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Coupling δ2H and δ18O biomarker results yields information on relative humidity and isotopic composition of precipitation ? a climate transect validation study

机译:结合δ2H和δ18O生物标志物的结果可得出有关相对湿度和降水同位素组成的信息?气候横断面验证研究

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摘要

The hydrogen isotopic composition (δ 2H) of leaf waxes, especially of n-alkanes (δ 2Hn−alkanes), is increasingly used for paleohydrological and paleoclimate reconstructions. However, it is challenging to disentangle past changes in the isotopic composition of precipitation and changes in evapotranspirative enrichment of leaf water, which are both recorded in leaf wax δ 2H values. In order to overcome this limitation, Zech M. et al. (2013) proposed a coupled δ 2Hn−alkane–δ 18Osugar biomarker approach. This coupled approach allows for calculating (i) biomarker-based “reconstructed” δ 2H/δ18O values of leaf water (δ 2H/δ18Oleaf water), (ii) biomarker-based reconstructed deuterium excess (dexcess) of leaf water, which mainly reflects evapotranspirative enrichment and which can be used to reconstruct relative air humidity (RH) and (iii) biomarker-based reconstructed δ 2H/δ18Oprecipitation values. Here we present a climate transect validation study by coupling new results from δ 2H analyses of n-alkanes and fatty acids in topsoils along a climate transect in Argentina with previously measured δ 18O results obtained for plantderived sugars. Accordingly, both the reconstructed RH and δ 2H/δ18Oprecipitation values correlate highly significantly with actual RH and δ 2H/δ18Oprecipitation values. We conclude that compared to single δ 2Hn−alkane or δ 18Osugar records, the proposed coupled δ 2Hn−alkane–δ 18Osugar biomarker approach will allow more robust δ 2H/δ18Oprecipitation reconstructions in future paleoclimate research. Additionally, the proposed coupled δ 2Hn−alkane–δ 18Osugar biomarker approach allows for the establishment of a “paleohygrometer”, more specifically, the reconstruction of mean summer daytime RH changes/history
机译:叶蜡,尤其是正构烷烃(δ2Hn-烷烃)的氢同位素组成(δ2H),越来越多地用于古水文和古气候重建。然而,要想弄清过去的同位素组成变化和叶水蒸发蒸腾富集的变化,这都是记录在叶蜡δ2H值中的挑战。为了克服该限制,Zech M.等人,J.Med.Chem。,2001,44,2257。 (2013)提出了一种耦合的δ2Hn-烷烃-δ18O糖生物标志物方法。这种耦合的方法允许计算(i)基于生物标记物的“重建的”叶水δ2H /δ18O值(δ2H /δ18叶水),(ii)基于生物标记物的重建的氘水过量(多余),主要反映蒸发蒸腾富集,可用于重建相对空气湿度(RH)和(iii)基于生物标记物的重建δ2H /δ18O沉淀值。在这里,我们通过对阿根廷沿气候样带的表土中正构烷烃和脂肪酸的δ2H分析的新结果与先前测得的源自植物糖的δ18O结果相结合,提出了气候样章验证研究。因此,重构的RH和δ2H /δ18O沉淀值均与实际RH和δ2H /δ18O沉淀值高度相关。我们得出的结论是,与单个δ2Hn-烷烃或δ18Osugar记录相比,建议的δ2Hn-烷烃-δ18Osugar偶联生物标志物方法将在未来的古气候研究中提供更可靠的δ2H /δ18O沉淀重建。此外,提出的耦合的δ2Hn-烷烃-δ18O糖生物标志物方法可以建立“古湿度计”,更具体地说,可以重建夏季夏季平均RH变化/历史

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