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对一个西伯利亚冰芯的非目标筛选揭示了从工业化前到工业化时期有机气溶胶成分的变化。

Nontarget screening of a Siberian ice core reveals changes in the pre-industrial to industrial organic aerosol composition.

作者信息

Burgay François, Salionov Daniil, Singer Thomas, Eichler Anja, Brütsch Sabina, Jenk Theo M, Vogel Alexander L, Papina Tatyana, Bjelić Saša, Schwikowski Margit

机构信息

PSI Center for Energy and Environmental Sciences, Paul Scherrer Institute, 5232 Villigen, Switzerland.

Oeschger Centre for Climate Change Research, University of Bern, 3012, Bern, Switzerland.

出版信息

Sci Adv. 2025 Jan 24;11(4):eadr1923. doi: 10.1126/sciadv.adr1923.

Abstract

Glaciers serve as natural archives for reconstructing past changes of atmospheric aerosol concentration and composition. While most ice-core studies have focused on inorganic species, organic compounds, which can constitute up to 90% of the submicrometer aerosol mass, have been largely overlooked. To our knowledge, this study presents the first nontarget screening record of secondary organic aerosol species preserved in a Belukha ice core (Siberia, Russian Federation), ranging from the pre-industrial to the industrial period (1800-1980 CE). We identified a total of 398 molecules, primarily polar and low-volatile compounds. Since the 1950s, the atmospheric aerosol composition has changed, with the appearance of organic molecules, including nitrogen-containing compounds, deriving from enhanced atmospheric reactions with anthropogenic NO, or direct emissions. In addition, there was a significant increase in the oxygen-to-carbon ratio (+3%) and the average carbon oxidation state (+18%) of the detected molecules compared to the pre-industrial period, suggesting an increased oxidative capacity of the atmosphere.

摘要

冰川是重建过去大气气溶胶浓度和成分变化的天然档案。虽然大多数冰芯研究都集中在无机物种上,但有机化合物在亚微米气溶胶质量中所占比例可达90%,却在很大程度上被忽视了。据我们所知,本研究首次展示了保存在贝卢哈冰芯(俄罗斯联邦西伯利亚)中的二次有机气溶胶物种的非靶向筛查记录,时间跨度从前工业化时期到工业化时期(公元1800年至1980年)。我们总共鉴定出398种分子,主要是极性和低挥发性化合物。自20世纪50年代以来,大气气溶胶成分发生了变化,出现了包括含氮化合物在内的有机分子,这些分子源于与人为排放的一氧化氮增强的大气反应或直接排放。此外,与工业化前时期相比,检测到的分子的氧碳比显著增加(+3%),平均碳氧化态显著增加(+18%),这表明大气的氧化能力增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66b8/11758998/a10fb41929fd/sciadv.adr1923-f1.jpg

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