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Correlation between hydrogen isotope ratios of lipid biomarkers and sediment maturity
Authors:Jens Radke  Achim Bechtel  Wilhelm Püttmann  Dirk Sachse
Institution:1 Max-Planck Institut für Biogeochemie, Jena, Germany
2 Rheinische Friedrich-Wilhelms-Universität Bonn, Bonn, Germany
3 Friedrich Schiller Universität, Jena, Germany
4 J.-W. Goethe-Universität, Frankfurt, Germany
5 Universität zu Köln, Cologne, Germany
Abstract:We investigated the influence of thermal maturity on the hydrogen isotope ratios of sedimentary hydrocarbons to prove that the isotope ratio of hydrocarbons mirrors paleoclimate signatures. δD values from n-alkanes and acyclic isoprenoids of two sediment sections (Kupferschiefer KS], 258 Ma, and Posidonienschiefer PS], 184 Ma) with different maturation history were investigated. Both covered thermal maturity from 0.48 to 1.3 Rc (vitrinite reflectance and reflectance calculated from MPI1). Sediment burial up to 4500 m caused thermal maturation of organic matter in the KS horizon from the Early Zechstein basin of Poland, whereas contact metamorphic thermal maturation originated in the Early Toarcian PS (Posidonienschiefer) of the North German Vlotho Massif. The δD values of the extracted n-alkanes positively correlate with thermal maturity in the KS (y = 56‰ × MPI1x] − 160‰ VSMOW]) and in the PS (y = 104‰ × MPI1x] − 200‰ VSMOW]). The δD values of isoprenoids (i.e., pristane, phytane) were even more enriched with increasing maturity (y = 179‰ × MPI1x] − 341‰ VSMOW] in the KS; y = 300‰ × MPI1x] − 415‰ VSMOW] in PS).These results explain why isotope ratios of n-alkanes and isoprenoids in mature sediments are generally enriched in D and do not have the expected isotopic difference between n-alkanes and isoprenoids of ∼190‰. Moreover, the correlation between sediment maturity parameters and δD values suggests that after correction the δD values of n-alkanes can be used to reconstruct climate and environment in the geological past.
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