Molecular fingerprinting of wetland organic matter using pyrolysis-GC/MS: an example from the southern Cape coastline of South Africa

被引:0
作者
Andrew S. Carr
Arnoud Boom
Brian M. Chase
David L. Roberts
Zoë E. Roberts
机构
[1] University of Leicester,Department of Geography
[2] University of Bergen,Department of Archaeology, History, Cultural Studies and Religion
[3] Council for Geoscience,undefined
来源
Journal of Paleolimnology | 2010年 / 44卷
关键词
Py-GC/MS; Biomarker; Quaternary, Diagenesis; Lignin;
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学科分类号
摘要
Pyrolysis–gas chromatography mass spectrometry (py-GC/MS) allows the characterisation of complex macromolecular organic matter. In lakes and wetlands this can potentially be used to assess the preservation/diagenesis and provenance of sediment organic matter. It can complement palaeoenvironmental investigations utilising ‘bulk’ sediment variables such as total organic carbon (TOC) and TOC/total nitrogen ratios. We applied py-GC/MS analyses to a ~32,000-year sediment record from the southern Cape coastline of South Africa. We used the results to evaluate the sources and extent of degradation of organic matter in this semi-arid environment. Marked down-core changes in the relative abundance of multiple pyrolysis products were observed. Correspondence analysis revealed that the major driver of this down-core variability in OM composition was selective preservation/degradation. Samples comprising highly degraded OM are primarily confined to the lower half of the core, older than ~12,000 years, and are characterised by suites of low-molecular-weight aromatic pyrolysis products. Samples rich in organic matter, e.g. surface sediments, are characterised by products derived from fresh emergent or terrestrial vegetation, which include lignin monomers, plant-derived fatty acids and long-chain n-alkanes. Pyrolysates from the late glacial-early Holocene period, approximately mid-way down the core are characterised by distinct suites of long-chain n-alkene/n-alkane doublets, which may reflect the selective preservation of recalcitrant aliphatic macromolecules and/or enhanced inputs of the algal macromolecule algaenan/polymerised algal lipids. Increased TOC, lower δ13C and increased abundance of more labile lignin and fatty acid products at the same depths suggest this period was associated with increased lake primary productivity and enhanced inputs of terrestrial OM. TOC is the only ‘bulk’ parameter correlated with the correspondence analysis axes extracted from the py-GC/MS data. Distinct fluctuations in TOC/total nitrogen ratio are not explained by variation in organo-nitrogen pyrolysis products. Notwithstanding, the study suggests that py-GC/MS has potential to complement palaeolimnological investigations, particularly in regions such as southern Africa, where other paleoenvironmental proxy variables in sediments may be lacking or equivocal.
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页码:947 / 961
页数:14
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共 215 条
[1]  
Augris N(1998)Structure and origin of insoluble and non-hydrolyzable, aliphatic organic matter in a forest soil Org Geochem 28 119-124
[2]  
Balesdent J(1998)Chemical structure of algaenans from the fresh water algae Org Geochem 29 1453-1468
[3]  
Mariotti A(2003), Annu Rev Plant Biol 54 519-546
[4]  
Derenne S(2005) and Org Geochem 36 595-601
[5]  
Largeau C(2000)Lignin biosynthesis Org Geochem 31 421-438
[6]  
Blokker P(1984)Cutan, a common aliphatic biopolymer in cuticles of drought-adapted plants J Anal Appl Pyrolysis 6 19-29
[7]  
Schouten S(2005)Organic matter sources and early diagenetic degradation in a tropical peaty marsh (Tritrivakely, Madagascar). Implications for environmental reconstruction during the Sub-Atlantic Eur J Soil Biol 56 253-270
[8]  
Van den Ende H(2007)Quantitative comparison of the nitrogen-containing pyrolysis products and amino acid composition of soil humic acids Soil Biol Biochem 39 607-621
[9]  
de Leeuw JW(2006)Spatial and temporal variation in podzel organic matter studied by pyrolysis-gas chromatography/mass spectrometry and micromorphology Palaeogeogr Palaeoclimatol Palaeoecol 239 147-165
[10]  
Hatcher PG(2007)Selective depletion of organic matter in mottled podzol horizons Earth Sci Rev 84 103-138