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首页> 外文期刊>Cement and Concrete Research >A phenomenological approach on the influence of paramagnetic iron in cement stone on 2D T-1-T-2 relaxation in single-sided H-1 nuclear magnetic resonance
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A phenomenological approach on the influence of paramagnetic iron in cement stone on 2D T-1-T-2 relaxation in single-sided H-1 nuclear magnetic resonance

机译:单侧H-1核磁共振2D T-1-T-2松弛对水泥石石的影响的现象学方法

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摘要

In recent years, there has been an increasing interest in H-1 nuclear magnetic resonance (NMR) relaxometry to obtain information on the hydration and porosity of cement stone. By spin-spin (T-2), spin-lattice (T-1), and combined relaxation studies, new insights were gained on liquid and crystal bound water as well as pore water exchange. A conversion of relaxation times to pore sizes has been developed and shown to give consistent results. In this study, we use single-sided H-1 NMR to obtain two-dimensional T-1-T-2 relaxation distributions on systematically varied cement stone samples as well as hydrated and solid cement phases. Results show a richness in features beyond past studies and are interpreted qualitatively in terms of water found in chemically different pore environments. Both T-1 and T-2 surface relaxivity of calcium silicate surrounded liquid water linearly correlate with the cement's Fe2O3 content. Results are discussed based on a theory of interacting surface relaxation mechanisms.
机译:近年来,对H-1核磁共振(NMR)弛豫的兴趣日益增长,以获得有关水泥石的水化和孔隙率的信息。通过旋转旋转(T-2),旋转晶格(T-1),以及组合的松弛研究,在液体和晶体结合的水以及孔隙水交换中获得了新的见解。已经开发并显示了对孔隙尺寸的弛豫时间转换,并显示一致的结果。在这项研究中,我们使用单侧H-1 NMR在系统变化的水泥石样品以及水合和固体水泥相中获得二维T-1-T-2松弛分布。结果表明,在过去的研究之外的特征中具有丰富性,并且在化学不同的孔环境中的水方面被定性解释。硅酸钙的T-1和T-2表面松弛率围绕液体水与水泥的Fe2O3含量线性相关。基于相互作用的表面松弛机制理论讨论了结果。

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