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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Sorption of natural organic matter fractions to goethite (alpha-FeOOH): effect of chemical composition as revealed by liquid-state C-13 NMR and wet-chemical analysis
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Sorption of natural organic matter fractions to goethite (alpha-FeOOH): effect of chemical composition as revealed by liquid-state C-13 NMR and wet-chemical analysis

机译:天然有机物组分对针铁矿的吸附(α-FeO​​OH):化学成分的影响,如液态C-13 NMR和湿化学分析所揭示

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In order to quantify the potential influence of the chemical composition of natural organic matter (NOM) on the extent of its sorption to mineral surfaces, I compared the interaction with synthetic goethite (alpha-FeOOH) of 18 different NOM (hydrophilic and hydrophobic fractions, fulvic and humic acids) samples from soil and terrestrial surface waters. The chemical composition of NOM was characterised by elemental analysis, titration of acidity, wet chemical analyses of lignin and carbohydrate constituents, and liquid-state C-13 NMR spectroscopy. The proportions of resonances due to carboxyl C ranged from 7 to 21% and signals for total aromatic C varied from 0 to 38%. Signals due to O,N-alkyl C comprised 5-65% of the spectral area. The sorption of all tested NOM was adequately described by the Langmuir model. In general, hydrophobic fractions and fulvic and humic acids rich in carboxyl and aromatic C, probably derived from lignin, sorbed much more strongly to goethite than the hydrophilic fractions which were characterised by high abundance of 0,N-alkyl C, probably due to carbohydrates, and low abundance of aromatic C. A sample of fulvic acids rich in alkyl C sorbed more weakly than samples rich in aromatic C. Consequently, the strong sorption of the hydrophobic fractions and fulvic acids seemed to be caused by the presence of aromatic structures. Within the groups of samples, however, the major determinant of the extent of the sorption proved to be acidic groups, as revealed by the close relationship between maximum sorption and total acidity and the content of carboxyl C. The maximum sorption of hydrophobic, fulvic and humic acids was inversely related to the ratio of aromatic to carboxyl C, which suggests that the number (and probably the position) of acidic groups attached to aromatics controls the interactions of hydrophobic, fulvic and humic acids with goethite. (C) 2003 Elsevier Ltd. All rights reserved. [References: 41]
机译:为了量化天然有机物(NOM)的化学成分对其吸附到矿物表面的程度的潜在影响,我比较了18种不同NOM(亲水和疏水部分)与合成针铁矿(alpha-FeOOH)的相互作用,富里酸和腐殖酸)从土壤和陆地表层水中取样。 NOM的化学组成通过元素分析,酸度滴定,木质素和碳水化合物成分的湿化学分析以及液态C-13 NMR光谱进行表征。羧基C引起的共振比例为7%至21%,总芳烃C的信号范围为0至38%。由O,N-烷基C引起的信号占光谱面积的5-65%。 Langmuir模型充分描述了所有测试的NOM的吸附。通常,疏水性馏分以及富含羧基和芳香族碳的富富夫草酸和腐殖酸,可能衍生自木质素,比针状石对亲水性馏分的吸附力强得多,亲水性馏分的特征在于0,N-烷基C的丰度很高,这可能归因于碳水化合物,富含芳烃C的富里酸的样品比富含芳烃C的样品更不易吸附。因此,疏水性馏分和富勒酸的强烈吸附似乎是由于存在芳族结构引起的。然而,在样品组中,吸附程度的主要决定因素是酸性基团,这是通过最大吸附量和总酸度与羧基C含量之间的密切关系所揭示的。腐殖酸与芳烃与羧基C的比例成反比,这表明与芳烃连接的酸性基团的数量(可能是位置)控制着疏水性,富勒酸和腐殖酸与针铁矿的相互作用。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:41]

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