Department of Chemistry, University of New Orleans, New Orleans, Louisiana 70148, USA.
National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310, USA.
Environ Sci Process Impacts. 2020 Dec 16;22(12):2313-2321. doi: 10.1039/d0em00390e.
Petroleum derived dissolved organic matter (DOMHC) samples were successfully cationized with barium, revealing many [M-H + Ba]+ peaks in both dark and simulated sunlight treatments. The DOMHC samples generated after light exposure exhibited a greater number of [M-H + Ba]+ peaks compared to the dark control. Multiple [M-H + Ba]+ peaks were investigated in the irradiated DOMHC using low resolution MS/MS in order to confirm the presence of diagnostic fragment ions, m/z 139, 155 and 196 in each treatment. Due to the high complexity of the bariated DOMHC mixture, Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS/MS) was employed to obtain molecular level information for both irradiated and dark treatments. The irradiated DOMHC treatments had more bariated oxygenated species over a wide range of H/C and O/C when compared to the dark controls. Doubly bariated species were also observed in DOMHC, which provides evidence that photochemistry transforms DOMHC to even more complex mixtures with multiple oxygenations per molecule. This study provides evidence that barium adduct mass spectrometry can be successfully applied to DOMHC screening for the presence of COOHs, both in dark samples and solar irradiated samples. Furthermore, direct evidence and molecular composition of aqueous phase crude oil photoproducts is provided by this technique.
成功地将钡离子化石油衍生的溶解有机物质 (DOMHC) 样品,在黑暗和模拟阳光处理中均显示出许多 [M-H + Ba]+峰。与黑暗对照相比,光照后产生的 DOMHC 样品显示出更多的 [M-H + Ba]+峰。使用低分辨 MS/MS 研究辐照 DOMHC 中的多个 [M-H + Ba]+峰,以确认每种处理中存在诊断碎片离子 m/z 139、155 和 196。由于钡化 DOMHC 混合物的高度复杂性,采用傅里叶变换离子回旋共振质谱 (FT-ICR MS/MS) 获得辐照和黑暗处理的分子水平信息。与黑暗对照相比,辐照 DOMHC 处理具有更多的含氧物种,涵盖了较宽的 H/C 和 O/C 范围。DOMHC 中也观察到了双钡化物种,这证明光化学将 DOMHC 转化为具有每个分子多个氧化的更复杂混合物。本研究证明钡加合物质谱法可成功应用于 DOMHC 筛选,以检测黑暗和太阳辐照样品中 COOHs 的存在。此外,该技术还提供了水相原油光产物的直接证据和分子组成。