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高效液相色谱分离去除 C 链烯酮海洋表面温度测量中的偏倚。

Removal of bias in C alkenone-based sea surface temperature measurements by high-performance liquid chromatography fractionation.

机构信息

Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDÆA), CSIC, Jordi Girona, 18, 08034, Barcelona, Catalonia, Spain.

Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDÆA), CSIC, Jordi Girona, 18, 08034, Barcelona, Catalonia, Spain.

出版信息

J Chromatogr A. 2018 Sep 14;1567:90-98. doi: 10.1016/j.chroma.2018.07.004. Epub 2018 Jul 3.

DOI:10.1016/j.chroma.2018.07.004
PMID:30007794
Abstract

Sea surface temperature determinations based on marine sedimentary C alkenone distributions have provided a wealth of data for paleoclimatic studies, including those performed at high resolution. The success of this approach results from several characteristics of alkenone compounds, e.g. their geochemical properties (such as unequivocal synthesis by certain widespread haptophyte algae, plus chemical stability/preservation of the original alkenone distributions during sedimentation), and their analytical properties (such as fast clean up procedures using alkaline hydrolysis of sediment extracts, followed by robust instrumental methods allowing large scale sample processing). Here we show that, in sediments under the influence of continental inputs, coelution of these compounds with cholest-5-enyl 3β-undecenyl ether and 24-methylcholesta-5,22-dienyl 3β-undecenyl ether deviate the SST measurements despite alkaline hydrolysis. Here, we report a new high performance liquid chromatrography fractionation method which eliminates these interfering compounds and gathers all the alkenones into a single fraction. These fractions can then be analysed by gas chromatography as in the initial approach, providing large amounts of data as required in high resolution studies.

摘要

基于海洋沉积物 C 烯酮分布的海表温度测定为古气候研究提供了丰富的数据,包括高分辨率研究。这种方法的成功源于烯酮化合物的几个特征,例如它们的地球化学性质(如某些广泛分布的甲藻的明确合成,以及在沉积过程中原始烯酮分布的化学稳定性/保存),以及它们的分析性质(如使用碱性水解沉积物提取物的快速清洁程序,然后采用强大的仪器方法允许大规模处理样品)。在这里,我们表明,在受大陆输入影响的沉积物中,尽管进行了碱性水解,这些化合物与胆甾-5-烯基 3β-十一烯基醚和 24-甲基胆甾-5,22-二烯基 3β-十一烯基醚的共洗脱会偏离 SST 测量值。在这里,我们报告了一种新的高效液相色谱分级方法,该方法可以消除这些干扰化合物,并将所有烯酮聚集到单个馏分中。然后可以像最初的方法一样通过气相色谱分析这些馏分,为高分辨率研究提供大量所需的数据。

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