McDonald P J, Korb J-P, Mitchell J, Monteilhet L
Department of Physics, School of Electronics and Physical Sciences, University of Surrey, Guildford, UK.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Jul;72(1 Pt 1):011409. doi: 10.1103/PhysRevE.72.011409. Epub 2005 Jul 27.
We report the first nuclear magnetic resonance (NMR) two-dimensional correlation T(1) - T(2) and T(2) - T(2) measurements of hydrating cement pastes. A small but distinct cross peak in the two-dimensional relaxation spectrum provides the first direct evidence of chemical exchange of water between gel and capillary pores occurring over the first 14 days of hydration. A correlation of features along the line T(1) = 4T(2) provides strong supportive evidence for the surface diffusion model of (1)H nuclear spin relaxation in cements and for a multimodal discrete pore size distribution. Differences in detail of the results are reported for white cement paste and white cement paste with added silica fume. Both the method and the theory presented can be applied more widely to other high surface area materials with other reactive surface areas.
我们报告了水合水泥浆体的首次核磁共振(NMR)二维相关T(1) - T(2)和T(2) - T(2)测量结果。二维弛豫谱中一个小但明显的交叉峰首次直接证明了在水化的前14天内,凝胶孔和毛细孔之间存在水的化学交换。沿着T(1) = 4T(2)线的特征相关性为水泥中(1)H核自旋弛豫的表面扩散模型以及多峰离散孔径分布提供了有力的支持证据。报告了白色水泥浆体和添加硅灰的白色水泥浆体结果细节上的差异。所提出的方法和理论均可更广泛地应用于具有其他反应性表面积的其他高表面积材料。