Lechtenfeld Oliver J, Kaesler Jan, Jennings Elaine K, Koch Boris P
Department of Environmental Analytical Chemistry, Research Group BioGeoOmics, Helmholtz Centre for Environmental Research - UFZ, Permoserstraße 15, 04318 Leipzig, Germany.
ProVIS-Centre for Chemical Microscopy, Helmholtz Centre for Environmental Research - UFZ, Permoserstraße 15, 04318 Leipzig, Germany.
Environ Sci Technol. 2024 Mar 12;58(10):4637-4647. doi: 10.1021/acs.est.3c07219. Epub 2024 Mar 1.
Marine dissolved organic matter (DOM) is an important component of the global carbon cycle, yet its intricate composition and the sea salt matrix pose major challenges for chemical analysis. We introduce a direct injection, reversed-phase liquid chromatography ultrahigh resolution mass spectrometry approach to analyze marine DOM without the need for solid-phase extraction. Effective separation of salt and DOM is achieved with a large chromatographic column and an extended isocratic aqueous step. Postcolumn dilution of the sample flow with buffer-free solvents and implementing a counter gradient reduced salt buildup in the ion source and resulted in excellent repeatability. With this method, over 5,500 unique molecular formulas were detected from just 5.5 nmol carbon in 100 μL of filtered Arctic Ocean seawater. We observed a highly linear detector response for variable sample carbon concentrations and a high robustness against the salt matrix. Compared to solid-phase extracted DOM, our direct injection method demonstrated superior sensitivity for heteroatom-containing DOM. The direct analysis of seawater offers fast and simple sample preparation and avoids fractionation introduced by extraction. The method facilitates studies in environments, where only minimal sample volume is available e.g. in marine sediment pore water, ice cores, or permafrost soil solution. The small volume requirement also supports higher spatial (e.g., in soils) or temporal sample resolution (e.g., in culture experiments). Chromatographic separation adds further chemical information to molecular formulas, enhancing our understanding of marine biogeochemistry, chemodiversity, and ecological processes.
海洋溶解有机物(DOM)是全球碳循环的重要组成部分,但其复杂的成分和海盐基质给化学分析带来了重大挑战。我们介绍了一种直接进样的反相液相色谱超高分辨率质谱方法,用于分析海洋DOM,无需固相萃取。使用大型色谱柱和延长的等度水相步骤可有效分离盐分和DOM。通过用无缓冲溶剂对样品流进行柱后稀释并实施反梯度,减少了离子源中的盐分积累,并实现了出色的重复性。使用这种方法,从100μL过滤后的北冰洋海水中仅5.5 nmol碳中就检测到了超过5500个独特的分子式。我们观察到对于可变的样品碳浓度,检测器响应呈高度线性,并且对盐基质具有很高的耐受性。与固相萃取的DOM相比,我们的直接进样方法对含杂原子的DOM显示出更高的灵敏度。海水的直接分析提供了快速简单的样品制备方法,避免了萃取引入的分馏。该方法便于在仅能获得极少样品体积的环境中进行研究,例如海洋沉积物孔隙水、冰芯或永久冻土土壤溶液。小体积要求还支持更高的空间分辨率(例如在土壤中)或时间分辨率(例如在培养实验中)。色谱分离为分子式增添了更多化学信息,增强了我们对海洋生物地球化学、化学多样性和生态过程的理解。