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NMR studies of pore formation and water diffusion in self-hardening cut-off wall materials

机译:自硬化防渗墙材料中孔形成和水扩散的NMR研究

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Cut-off walls for the containment of polluted sites are vertical in-ground barriers of low hydraulic conductivity. To construct these barriers, self-hardening watery suspensions of a special cement-based hydraulic binder and a cement-stable bentonite are used. The formation of the pore structure during hardening of suspensions with different solid contents and the water self-diffusion in the resulting cut-off wall materials were studied by non-destructive ~1H NMR techniques. It was found that an increased amount of hydrating solids in the suspension leads to a decrease in NMR relaxation times and self-diffusion coefficients of the pore water, indicating a reduction of the pore sizes and an enhancement of the diffusion resistance. The self-diffusion coefficients of the water in the hardened cut-off wall materials were determined to be about four orders of magnitude smaller than in bulk liquid water and two orders of magnitude smaller than in pure bentonite-water suspensions confirming the excellent diffusive resistance of the cut-off wall materials.
机译:用于围堵污染场地的防渗墙是低水力传导率的垂直地下屏障。为了构造这些屏障,使用了特殊的水泥基水硬性粘结剂和水泥稳定的膨润土的自硬化水性悬浮液。采用无损〜1H NMR技术研究了固含量不同的悬浮液在硬化过程中的孔结构形成以及所产生的截止壁材料中水的自扩散性。发现悬浮液中水合固体的量增加导致NMR弛豫时间和孔隙水的自扩散系数的减少,这表明孔径的减小和扩散阻力的增强。经测定,硬化的隔断墙材料中水的自扩散系数比散装液态水中小约四个数量级,比纯膨润土-水悬浮液中的自扩散系数小两个数量级,这证明了其出色的扩散阻力。隔墙材料。

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