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SWELLING BEHAVIOR OF Na- AND Ca-MONTMORILLONITE UP TO 150℃ BY IN SITU X-RAY DIFFRACTION EXPERIMENTS

机译:原位X射线衍射实验研究Na-和Ca-蒙脱土在150℃以下的溶胀行为

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The effects of temperature on the swelling properties of smectites are important for a variety of different geological conditions, but studies on this topic have been rather limited. The purpose of this study was to investigate the swelling behavior of Na- and Ca-montmorillonite at various temperatures greater than room temperature, up to 150℃, using in situ X-ray diffraction (XRD) analysis. A sample chamber was designed, the temperature and humidity of which were controlled precisely, for environmental in situ measurements. The XRD measurements were performed at small relative humidity (RH) intervals for precise observation of the swelling behavior.rnThe swelling behavior of Na-montmorillonite showed distinct zero-, one-, and two-layer hydration states. The basal spacings of Na-montmorillonite changed continuously with RH for various temperatures in the transition region between the zero- and one-layer hydration states, and the swelling curves of the transition region moved to greater degrees of RH with increasing temperature. The basal spacings jumped from the one- to two-layer hydration states for all temperatures at almost the same RH.rnThe basal spacings of Ca-montmorillonite changed continuously from the zero- to the two-layer hydration states at all temperatures. This behavior is remarkably different from that of Na-montmorillonite. At low RH conditions, the d_(001) value of Ca-montmorillonite decreased with increasing temperature. The swelling curves of Ca-montmorillonite did not show a plateau at any temperature for the one-layer hydration state. The swelling curves of Ca-montmorillonite moved to greater RH with temperature, similar to the transformation region between the zero- and one-layer hydration states in Na-montmorillonite. These differences between Na- and Ca-montmorillonile are related to the hydration powers of exchangeable cations.
机译:温度对蒙脱石溶胀特性的影响对于各种不同的地质条件都很重要,但是有关该主题的研究却相当有限。本研究的目的是使用原位X射线衍射(XRD)分析法研究Na和Ca蒙脱石在高于室温的各种温度(最高150℃)下的溶胀行为。设计了一个样品室,其温度和湿度被精确控制,用于环境现场测量。 XRD测量在较小的相对湿度(RH)间隔下进行,以精确观察溶胀行为。钠-蒙脱石的溶胀行为表现出明显的零,一和两层水合状态。在零层和一层水合状态之间的过渡区域,Na蒙脱土的基间距随着RH的变化而连续变化,并且随着温度的升高,过渡区域的溶胀曲线向RH的方向移动。在几乎相同的相对湿度下,所有温度下的基础间距都从单层水合状态跃升到两层。rn钙蒙脱石的基础间距在所有温度下都从零层水合状态连续变为两层水合状态。该行为与钠蒙脱石明显不同。在低RH条件下,钙蒙脱土的d_(001)值随温度升高而降低。 Ca-蒙脱石的溶胀曲线在任何温度下对于一层水合状态均未显示出平台。钙蒙脱石的溶胀曲线随温度升高到更大的相对湿度,类似于钠蒙脱石在零层和一层水合状态之间的转变区域。 Na-蒙脱土和Ca-蒙脱土之间的这些差异与可交换阳离子的水合能力有关。

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