Exact(3)
The gas diffusion behavior, including the thermal motion and diffusivity, was calculated to understand the gas transport behavior of the BTESE silica membrane.
The gas diffusion behavior analysis revealed that the hybrid silica membrane contained more effective free space, which prompted H2 diffusivity and also produced a good H2/SF6 diffusivity ratio.
In this work, the gas diffusion behavior under static creep loading has been determined in low-density cellular materials based on polyethylene and different contents of clays and coupling agent.
Similar(57)
The MD technique was successfully applied to simulate the characteristics and gas diffusion behaviors of the hybrid BTESE silica membrane.
Lattice Boltzmann method is developed to study the gas diffusion behaviors in the reconstructed anisotropic porous materials with different fractal dimension.
Detailed atomistic structures of blend membranes (poly vinyl alcohol (PVA)/ acrylic acid-co-2-acrylamido-2-methylpropylsulfonic acid) (P AA-AMPS)) were constructed to investigate the sorP AA-AMPS diffusion behavior of gas molecules (werer and propylene) in the membranes.
Using pulse-response experiments in an ultra-high vacuum reactor system the adsorption and diffusion behavior of gases in microporous materials can be determined.
The results showed that the present multi-phase model is capable of identifying important parameters for the wetting behavior of the gas diffusion layers and can be used to identify conditions that might lead to the onset of pore plugging, which has a detrimental effect on the fuel cell performance.
Phase change of the water due to evaporation is therefore an important process in understanding the water and flow behavior in the porous gas diffusion layers (GDLs) of PEFCs.
The diffusion behavior and solubility of gases in the molecular cavity were also simulated.
The behavior of water in the gas diffusion layers of a polymer electrolyte membrane fuel cell (PEMFC) was investigated analytically.
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