Application of the capillary method in micro X-ray diffractometry (µ-XRD): A useful technique for the characterization of small amounts of clay minerals

I. Kovács, T. Németh, Gabriella B. Kiss, Z. Benkő
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引用次数: 3

Abstract

The laboratory micro X-ray diffraction (μ-XRD) technique is a suitable method to study minerals in-situ in whole-rock specimens without any sample preparation or in polished thin sections, and even in small amounts in powdered form. The micro X-ray diffraction method uses the conventional, closed-tube X-ray generator, but modifications were needed in the diffraction column, sample holder and detector in order to achieve μ-XRD capability.In this paper, we present a case study of the capillary method used in µ-XRD on hydrothermal clay mineral assemblages that formed in the Velence Mts (Hungary). The capillary method in µ-XRD has many advantages in the investigation of small amounts of clay minerals: (1) easy and rapid preparation of randomly oriented, powdered samples; (2) rapid measurements; (3) accurate diffraction patterns. By using the capillary method, the formation of preferred orientation can be eliminated; thus the (hkl) reflection of the clay minerals can be precisely measured. Illite polytype quantification and the investigation of (060) reflection of clay minerals can be used satisfactorily in µ-XRD.Hydrothermal clay mineral assemblages are indicative of temperature and pH. Their examination can determine the physicochemical parameters of the hydrothermal fluids that interacted with the host granite in the Velence Mts. The analyzed hydrothermal clay minerals from the western part of the mountains suggest lower temperatures (150–200 °C) and intermediate pH conditions. In contrast, the clay mineral assemblages' characteristics for the eastern part of the mountains indicate more intense argillization and higher temperatures (∼220 °C) and intermediate pH conditions.
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毛细管法在微X射线衍射仪(µ-XRD)中的应用:一种用于表征少量粘土矿物的有用技术
实验室微X射线衍射(μ-XRD)技术是一种合适的方法,可以在没有任何样品制备的情况下原位研究全岩样品中的矿物,也可以在抛光的薄片中原位研究矿物,甚至是少量粉末状矿物。微X射线衍射方法使用传统的闭管X射线发生器,但需要对衍射柱进行修改,样品支架和检测器,以实现μ-XRD性能。在本文中,我们对在Velence Mts(匈牙利)形成的水热粘土矿物组合进行了µ-XRD中使用的毛细管法的案例研究。µ-XRD中的毛细管法在研究少量粘土矿物方面具有许多优点:(1)易于快速制备随机取向的粉末状样品;(2) 快速测量;(3) 精确的衍射图案。通过使用毛细管法,可以消除优选取向的形成;从而可以精确地测量粘土矿物的(hkl)反射。伊利石多型定量和粘土矿物(060)反射的研究可以令人满意地用于µ-XRD。热液粘土矿物组合指示温度和pH。它们的检查可以确定与Velence Mts中的主花岗岩相互作用的热液流体的物理化学参数。分析的来自山脉西部的热液粘土矿物质表明温度较低(150–200°C),pH条件中等。相反,山脉东部的粘土矿物组合特征表明,粘土化程度更高,温度更高(~220°C),pH值中等。
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来源期刊
Central European Geology
Central European Geology Earth and Planetary Sciences-Geology
CiteScore
1.40
自引率
0.00%
发文量
8
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