paleocene sands and silts are replaced during the Paleocene-Eocene Thermal Maximum (PETM) by the kaolinite-rich Marlboro Clay. The clay preserves abundant magnetite produced by magnetotactic bacteria and novel, presumptively eukaryotic, iron-biomineralizing microorganisms. Using ferromagnetic resonance spectroscopy and electron microscopy, we map the magnetofossil distribution in the context of stratigraphy and carbon isotope data and identify three magnetic facies in the clay: one characterized by a mix of detrital particles and magnetofossils, a second with a higher magnetofossil-to-detrital ratio, and a third with only transient magnetofossils. The distribution of these facies suggests that suboxic conditions promoting magnetofossil production and preservation occurred throughout inner middle neritic sediments of the Salisbury Embayment but extended only transiently to outer neritic sediments and the flanks of the embayment. Such a distribution is consistent with the development of a system resembling a modern tropical river-dominated shelf.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_831670
institution PANGAEA
language en
publishDate 2014
publisher PANGAEA
record_format pangaea
spellingShingle (Table S1) Qualitative and semi-quantitative abundance of magnetic particles in Paleocene-Eocene sediments
Kopp, Robert E
Schumann, Dirk
Raub, Timothy
Powars, David S
Godfrey, Linda V
Swanson-Hysell, Nicholas L
Maloof, Adam C
Vali, Hojatollah
-; Altitude; Ancora; Busch_Gardens; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Event label; Leg174AX; Lithologic unit/sequence; Magnetite; New Jersey; North American East Coast; Ocean Drilling Program; ODP; Randall_Farm; Sea_Girt; Surprise_Hill
On the mid-Atlantic Coastal Plain of the United States, Paleocene sands and silts are replaced during the Paleocene-Eocene Thermal Maximum (PETM) by the kaolinite-rich Marlboro Clay. The clay preserves abundant magnetite produced by magnetotactic bacteria and novel, presumptively eukaryotic, iron-biomineralizing microorganisms. Using ferromagnetic resonance spectroscopy and electron microscopy, we map the magnetofossil distribution in the context of stratigraphy and carbon isotope data and identify three magnetic facies in the clay: one characterized by a mix of detrital particles and magnetofossils, a second with a higher magnetofossil-to-detrital ratio, and a third with only transient magnetofossils. The distribution of these facies suggests that suboxic conditions promoting magnetofossil production and preservation occurred throughout inner middle neritic sediments of the Salisbury Embayment but extended only transiently to outer neritic sediments and the flanks of the embayment. Such a distribution is consistent with the development of a system resembling a modern tropical river-dominated shelf.
title (Table S1) Qualitative and semi-quantitative abundance of magnetic particles in Paleocene-Eocene sediments
topic -; Altitude; Ancora; Busch_Gardens; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Event label; Leg174AX; Lithologic unit/sequence; Magnetite; New Jersey; North American East Coast; Ocean Drilling Program; ODP; Randall_Farm; Sea_Girt; Surprise_Hill
url https://doi.org/10.1594/PANGAEA.831670