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Characterization and dynamic of water in alkali homoionic montmorillonites

机译:碱均离子蒙脱土中水的表征和动力学

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The objective of this work is to study the effect of interlayer cations on the mechanism of adsorption-desorption of water in the case of a montmorillonite exchanged by alkali metals. This is done through thermodynamic measurements, i.e. isotherms of adsorption and desorption of water. The raw material is subjected to purification treatment by using the sedimentation followed by cationic exchange. IR and XRD analysis of the dry state confirm that the treatment used for obtaining homoionic clays does not deteriorate their structure. The value of the interlayer distance dobtained from XRD depends directly on the cation radius. IR spectra recorded on our montmorillonite reveals that the area ratio ν/ν peaks which corresponds to the amount of adsorbed water under room atmosphere follows the sequence: K >Rb> Cs > Li > Na In accordance the evolution observed for the desorption enthalpies. The adsorption and desorption isotherms show that the nature of the compensating cation considerably changes the adsorbed / desorbed amount for a given water relative pressure. Thus, the total amount of water adsorbed at P/P = 0.5 follows the same sequence.
机译:这项工作的目的是研究在蒙脱石被碱金属交换的情况下,层间阳离子对水吸附-脱附机理的影响。这是通过热力学测量完成的,即水的吸附和解吸的等温线。通过使用沉淀然后进行阳离子交换对原料进行纯化处理。干燥状态的IR和XRD分析证实,用于获得均离子粘土的处理不会破坏其结构。从XRD获得的层间距离的值直接取决于阳离子半径。记录在我们的蒙脱土上的红外光谱表明,对应于室温下吸附水的量的面积比ν/ν峰遵循以下顺序:K> Rb> Cs> Li> Na根据观察到的解吸焓的演变。吸附和解吸等温线表明,对于给定的水相对压力,补偿阳离子的性质极大地改变了吸附/解吸量。因此,以P / P = 0.5吸附的水总量遵循相同的顺序。

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