Organic matter and biomarker data from Diepkloof Rock Shelter, South Africa

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Autori principali: Collins, James A, Carr, Andrew S, Schefuß, Enno, Boom, Arnoud, Sealy, Judith
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2017
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author Collins, James A
Carr, Andrew S
Schefuß, Enno
Boom, Arnoud
Sealy, Judith
author_facet Collins, James A
Carr, Andrew S
Schefuß, Enno
Boom, Arnoud
Sealy, Judith
collection Datos científicos de ciencias marinas y ambientales
contents Diepkloof Rock Shelter (DRS) represents a site of major interest for reconstructing early human behaviours during the Middle Stone Age (MSA). Rock shelters such as DRS also potentially preserve information concerning the environmental context for such behaviours. In this respect the organic matter composition of rock shelter sediments has rarely been investigated in detail, particularly at the molecular level. Here, we used pyrolysis-gas chromatography/mass spectrometry (py-GC/MS) to systematically assess the organic matter composition of bulk sediments within the MSA and Later Stone Age (LSA) sequence at DRS. From this we sought to gain insights into site usage, taphonomy and burning practices. Additionally, we analysed the chain length distribution of leaf-wax n-alkanes as well as their hydrogen and carbon isotopic compositions (dDwax and d13Cwax) to investigate their potential as hydroclimate and vegetation indicators. This constitutes the first leaf-wax isotopic data in a terrestrial context of this antiquity in South Africa. Py-GC/MS shows a dichotomy between stratigraphic units (SUs) of high organic matter content, producing a range of pyrolysis products, including homologous series of long chain n-alkene/n-alkane doublets and alkyl-nitriles, and SUs of low organic matter content, dominated by aromatic, heterocyclic N and polycyclic aromatic hydrocarbon (PAH) pyrolysis products; typical molecular burning products. Several SUs of the Intermediate Howiesons Poort interval exhibit the latter composition, consistent with micromorphological evidence. d13Cwax remains stable throughout the MSA, but leaf-wax n-alkane chain length and dDwax increase during the Late Howiesons Poort interval. Comparison with such patterns in modern plants in the region suggests this represents a shift towards the input of more arid-adapted vegetation into the shelter, driven either by aridification at the site locale or a change in selection practices. Our results suggest that these techniques have further potential in southern Africa and globally at sites where organic matter preservation is high.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_885070
institution PANGAEA
language en
publishDate 2017
publisher PANGAEA
record_format pangaea
spellingShingle Organic matter and biomarker data from Diepkloof Rock Shelter, South Africa
Collins, James A
Carr, Andrew S
Schefuß, Enno
Boom, Arnoud
Sealy, Judith
AWI_Paleo; Center for Marine Environmental Sciences; MARUM; Paleoenvironmental Reconstructions from Marine Sediments @ AWI
Diepkloof Rock Shelter (DRS) represents a site of major interest for reconstructing early human behaviours during the Middle Stone Age (MSA). Rock shelters such as DRS also potentially preserve information concerning the environmental context for such behaviours. In this respect the organic matter composition of rock shelter sediments has rarely been investigated in detail, particularly at the molecular level. Here, we used pyrolysis-gas chromatography/mass spectrometry (py-GC/MS) to systematically assess the organic matter composition of bulk sediments within the MSA and Later Stone Age (LSA) sequence at DRS. From this we sought to gain insights into site usage, taphonomy and burning practices. Additionally, we analysed the chain length distribution of leaf-wax n-alkanes as well as their hydrogen and carbon isotopic compositions (dDwax and d13Cwax) to investigate their potential as hydroclimate and vegetation indicators. This constitutes the first leaf-wax isotopic data in a terrestrial context of this antiquity in South Africa. Py-GC/MS shows a dichotomy between stratigraphic units (SUs) of high organic matter content, producing a range of pyrolysis products, including homologous series of long chain n-alkene/n-alkane doublets and alkyl-nitriles, and SUs of low organic matter content, dominated by aromatic, heterocyclic N and polycyclic aromatic hydrocarbon (PAH) pyrolysis products; typical molecular burning products. Several SUs of the Intermediate Howiesons Poort interval exhibit the latter composition, consistent with micromorphological evidence. d13Cwax remains stable throughout the MSA, but leaf-wax n-alkane chain length and dDwax increase during the Late Howiesons Poort interval. Comparison with such patterns in modern plants in the region suggests this represents a shift towards the input of more arid-adapted vegetation into the shelter, driven either by aridification at the site locale or a change in selection practices. Our results suggest that these techniques have further potential in southern Africa and globally at sites where organic matter preservation is high.
title Organic matter and biomarker data from Diepkloof Rock Shelter, South Africa
topic AWI_Paleo; Center for Marine Environmental Sciences; MARUM; Paleoenvironmental Reconstructions from Marine Sediments @ AWI
url https://doi.org/10.1594/PANGAEA.885070