Stepišnik Janez, Ardelean Ioan
University of Ljubljana, Faculty of Mathematics and Physics, Physics Department, Jadranska 19, 1000 Ljubljana, Slovenia; Institute Jožef Stefan, Jamova 39, 1000 Ljubljana, Slovenia.
Physics Department, Faculty of Materials Science and Engineering, Technical University of Cluj-Napoca, Romania.
J Magn Reson. 2016 Nov;272:100-107. doi: 10.1016/j.jmr.2016.09.013. Epub 2016 Sep 17.
Internal magnetic field gradients, arising within the porous media due to susceptibility differences at the interfaces of solid and liquid as well as due to the contained magnetic impurities, can be employed by the method of modulated gradient spin echo to get insight into the velocity autocorrelation spectrum of liquid confined in the porous structure. New theoretical treatment of spin interaction with the radio-frequency field and the simultaneously applied static non-uniform magnetic field provides the formula that match well with the measurement of restricted diffusion of water in pores of cement paste. Its fitting to the experimental data gives the changes in the mean size of capillary pores, the spin relaxation and the magnitude of mean internal magnetic field gradients during the induction period and early acceleration stage of hydration processes at different temperatures.
由于固体和液体界面处的磁化率差异以及所含磁性杂质,多孔介质内部会产生内磁场梯度。通过调制梯度自旋回波方法,可以利用这些梯度来深入了解限制在多孔结构中的液体的速度自相关谱。对自旋与射频场以及同时施加的静态非均匀磁场相互作用的新理论处理,得出了与水泥浆孔隙中水分受限扩散测量结果匹配良好的公式。将其与实验数据拟合,可得到不同温度下水化过程诱导期和早期加速阶段毛细孔隙平均尺寸、自旋弛豫以及平均内部磁场梯度大小的变化情况。