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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Combining advanced NMR techniques with ultrahigh resolution mass spectrometry: A new strategy for molecular scale characterization of macromolecular components of soil and sedimentary organic matter
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Combining advanced NMR techniques with ultrahigh resolution mass spectrometry: A new strategy for molecular scale characterization of macromolecular components of soil and sedimentary organic matter

机译:将先进的NMR技术与超高分辨率质谱相结合:土壤和沉积有机物大分子组分的分子尺度表征的新策略

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摘要

Molecular level characterization of complex biopolymers in nature is a key element to understanding the composition of natural organic matter (NOM) and fossil organic matter formation, such as kerogen and coal. Characterization of such geopolymers is difficult due to their heterogeneity and insolubility in common aqueous or organic solvents. Here, a strategy for extracting a representative sample is presented using the combined techniques of nuclear magnetic resonance (NMR) and Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS) for chemical analysis and characterization of NOM. A variety of NOM samples (wood, kerogen, bitumen, whole sediments) are shown as examples for implementing the strategy, which include solvent extractions using pyridine. For most samples, the extracts are confirmed to be chemically representative of the insoluble solid, by comparing the liquids NMR spectrum of the extract to that of the whole, unfractionated NOM utilizing high resolution magic angle spinning (HRMAS) NMR. To assist in unambiguous peak assignment, a technique for post acquisition spectral denoising, using wavelet transformation (WT), is also employed on the 1D and 2D NMR spectra. The findings from the NMR data lay a foundation for the subsequent electrospray ionization FTICR-MS analysis of the pyridine extracts, since this instrument has the limitation of only analyzing liquid samples. The FTICR-MS analyses can, therefore, be used to molecularly represent the structural components of the NOM. Various compositional insights have been obtained on these samples, indicating the efficacy of the analytical techniques used.
机译:自然界中复杂生物聚合物的分子水平表征是了解天然有机物(NOM)的组成和化石有机物(如干酪根和煤)形成的关键要素。由于这类地质聚合物的不均一性和在普通水性或有机溶剂中的不溶性,很难对其进行表征。在这里,提出了使用核磁共振(NMR)和傅立叶变换离子回旋共振质谱(FTICR-MS)的组合技术提取代表性样品的策略,用于NOM的化学分析和表征。显示了各种NOM样品(木材,干酪根,沥青,整个沉积物)作为实施该策略的示例,其中包括使用吡啶进行溶剂萃取。对于大多数样品,通过使用高分辨率魔角旋转(HRMAS)NMR将提取物的液体NMR光谱与整个未分级NOM的液体NMR光谱进行比较,可以确定提取物在化学上代表不溶性固体。为了帮助进行明确的峰分配,在1D和2D NMR光谱上还采用了一种使用小波变换(WT)的采集后光谱去噪的技术。 NMR数据的发现为吡啶提取物的后续电喷雾电离FTICR-MS分析奠定了基础,因为该仪器的局限性在于只能分析液体样品。因此,FTICR-MS分析可用于分子表示NOM的结构成分。在这些样品上获得了各种成分的见解,表明所用分析技术的功效。

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