首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Investigating molecular changes in organic matter composition in two Holocene lake-sediment records from central Sweden using pyrolysis-GC/MS
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Investigating molecular changes in organic matter composition in two Holocene lake-sediment records from central Sweden using pyrolysis-GC/MS

机译:使用热解 - GC / MS调查来自瑞典中部的两个全茂湖泥沙沉积物中有机质组合物的分子变化

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摘要

Organic matter (OM) is a key component of lake sediments, affecting carbon, nutrient, and trace metal cycling at local and global scales. Yet little is known about long-term (millennial) changes in OM composition due to the inherent chemical complexity arising from multiple OM sources and from secondary transformations. In this study we explore how the molecular composition of OM changes throughout the Holocene in two adjacent boreal lakes in central Sweden and compare molecular-level information with conventional OM variables, including total carbon, total nitrogen, C:N ratios, δ~(13)C, and δ~(15)N. To characterize the molecular OM composition, we employed a new method based on pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS), which yields semiquantitative data on >100 organic compounds of different origin and degradation status. We identify large changes in OM composition after deglaciation (circa 8500 ± 500 B.C.), associated with early landscape development, and during the most recent 40-50 years, driven by degradation processes. With molecular-level information we can also distinguish between natural landscape development and human catchment disturbance during the last 1700 years. Our study demonstrates that characterization of the molecular OM composition by the high-throughput Py-GC/MS method is an efficient complement to conventional OM variables for identification and understanding of past OM dynamics in lake-sediment records. Holocene changes observed for pyrolytic compounds and compound classes known for having different reactivity indicate the need for further paleo-reconstruction of the molecular OM composition to better understand both past and future OM dynamics and associated environmental changes.
机译:有机物(OM)是湖泊沉积物的关键成分,影响局部和全球鳞片的碳,营养素和痕量金属循环。然而,由于来自多个OM源产生的固有的化学复杂性和二次转换,OM组成中的长期(千禧一)变化很少。在这项研究中,我们探讨了在瑞典中部两个相邻的北方湖泊中整个全新世的OM变化的分子组成,并将分子水平信息与常规OM变量进行比较,包括总碳,总氮,C:n比率,δ〜(13 )C,δ〜(15)n。为了表征分子OM组合物,我们采用了一种基于热解 - 气相色谱/质谱(PY-GC / MS)的新方法,其产生了关于不同来源的100个有机化合物和降解状态的半定量数据。我们在与早期景观开发相关联的情况(大约8500±500 b.C.)之后识别OM组成的大变化,并且在最近的40 - 50年中,由退化过程驱动。随着分子级信息,我们还可以区分在过去1700年期间的自然景观发展和人类流动障碍。我们的研究表明,通过高通量PY-GC / MS方法表征分子OM组成是对常规OM变量的有效补充,用于识别和理解湖泊沉积物记录中的过去的OM动态。用于热解化合物和具有不同反应性的化合物类别观察到的全茂性变化表明需要进一步重建分子OM组成,以更好地了解过去和未来的OM动态和相关的环境变化。

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