首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >133Cs and Cl-35 NMR spectroscopy and molecular dynamics modeling of Cs+ and Cl- complexation with natural organic matter
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133Cs and Cl-35 NMR spectroscopy and molecular dynamics modeling of Cs+ and Cl- complexation with natural organic matter

机译:天然有机物与Cs +和Cl-的133Cs和Cl-35 NMR光谱和分子动力学模型

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摘要

Interaction of dissolved aqueous species with natural organic matter (NOM) is thought to be important in sequestering some species and enhancing the transport of others, but little is known about these interactions on a molecular scale. This paper describes a combined experimental Cs-133 and Cl-35 nuclear magnetic resonance (NMR) and computational molecular dynamics (MD) modeling study of the interaction of Cs+ and Cl- with Suwannee River NOM. The results provide a detailed picture of the molecular-scale structure and dynamics of these interactions. Individual NOM molecules are typically hundreds to thousands of Daltons in weight, and on the molecular scale their interaction with small dissolved species can be investigated in ways similar to those used to study the interaction of dissolved aqueous species with mineral surfaces. As for such surface interactions, understanding both the structural environments and the dynamics over a wide range of frequencies is essential. The NMR results show that Cs+ is associated with NOM at pH values from 3.4 +/- 0.5 (unbuffered Suwannee River NOM solution) to 9.0 +/- 0.5. The extent of interaction increases with decreasing CsCl concentration at constant pH. It also decreases with increasing pH at constant CsCl concentration due to pH-dependent negative structural charge development on the NOM caused by progressive deprotonation of carbmylic and phenolic groups. The presence of NOM has little effect on the Cs-133 chemical shifts, demonstrating that its local coordination environment does not change significantly due to interaction with the NOM. Narrow, solution-like line widths indicate rapid exchange of Cs+ between the NOM and bulk solution at frequencies of > 102 Hz. The MD simulations support these results and show that Cs+ is associated with the NOM principally as outer sphere complexes and that this interaction does not reduce the Cs+ diffusion coefficient sufficiently to cause NMR line broadening. The Cl-35 NMR data and the MD results are consistent in demonstrating that there is no significant complexation between Cl- and NOM in the pH range investigated, consistent with negative structural charge on the NOM. (c) 2006 Elsevier Inc. All rights reserved.
机译:溶解的水物种与天然有机物(NOM)的相互作用被认为对螯合某些物种并增强其他物种的运输很重要,但对这些相互作用的分子水平知之甚少。本文描述了Cs +和Cl-与Suwannee河NOM相互作用的组合实验Cs-133和Cl-35核磁共振(NMR)和计算分子动力学(MD)建模研究。结果提供了这些相互作用的分子尺度结构和动力学的详细图片。单个NOM分子的重量通常为数百至数千道尔顿,并且在分子规模上,可以使用类似于研究溶解的水物种与矿物表面相互作用的方法研究它们与小的溶解物的相互作用。对于这种表面相互作用,必须了解结构环境和广泛频率范围内的动力学。 NMR结果表明,在pH值从3.4 +/- 0.5(无缓冲Suwannee River NOM溶液)到9.0 +/- 0.5的pH值下,Cs +与NOM相关。在恒定pH下,相互作用的程度随CsCl浓度的降低而增加。在恒定的CsCl浓度下,它也会随着pH的增加而降低,这是由于NOM的pH依赖性负结构电荷的发展,该负结构电荷是由氨基甲酸酯基和酚基的去质子化引起的。 NOM的存在对Cs-133化学位移影响不大,表明其局部配位环境由于与NOM的相互作用而不会发生显着变化。狭窄的溶液状线宽表明,NOM和本体溶液之间的Cs +在频率> 102 Hz时快速交换。 MD模拟支持这些结果,并表明Cs +与NOM的结合主要是作为外球络合物,并且这种相互作用并未充分降低Cs +的扩散系数,从而导致NMR谱线加宽。 Cl-35 NMR数据和MD结果一致,表明在所研究的pH范围内,Cl-和NOM之间没有明显的络合,这与NOM上的负电荷一致。 (c)2006 Elsevier Inc.保留所有权利。

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