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ANISOTROPIC SURFACE CHARGING OF CHLORITE SURFACES

机译:亚氯酸盐表面的各向异性表面带电

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摘要

Chlorite is a layered silicate mineral group of importance in geology, agriculture, and in the processing of mineral resources. A more detailed analysis of the surface charge of chlorite minerals is important in order to improve our fundamental understanding of such particle structures and their behavior in suspension. In this study, the anisotropic surface charging of chlorite has been established using Atomic Force Microscopy surface-force measurements with a silicon nitride tip. The surface-charge densities and surface potentials at the chlorite basal-plane surfaces and edge surface were obtained by fitting force curves with the Derjaguin-Landau-Verwey-Overbeek theoretical model. The results show that at pH 5.6, 8.0, and 9.0 the chlorite mica-like face is negatively charged with the isoelectric point (IEP) less than pH 5.6. In contrast, the chlorite brucite-like face is positively charged in this pH range and the IEP is greater than pH 9.0. The surface charging of the chlorite edge surface was found to be pH-dependent with the IEP occurring at pH 8.5, which is slightly greater than the edge surfaces of talc and muscovite due to the larger content of magnesium hydroxide at the chlorite edge surface. Findings from the present research are expected to provide a fundamental foundation for the analysis of industrial requirements, e.g. collector adsorption, slime coating, and particle interactions in the area of mineral-processing technology.
机译:亚氯酸盐是层状硅酸盐矿物群,在地质,农业和矿产资源加工中具有重要意义。为了增进我们对此类颗粒结构及其在悬浮液中的行为的基本了解,对亚氯酸盐矿物表面电荷进行更详细的分析非常重要。在这项研究中,亚氯酸盐的各向异性表面电荷已使用原子力显微镜表面力测量和氮化硅针尖建立。通过用Derjaguin-Landau-Verwey-Overbeek理论模型拟合力曲线获得亚氯酸盐基面表面和边缘表面的表面电荷密度和表面电势。结果表明,在pH 5.6、8.0和9.0下,亚氯酸盐云母状表面带负电,其等电点(IEP)小于pH 5.6。相反,在此pH范围内,类似亚氯酸盐的水英石表面带正电,且IEP大于pH 9.0。发现亚氯酸盐边缘表面的表面电荷是pH依赖性的,IEP在pH 8.5时发生,由于亚氯酸盐边缘表面上氢氧化镁的含量较大,IEP略大于滑石和白云母的边缘表面。预期本研究的发现将为分析工业需求提供基础。矿物加工技术领域中的捕收剂吸附,粘泥涂层和颗粒相互作用。

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  • 来源
    《Clays and clay minerals 》 |2013年第2期| 152-164| 共13页
  • 作者单位

    Department of Metallurgical Engineering, College of Mines and Earth Sciences, University of Utah, 135 South 1460 East, Room 412, Salt Lake City, UT 84112-0114, USA;

    Department of Chemical and Materials Engineering, University of Alberta, Room 280C, Chemical and Materials Engineering Building, Edmonton, Alberta, AB T6G 2G6, Canada;

    Department of Metallurgical Engineering, College of Mines and Earth Sciences, University of Utah, 135 South 1460 East, Room 412, Salt Lake City, UT 84112-0114, USA;

    Department of Chemical and Materials Engineering, University of Alberta, Room 280C, Chemical and Materials Engineering Building, Edmonton, Alberta, AB T6G 2G6, Canada;

    Department of Metallurgical Engineering, College of Mines and Earth Sciences, University of Utah, 135 South 1460 East, Room 412, Salt Lake City, UT 84112-0114, USA;

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

    anisotropic surlace characteristics; atomic force microscopy; basal plane; chlorite; DLVO model; edge surface; electrophoresis; flotation; surface charge; surface potential;

    机译:各向异性的特征原子力显微镜基面亚氯酸盐DLVO模型;边缘表面电泳浮选表面电荷表面电位;

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