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Structure of mixed-layer kaolinite-smectite and smectite-to-kaolinite transformation mechanism from synthesis experiments

机译:合成实验研究混合层高岭石-蒙脱石的结构及蒙脱石向高岭石的转化机理

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摘要

A smectite and a rhyolitic obsidian specimen were subjected to hydrothermal alteration for 4 months at 150 °C in two solutions having different AlCl3 concentrations. The solids were analyzed by means of X-ray diffraction, thermogravimetry, electron microscopy (with microanalysis), and Fourier transform infrared spectroscopy. The solutions were chemically analyzed and the ion activities were plotted on activity diagrams. They are broadly coherent with the reaction products. The smectite specimen produced mixed-layer kaolinite-smectite (K-S), with a higher kaolinite proportion for the solution with higher Al content. The glass specimen produced glass + boehmite + kaolinite in the low-Al solution, and kaolinite in the high-Al solution. Thus, K-S probably forms only from smectite precursors. The formation of K-S follows the same mechanism of stripping of one of the tetrahedral sheets from smectite described for natural specimens by Dudek et al. (2006). Comparison of the synthetic and natural K-S indicates great similarity, although the arrangement of the kaolinite layers in the synthetic specimens is more ordered and some of their kaolinite infrared bands are more intense. The results of Dudek et al. (2006) and this study show a wide range of chemical and structural "maturity" of kaolinite in K-S, as kaolinization proceeds, that varies depending on the reaction conditions.
机译:蒙脱石和流纹岩黑曜石标本在150°C下在两种具有不同AlCl 3 浓度的溶液中进行了4个月的水热蚀变。通过X射线衍射,热重分析, 电子显微镜(带有显微分析)和傅里叶变换 红外光谱对固体 进行了分析。对溶液进行化学分析 ,并将离子活性绘制在活性图上。它们 与反应产物具有广泛的一致性。蒙脱石 试样产生的混合层高岭土-蒙脱石(K-S),对于Al 含量较高的溶液, 的高岭石比例更高。玻璃样品在低铝溶液中生成玻璃+勃姆石+高岭石 ,在高Al溶液中生成高岭石。因此,K-S可能仅由蒙脱石前体形成。 K-S的 的形成遵循与Dudek等人描述的针对天然 样品描述的从蒙脱石剥离四面体薄片的 相同的机理。 (2006)。合成 与天然KS的比较显示出很大的相似性,尽管合成样品中高岭石层的排列 更有序 及其一些 Dudek等人的结果。 (2006)和这项研究显示,随着高岭土化的进行, KS中高岭石的化学和结构“成熟度”范围很广,随 反应条件。

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  • 来源
    《American Mineralogist》 |2007年第1期|179-192|共14页
  • 作者单位

    Mineralogy Department, Natural History Museum, Cromwell Road, London SW7 5BD, U.K.;

    Mineralogy Department, Natural History Museum, Cromwell Road, London SW7 5BD, U.K.;

    Departamento de Ciencias de la Tierra y Quimica Ambiental, Estacion Experimental del Zaidin (CSIC), Prof. Albareda 1, 18008 Granada, Spain;

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