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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Cation sorption on the muscovite (001) surface in chloride solutions using high-resolution X-ray reflectivity
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Cation sorption on the muscovite (001) surface in chloride solutions using high-resolution X-ray reflectivity

机译:使用高分辨率X射线反射率在白云母(001)在氯化物溶液中的阳离子吸附

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摘要

The structure and mechanism of cation sorption at the (00 1) muscovite-water interface were investigated in 0.01 and 0.5 m KCl, CsCl, and CaCl, and 0.01 in BaCl, solutions at slightly acidic pH by high-resolution X-ray reflectivity. Structural relaxations of atom positions in the 2M(1) muscovite were small (<= 0.07 A) and occurred over a distance of 30 to 40 A perpendicular to the interface. Cations in all solutions were sorbed dominantly in the first and second solution layers adjacent to the mineral surface. The derived heights of the first solution layer in KCl and CsCl solutions, 1.67(6)-1.77(7) and 2.15(9)-2.16(2) A, respectively, differ in magnitude by the approximate difference in crystallographic radii between K and Cs, and correspond closely to the interlayer cation positions in bulk K- and Cs-mica structures. The first solution layer heights in CaCl, and BaCl2 solutions, 2.46(5)-2.56(11) and 2.02(5)A, respectively, differ in a sense opposite to that expected based on crystallographic or hydrated radii of the divalent cations. The derived ion heights in all solutions imply that there is no intercalated water layer between the first solution layer and the muscovite surface. Molecular compositions were assigned to the first two Solution layers in the electron density profiles using models that constrain the number density of sorbed cations, water molecules. and anions by considering the permanent negative charge of the muscovite and average solution density. The models result in partial charge balance (at least 50%) by cations sorbed in the first two layers in the 0.01 in solutions and approximately full charge balance in the 0.5 m solutions. Damped oscillations of model water density away from the first two solution layers agree with previous X-ray reffectivity results on the muscovite (001) surface in pure water. (c) 2006 Elsevier Inc. All rights reserved.
机译:通过高分辨率的X射线反射率研究了在0.01和0.5 m KCl,CsCl和CaCl以及0.01在BaCl溶液中在弱酸性pH下(00 1)白云母-水界面的阳离子吸附的结构和机理。在2M(1)白云母中原子位置的结构弛豫很小(<= 0.07 A),并且发生在垂直于界面的30至40 A的距离上。所有溶液中的阳离子主要吸附在邻近矿物表面的第一和第二溶液层中。在KCl和CsCl溶液中,第一溶液层的推导高度分别为1.67(6)-1.77(7)和2.15(9)-2.16(2)A,其大小因K与K的结晶半径的近似差异而不同。 Cs,并且紧密对应于整体K-和Cs-云母结构中的层间阳离子位置。 CaCl和BaCl2溶液中的第一溶液层高度分别为2.46(5)-2.56(11)和2.02(5)A,其高度与基于二价阳离子的晶体学或水合半径所预期的相反。在所有溶液中得出的离子高度都暗示在第一溶液层和白云母表面之间没有插层水层。使用限制吸附的阳离子,水分子的数量密度的模型,将分子组成分配给电子密度分布图中的前两个溶液层。通过考虑白云母的永久负电荷和平均溶液密度来确定阴离子。该模型通过在溶液中的0.01中吸附在前两层中的阳离子产生部分电荷平衡(至少50%),在0.5 m的溶液中近似达到完全电荷平衡。模型水密度远离前两个溶液层的阻尼振荡与纯水中白云母(001)表面先前的X射线反射率结果一致。 (c)2006 Elsevier Inc.保留所有权利。

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