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低频超声对天然铝硅酸盐表面性质的影响

Effect of low frequency ultrasound on the surface properties of natural aluminosilicates.

作者信息

Novikova Liudmila, Ayrault Philippe, Fontaine Claude, Chatel Gregory, Jérôme François, Belchinskaya Larisa

机构信息

Voronezh State University of Forestry and Technologies, 8 Timiryazeva Str., 394087 Voronezh, Russian Federation.

Institut de Chimie des Milieux et Matériaux de Poitiers (IC2MP, UMR CNRS 7285), Université de Poitiers, 1, Rue Marcel Doré, TSA 41105, 86073 Poitiers Cedex 9, France.

出版信息

Ultrason Sonochem. 2016 Jul;31:598-609. doi: 10.1016/j.ultsonch.2016.02.014. Epub 2016 Feb 10.

Abstract

Structural and surface properties of different natural aluminosilicates (layered, chain and framework structural types) exposed of 20 kHz ultrasound irradiation (0-120 min) in aqueous and 35 wt%. aqueous H2O2 dispersions were studied by X-ray diffraction (XRD), dynamic light scattering (DLS), nitrogen adsorption-desorption, thermal analysis, and Fourier transform infrared spectroscopy (FTIR) techniques. It was confirmed that sonication caused slight changes in the structure of investigated minerals whereas their textural properties were significantly affected. The aqueous dispersions of montmorillonite (Mt), clinoptilolite (Zlt), glauconite (Glt) and palygorskite (Pal) were represented by several particles size fractions according to DLS-study. Ultrasound irradiation produced a decrease of the average particle diameter by 4-6 times in water and by 1.3-5 times in H2O2 dispersions except for Pal, which underwent strong agglomeration. A significant increase of total pore volume and pore diameter was observed for Glt sonicated in H2O2 dispersions whereas for Pal mainly micropore volume sharply increased in both aqueous and H2O2 dispersions.

摘要

通过X射线衍射(XRD)、动态光散射(DLS)、氮吸附-解吸、热分析和傅里叶变换红外光谱(FTIR)技术,研究了不同天然铝硅酸盐(层状、链状和骨架结构类型)在20 kHz超声辐照(0 - 120分钟)下,于水相和35 wt%的过氧化氢水相分散体系中的结构和表面性质。结果证实,超声处理使所研究矿物的结构发生了轻微变化,而其织构性质受到了显著影响。根据动态光散射研究,蒙脱石(Mt)、斜发沸石(Zlt)、海绿石(Glt)和凹凸棒石(Pal)的水相分散体系由几个粒径级分组成。超声辐照使除Pal(发生强烈团聚)外的矿物在水中的平均粒径减小4 - 6倍,在过氧化氢分散体系中减小1.3 - 5倍。对于在过氧化氢分散体系中超声处理的Glt,观察到总孔体积和孔径显著增加,而对于Pal,在水相和过氧化氢分散体系中主要是微孔体积急剧增加。

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