An improved high-speed NMR profiling method is introduced that enables us to measure capillary action in thin, nontransparent porous media. Liquid profiles can be measured as fast as 10 ms with a spatial resolution of 14.5μm. Capillary absorption of microliter-sized droplets into nontransparent nylon-6,6 porous membranes was studied. In nylon-6,6 sharp fronts obeying a one-dimensional Darcy model were observed. In paper the uptake did not follow this model: retardation in uptake, broader fluid fronts, and swelling was observed. These measurements nicely demonstrate the possibilities and versatility of the developed method.</p
The structure and dynamics of water diffusion and -transport at a microscale in heterogeneous porous...
© 2017. American Geophysical Union. All Rights Reserved. Capillary trapping of a non-wetting phase a...
The signal obtained with q-space NMR imaging applied to a confined liquid is directly related to the...
An improved high-speed NMR profiling method is introduced that enables us to measure capillary actio...
Measuring moisture distributions during fast transport processes in thin porous media is a challengi...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
Abstract Restricted diffusion of fluids in porous materials can be studied by pulsed field gradient...
Porous materials or a porous media can be encountered in our everyday life, both in industrial and h...
ABSTRACT number of other quantities such as relaxation times and chemical shifts (Vinegar, 1986; Bla...
NMR relaxation time distributions of water 1H obtained by a portable single-sided surface device hav...
The operation of bioreactors and the metabolism of microorganisms in biofilms or soil/sediment syste...
Vita.Multiphase flow in porous media is an important subject in many fields of science and engineeri...
The penetration of water–glycerol mixtures in a porous material is studied by using NMR (Nuclear Mag...
The uptake, partitioning, and release of ingredients such as water, oil, surfactant, and ions are im...
Measurement of the in-situ fluid saturation distributions is essential and important in laboratory ...
The structure and dynamics of water diffusion and -transport at a microscale in heterogeneous porous...
© 2017. American Geophysical Union. All Rights Reserved. Capillary trapping of a non-wetting phase a...
The signal obtained with q-space NMR imaging applied to a confined liquid is directly related to the...
An improved high-speed NMR profiling method is introduced that enables us to measure capillary actio...
Measuring moisture distributions during fast transport processes in thin porous media is a challengi...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
Abstract Restricted diffusion of fluids in porous materials can be studied by pulsed field gradient...
Porous materials or a porous media can be encountered in our everyday life, both in industrial and h...
ABSTRACT number of other quantities such as relaxation times and chemical shifts (Vinegar, 1986; Bla...
NMR relaxation time distributions of water 1H obtained by a portable single-sided surface device hav...
The operation of bioreactors and the metabolism of microorganisms in biofilms or soil/sediment syste...
Vita.Multiphase flow in porous media is an important subject in many fields of science and engineeri...
The penetration of water–glycerol mixtures in a porous material is studied by using NMR (Nuclear Mag...
The uptake, partitioning, and release of ingredients such as water, oil, surfactant, and ions are im...
Measurement of the in-situ fluid saturation distributions is essential and important in laboratory ...
The structure and dynamics of water diffusion and -transport at a microscale in heterogeneous porous...
© 2017. American Geophysical Union. All Rights Reserved. Capillary trapping of a non-wetting phase a...
The signal obtained with q-space NMR imaging applied to a confined liquid is directly related to the...