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不同水化环境下高岭土微观结构各向异性研究
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Study on Microstructure Anisotropy of Kaolin under Different Hydration Environments
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    为研究不同水化环境对高岭土微观结构各向异性的影响,以美国南卡罗来纳州的高岭土(Acti-MinR PG)为研究对象,进行不同盐、酸、水环境下的沉积试验,利用X射线衍射仪(XRD)对高岭土样品基于角从转动至扫描测得13个XRD衍射图谱,基于MAUD软件采用Rietveld全谱拟合法对衍射图谱进行定量织构分析. 在填补黏土微观织构定量(非定性)分析方法研究欠缺的基础上,确定了高岭土颗粒的空间取向分布,并从微观角度对结构各向异性形成机理进行阐述. 结果表明:离子浓度和pH值会影响高岭土的颗粒排布. 盐溶液离子浓度增大,双电层斥力减弱促使颗粒形成聚集结构,高岭土择优取向增强,使土体表现出强烈的结构各向异性;溶液pH值减小,边-面结构之间的静电引力促使颗粒形成絮凝结构,高岭土择优取向减弱.

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    To study the effect of different hydration environments on the microstructure anisotropy of kaolin, this paper carries out the deposition experiment of different salts, acids, and aqueous solutions for kaolin (Acti-MinR PG) produced in South Carolina, USA, and measures 13 XRD spectra with the X-ray diffractometer by rotating the χ angle of the kaolin sample from 0° to 72°. The quantitative texture analysis of XRD spectra of kaolin sediments was carried out by the Rietveld method based on MAUD software. On the basis of filling the lack of quantitative (non-qualitative) analysis method of clay micro texture, the orientation distribution was determined, and the formation mechanism of the structural anisotropy from the micro perspective was expounded. The results of the study reveal that pH and ion concentration have an effect on the arrangement of kaolin particles. With the increase of ion concentration in the salt solution, the weakening of electric double-layer repulsion makes the particles form an aggregation structure, which enhances the preferred orientation of kaolin and makes the soil show strong structural anisotropy. With the decrease of pH of the solution, the electrostatic attraction between the edge-face association promotes the formation of flocculation of particles and weakens the preferred orientation of kaolin.

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康馨 ,苏晨曦 ,陈仁朋 ,马雄鹰 ?.不同水化环境下高岭土微观结构各向异性研究[J].湖南大学学报:自然科学版,2023,(1):161~170

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  • 在线发布日期: 2023-02-16
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