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Aggregation and Disaggregation of Humic Supramolecular Assemblies by NMR Diffusion Ordered Spectroscopy (DOSY-NMR)

机译:核磁共振扩散有序光谱法(DOSY-NMR)对腐殖质超分子组装体的聚集和分解

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Diffusion ordered nuclear magnetic resonance spectroscopy (DOSY-NMR) was applied to a number of fulvic (FA) and humic (HA) acids of different origin. Spectral separation achieved by DOSY based on diffusion coefficients (D), and correlated to molecular sizes by calibration standards, showed that carbohydrates had the largest molecular size in FA, whereas alkyl or aromatic components were the" most slowly diffusing moieties in HA. At increasing concentrations, these components had invariably lower D values in DOSY spectra for all humic samples, thereby indicating an aggregation into apparently larger associations, whose increased hydrodynamic radius was confirmed by viscosity measurements. When humic solutions were brought from alkalineto acidic pH (3.6), components diffusivity detected by DOSY increased significantly, suggesting a decrease of aggregation and molecular size. A general comparison of HA and FA molecular sizes was achieved by multivariate statistical analysis. While a larger extent of aggregation and disaggregation was observed for HA than for FA, no aggregation was detected, under similar conditions, for a true macropolymeric standard. Such difference in diffusion between a polymeric molecule and humic samples, is in line with the supramolecular nature of humic matter. The possible formation of humic micelles was also investigated by both changes of diffusivity in DOSY spectra and shift of ~1H NMR signals. Except for HA of peat and soil origin, revealing a self-assembling in micelle-like structures at the 4 mg mL~(-1) concentration, no other humic sample showed evidence of critical micelle concentration (cmc) up to 20 mg mL~(-1). These results indicated that DOSY-NMR spectroscopy is a useful technique to evaluate components of different molecular size in natural humic superstructures.
机译:扩散有序核磁共振波谱(DOSY-NMR)被应用于许多不同来源的富里夫酸(FA)和腐殖酸(HA)。通过DOSY基于扩散系数(D)进行的光谱分离,并通过校准标准物将其与分子大小相关联,表明碳水化合物在FA中具有最大的分子大小,而烷基或芳族成分是HA中“扩散最慢的部分”。浓度时,所有腐殖质样品的DOSY光谱中这些组分的D值始终较低,因此表明聚集成明显更大的缔合,其粘度系数证实了其流体力学半径的增加。通过DOSY检测到的扩散率显着增加,表明聚集和分子大小减小;通过多变量统计分析获得了HA和FA分子大小的一般比较;虽然观察到HA的聚集和解聚程度大于FA,但没有聚集在类似条件下被检测到为真正的大分子美国标准。聚合物分子与腐殖质样品之间的这种扩散差异与腐殖质的超分子性质是一致的。还通过DOSY光谱中扩散率的变化和〜1H NMR信号的移动来研究可能形成的腐殖胶束。除泥炭和土壤来源的HA外,在4 mg mL〜(-1)的浓度下,胶束状结构具有自组装性,没有其他腐殖质样品显示出20 mg mL〜的临界胶束浓度(cmc)。 (-1)。这些结果表明DOSY-NMR光谱法是评估天然腐殖质超结构中不同分子大小的组分的有用技术。

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  • 来源
    《Environmental Science & Technology》 |2008年第3期|699-706|共页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 14:05:16

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