University of Rostock, Institute for Land Use, 1851 Rostock, Germany.
Sci Total Environ. 2010 Sep 15;408(20):4910-5. doi: 10.1016/j.scitotenv.2010.07.020. Epub 2010 Jul 24.
Although dissolved organic matter (DOM) is an important component of C- and N-fluxes in the environment, its structural composition is still poorly understood due to methodological challenges. We explored the potential of combining pyrolysis-field ionization mass spectrometry (Py-FIMS) and N X-ray absorption near edge structure (N-XANES) spectroscopy to study the molecular-chemical composition of lyophilized bulk soil solution samples that were not subjected to pretreatment like dialysis. Soil leachates were collected at 90 cm and 220 cm depth from an arable and a fallow site. Py-FIMS spectra reflected differences in DOM composition related to land use and sampling depth. Land use effects were expressed in higher abundances of carbohydrates and peptides at the arable than at the fallow site. The relative proportions of carbohydrates decreased and the proportions of lignin-derived compounds increased with depth, indicating a relative enrichment to more stabilized DOM along the flow path. Nitrogen XANES spectra were dominated by the signal of NO(3)-salts but also indicated the presence of organic, non-amidic N as found in imidazoles, pyrazoles, purines and/or nitrile-N, whereas N-compounds like pyridines, pyrroles, quinoline and indole were detected by Py-FIMS. Thus, the combined application of Py-FIMS and N-XANES yielded complementary information regarding the molecular-chemical composition of DOM. Future applications of these techniques may benefit from selectively analyzing soil solution samples with lower nitrate concentrations collected in early spring.
尽管溶解有机物质(DOM)是环境中 C 和 N 通量的重要组成部分,但由于方法学上的挑战,其结构组成仍知之甚少。我们探索了将热解场离解质谱(Py-FIMS)和 N 射线吸收近边结构(N-XANES)光谱相结合的潜力,以研究未经预处理(如透析)的冻干土壤溶液样品的分子化学组成。从耕地和休耕地采集了 90 cm 和 220 cm 深处的土壤淋出液。Py-FIMS 光谱反映了与土地利用和采样深度相关的 DOM 组成差异。耕地的 DOM 中碳水化合物和肽的丰度高于休耕地,表现出土地利用的影响。碳水化合物的相对比例下降,木质素衍生化合物的比例随着深度的增加而增加,这表明在流径中相对富集到更稳定的 DOM。氮 XANES 光谱主要由 NO(3)-盐的信号主导,但也表明存在有机非酰胺态 N,如咪唑、吡唑、嘌呤和/或腈-N,而 Py-FIMS 检测到吡啶、吡咯、喹啉和吲哚等 N 化合物。因此,Py-FIMS 和 N-XANES 的联合应用提供了有关 DOM 分子化学组成的互补信息。未来这些技术的应用可能受益于选择性分析早春采集的硝酸盐浓度较低的土壤溶液样品。