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首页> 外文期刊>Clays and clay minerals >CHARACTER AND AMOUNT OF I-S MIXED-LAYER MINERALS AND PHYSICAL-CHEMICAL PARAMETERS OF TWO CERAMIC CLAYS FROM WESTERWALD,GERMANY: IMPLICATIONS FOR PROCESSING PROPERTIES
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CHARACTER AND AMOUNT OF I-S MIXED-LAYER MINERALS AND PHYSICAL-CHEMICAL PARAMETERS OF TWO CERAMIC CLAYS FROM WESTERWALD,GERMANY: IMPLICATIONS FOR PROCESSING PROPERTIES

机译:来自德国韦斯特瓦尔德的两种陶瓷粘土的I-S混合层矿物的特征和量以及理化参数:对加工性能的影响

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摘要

The industrial assessment of ceramic clays commonly consists of the determination of just two parameters, the particle-size distribution and the chemical composition; other parameters may also be important, however. The aim of the present study was to show that a careful determination of the mineralogical phase content provides valuable additional information on the processing behavior of ceramic clays. Two ceramic clays (Wl and W2) from the Westerwald area, Germany, were evaluated as being the same with respect to industrial screening criteria, but showed different processing properties. In order to elucidate the different behaviors, both clays were investigated comprehensively using a multi-method approach combining physical-chemical and mineralogical methods. Different aggregation characteristics for the two clays were revealed by determining the grain-size distribution with and without Na-pyrophosphate as a dispersant. In addition, Wl showed a greater electrical conductivity and soluble-salt concentration which promoted dispersion behavior. The phase content was identified both for bulk materials and for several grain-size fractions by X-ray diffraction (XRD) and Rietveld analysis. The quantitative phase content was crosschecked with the chemical composition by X-ray fluorescence (XRF) analysis. Additional information was gathered by thermal analysis, cation exchange capacity (CEC) measurements, Mossbauer spectroscopy, and optical microscopy. While bulk samples of Wl and W2 showed nearly the same mineralogical and chemical compositions, investigation of the clay-size fractions (0.6—2 urn, <0.6 um) revealed differences in the composition of the 2:1 layer silicates. The percentages of smectite in the mixed-layer I-S, as well as the amount of kaolinite, discrete illite, and smectite were determined by one-dimensional XRD profile fitting (ODPF). Best-fitting results for Wl were achieved for a physical mixture of an illite-rich I-S mixed-layer mineral (R3 I(0.9)-S) with discrete smectite, whereas W2 was characterized by a greater proportion of smectite in the mixed-layer (Rl I(0.8)-S), without discrete smectite. Based on the different structural features of the swellable clays, a qualitative delamination model for the 2:1 layer silicates during processing of the clays was derived. The model provides a further approach, aside from aggregation characteristics, to help understand the clay-processing behavior, which was found to be different for the two ceramic clays investigated.
机译:陶瓷粘土的工业评估通常包括确定两个参数,即粒度分布和化学成分。但是,其他参数也可能很重要。本研究的目的是表明,仔细确定矿物相含量可提供有关陶瓷粘土加工性能的有价值的附加信息。就工业筛选标准而言,来自德国韦斯特瓦尔德地区的两种陶瓷粘土(W1和W2)经评估为相同,但显示出不同的加工性能。为了阐明不同的行为,使用一种结合物理化学和矿物学方法的多方法对两种粘土进行了全面研究。通过确定使用和不使用焦磷酸钠作为分散剂的粒度分布,可以揭示两种粘土的不同聚集特性。另外,W1显示出更大的电导率和可溶性盐浓度,这促进了分散行为。通过X射线衍射(XRD)和Rietveld分析确定了散装材料和几个粒度级分的相含量。通过X射线荧光(XRF)分析将定量相含量与化学成分进行交叉核对。通过热分析,阳离子交换容量(CEC)测量,Mossbauer光谱和光学显微镜收集了更多信息。虽然W1和W2的大块样品显示出几乎相同的矿物学和化学组成,但对粘土尺寸馏分(0.6-2 um,<0.6 um)的调查显示,2:1层硅酸盐的组成存在差异。通过一维XRD轮廓拟合(ODPF)确定混合层I-S中蒙脱石的百分比以及高岭石,离散伊利石和蒙脱石的含量。 W1的最佳拟合结果是富含伊利石的IS混合层矿物(R3 I(0.9)-S)与离散蒙脱石的物理混合物,而W2的特征是混合层中蒙脱石的比例更高(R11(0.8)-S),没有离散的蒙脱石。根据膨胀性粘土的不同结构特征,推导了粘土加工过程中2:1层硅酸盐的定性分层模型。除了聚集特性,该模型还提供了另一种方法来帮助理解粘土加工行为,这对于所研究的两种陶瓷粘土而言是不同的。

著录项

  • 来源
    《Clays and clay minerals》 |2011年第1期|p.58-74|共17页
  • 作者单位

    Competence Center for Material Moisture (CMM), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany,Institute for Functional Interfaces (IFG), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany;

    FGK Forschungsinstitut fur Anorganische Werkstoffe-Glas/Keramik-GmbH, 56203 Hohr-Grenzhausen, Germany;

    FGK Forschungsinstitut fur Anorganische Werkstoffe-Glas/Keramik-GmbH, 56203 Hohr-Grenzhausen, Germany;

    WBB Fuchs, 56412 Ruppach-Goldhausen, Germany;

    WBB Fuchs, 56412 Ruppach-Goldhausen, Germany;

    Institute for Functional Interfaces (IFG), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany;

    Institute for Functional Interfaces (IFG), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany;

    Competence Center for Material Moisture (CMM), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany,Institute for Functional Interfaces (IFG), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany;

    Competence Center for Material Moisture (CMM), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany,Institute for Functional Interfaces (IFG), KIT-Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ceramic clays; delamination; germany; illite-smectite; interstratification; mixed-layer minerals; multi-method approach; processing properties; westerwald; xrd profile fitting.;

    机译:陶土分层德国;伊利石-蒙脱石分层混合层矿物多方法加工性能韦斯特瓦尔德XRD型材配件。;

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