Measuring moisture distributions during fast transport processes in thin porous media is a challenging task. In this paper, Ultra Fast Imaging (UFI) NMR is proposed as a valuable measurement technique for investigating moisture uptake in porous media by achieving a temporal resolution of 10 ms and spatial resolution between 14.5 and 18 μm. This paper gives a detailed explanation about the methodology and the interpretation of the signal intensity. It is shown that there exist specific T 1- and T 2- relaxation time conditions for performing UFI experiments with signal-to-noise ratios that are sufficiently high. In most cases, a contrast agent is required to optimize these relaxation times and achieve the optimal measurement conditions. In th...
NMR imaging (MRI) and localized NMR spectroscopy are powerful techniques for non-invasively characte...
The penetration of water-glycerol mixtures in porous Al2O3 is measured using NMR imaging to quantita...
Abstract Restricted diffusion of fluids in porous materials can be studied by pulsed field gradient...
Measuring moisture distributions during fast transport processes in thin porous media is a challengi...
An improved high-speed NMR profiling method is introduced that enables us to measure capillary actio...
Liquid penetration in porous cellulosic materials is crucial in many technological fields. The compl...
A versatile and modular nuclear magnetic resonance (NMR) instrument is described that is particularl...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
A commercially available NMR spectrometer has been used to investigate fluid transport within porous...
The uptake, partitioning, and release of ingredients such as water, oil, surfactant, and ions are im...
Because moisture in porous building materials can give rise to several kinds of damage, a detailed k...
The isothermal moisture transport in various porous building materials during absorption and drying ...
The penetration of water–glycerol mixtures in a porous material is studied by using NMR (Nuclear Mag...
The transport of nanoparticles in porous media has received growing attention in the last decades du...
NMR imaging (MRI) and localized NMR spectroscopy are powerful techniques for non-invasively characte...
The penetration of water-glycerol mixtures in porous Al2O3 is measured using NMR imaging to quantita...
Abstract Restricted diffusion of fluids in porous materials can be studied by pulsed field gradient...
Measuring moisture distributions during fast transport processes in thin porous media is a challengi...
An improved high-speed NMR profiling method is introduced that enables us to measure capillary actio...
Liquid penetration in porous cellulosic materials is crucial in many technological fields. The compl...
A versatile and modular nuclear magnetic resonance (NMR) instrument is described that is particularl...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
A commercially available NMR spectrometer has been used to investigate fluid transport within porous...
The uptake, partitioning, and release of ingredients such as water, oil, surfactant, and ions are im...
Because moisture in porous building materials can give rise to several kinds of damage, a detailed k...
The isothermal moisture transport in various porous building materials during absorption and drying ...
The penetration of water–glycerol mixtures in a porous material is studied by using NMR (Nuclear Mag...
The transport of nanoparticles in porous media has received growing attention in the last decades du...
NMR imaging (MRI) and localized NMR spectroscopy are powerful techniques for non-invasively characte...
The penetration of water-glycerol mixtures in porous Al2O3 is measured using NMR imaging to quantita...
Abstract Restricted diffusion of fluids in porous materials can be studied by pulsed field gradient...