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Comparison of Sample Preparation Techniques for the(-)ESI-FT-ICR-MS Analysis of Humic and Fulvic Acids

机译:腐殖酸和富里酸(-)ESI-FT-ICR-MS分析样品制备技术的比较

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Soil organic matter(SOM) plays a key role in the global carbon and nitrogen cycles.Soil biogeochemistry is regularly studied by extracting the base-soluble fractions of SOM:acid-insoluble humic acid(HA) and acid-soluble fulvic acid(FA).Electrospray ionization-Fourier transform-ion cyclotron resonance-mass spectrometry(ESI-FT-ICR-MS) is commonly utilized for molecularly characterizing these fractions.Different sample preparation techniques exist for the analysis of FIA and FA though questions remain regarding data comparability following different preparations.Comparisons of different sample preparation techniques here revealed that the negative-mode ESI-FT-ICR-MS analytical window can be skewed to detect different groups of molecules,with primary differences in oxygenation,aromaticity,and molecular weight.It was also observed that FIA and FA from soils versus an aquatic matrix behaved very differently.Thus,we conclude that sample preparation techniques determined to be"most optimal"in our study are in no way universal.We recommend that future studies of FIA and FA involve similar comparative studies for determining the most suitable sample preparation technique for their particular type of FIA or FA matrices.This will enhance data comparability among different studies and environmental systems and ultimately allow us to better understand the complex composition of environmental matrices.
机译:土壤有机质(SOM)在全球碳氮循环中起着关键作用。通过提取SOM的碱溶性组分:酸不溶性腐植酸(HA)和酸溶性富里酸(FA)来定期研究土壤生物地球化学。电喷雾电离-傅里叶变换-离子回旋共振-质谱(ESI-FT-ICR-MS)通常用于分子表征这些馏分。FIA 和 FA 的分析存在不同的样品制备技术,但不同制备后的数据可比性仍然存在问题。通过对不同样品制备技术的比较,发现负模ESI-FT-ICR-MS分析窗口可以偏斜以检测不同的分子组,主要区别在于氧化、芳香性和分子量。还观察到,来自土壤的FIA和FA与水生基质的行为非常不同。因此,我们得出结论,在我们的研究中被确定为“最优”的样品制备技术绝不是通用的。我们建议未来对 FIA 和 FA 的研究涉及类似的比较研究,以确定最适合其特定类型的 FIA 或 FA 基质的样品制备技术。这将增强不同研究和环境系统之间的数据可比性,并最终使我们能够更好地了解环境矩阵的复杂组成。

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