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Engineering properties and microstructural characteristics of cement-stabilized zinc-contaminated kaolin

机译:水泥稳定的锌污染高岭土的工程性质和微观结构特征

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摘要

This paper presents details of a study that deals with determination of engineering properties, identification of phases of major hydration products, and microstructural characteristics of a zinc-contaminated (referred to as Zn-contaminated in this paper) kaolin clay when it is stabilized by a cement additive. Investigations were carried out with respect to the effect of the level of zinc (Zn) concentration on the overall soil properties including Atterberg limits, water content, pH, stress–strain characteristics, unconfined compressive strength, and secant modulus. In addition, X-ray diffraction, scanning electron microscopy, and mercury intrusion porosimetry studies were conducted to understand the mechanisms controlling the changes in engineering properties of the stabilized kaolin clay. The study reveals that the level of Zn concentration has a considerable influence on the engineering properties, phases of hydration products formed, and microstructural characteristics of the stabilized kaolin clay. These changes are attributed to the retardant effect of Zn on the hydration and pozzolanic reactions, which in turn alters the phases of hydration products and cementation structure – bonding of the soils. Theoretical simulation of the pore-size distribution curves demonstrates that the cement-stabilized kaolin exhibits bimodal type when the Zn concentration is less than 2%, whereas it displays unimodal type when the Zn concentration is 2%. With an increase in the Zn concentration, the characteristics of the interaggregate pores in terms of volume and mean diameter change considerably, whereas those of intra-aggregate pores remain nearly unchanged.
机译:本文介绍了一项研究的细节,该研究涉及确定经锌稳定的高岭土(经锌稳定)的工程性质,主要水合产物的相的鉴定以及微观结构特征。水泥添加剂。进行了有关锌(Zn)浓度水平对土壤总体特性的影响的研究,这些特性包括Atterberg限值,水含量,pH,应力-应变特性,无限制抗压强度和割线模量。此外,还进行了X射线衍射,扫描电子显微镜和压汞法研究,以了解控制稳定的高岭土的工程性质变化的机理。研究表明,锌的浓度水平对工程性能,水合产物的形成相以及稳定的高岭土的微观结构特征有很大的影响。这些变化归因于锌对水合作用和火山灰反应的阻滞作用,这反过来又改变了水合产物的相和胶结结构-土壤的结合。孔径分布曲线的理论模拟表明,当锌的浓度小于2%时,水泥稳定的高岭土呈现双峰型,而当锌的浓度为2%时,其呈现单峰型。随着Zn浓度的增加,聚集体孔的体积和平均直径特性发生了很大变化,而聚集体内部孔的特性几乎保持不变。

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