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Molecular-Scale Investigation with ESI-FT-ICR-MS on Fractionation of Dissolved Organic Matter Induced by Adsorption on Iron Oxyhydroxides

机译:用ESI-FT-ICR-MS进行的分子级分馏研究羟基氧化铁吸附诱导的溶解有机物的分馏

摘要

Adsorption by minerals is a common geochemical process of dissolved organic matter (DOM) which may induce fractionation of DOM at the mineral-water interface. Here, we examine the molecular fractionation of DOM induced by adsorption onto three common iron oxyhydroxides using electrospray ionization coupled with Fourier transform ion cyclotron resonance mass spectrometry (ESI-FT-ICR-MS). Ferrihydrite exhibited higher affinity to DOM and induced more pronounced molecular fractionation of DOM than did goethite or lepidocrocite. High molecular weight (>500 Da) compounds and compounds high in unsaturation or rich in oxygen including polycyclic aromatics, polyphenols and carboxylic compounds had higher affinity to iron oxyhydroxides and especially to ferrihydrite. Low molecular weight compounds and compounds low in unsaturation or containing few oxygenated groups (mainly alcohols and ethers) were preferentially maintained in solution. This study confirms that the double bond equivalence and the number of oxygen atoms are valuable parameters indicating the selective fractionation of DOM at mineral and water interfaces. The results of this study provide important information for further understanding the behavior of DOM in the natural environment.
机译:矿物质的吸附是溶解有机物(DOM)的常见地球化学过程,它可能导致DOM在矿物质-水界面处分馏。在这里,我们使用电喷雾电离与傅立叶变换离子回旋共振质谱(ESI-FT-ICR-MS)结合,研究了通过吸附到三种常见的羟基氧化铁上而诱导的DOM分子分离。与针铁矿或纤铁矿相比,水铁矿对DOM表现出更高的亲和力,并引起更明显的DOM分子分馏。高分子量(> 500 Da)的化合物以及不饱和度高或富含氧的化合物(包括多环芳烃,多酚和羧酸化合物)对羟基氧化铁,尤其是对三水铁矿具有更高的亲和力。低分子量化合物和不饱和度低或氧化基团少(主要是醇和醚)的化合物优先保存在溶液中。这项研究证实,双键当量和氧原子数是有价值的参数,表明DOM在矿物和水界面的选择性分馏。这项研究的结果为进一步了解DOM在自然环境中的行为提供了重要的信息。

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