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The mechanism of concerted exchange component can explain the interface zone mutual diffusion phenomenon between BFO films and substrates.
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Owing to the very high concentration of components in ionic liquid, the transport of lithium ions is described by the mutual diffusion phenomena using Maxwell-Stefan diffusivities, which are obtained from atomistic simulation.
The mutual diffusion coefficient indicates that the flux of a diffusing component is proportional to the concentration gradient.
Mutual diffusion coefficient of species (cm2/s).
The mutual diffusion coefficients of binary gas mixture of CO2 CH4 in coal are computed through Maxwell Stefan diffusion theory.
Self-diffusion and mutual diffusion of CO2 CH4 mixture are investigated through molecular simulation for the first time.
In these conditions the diffusion phenomenon is prevalent.
Predictions of mutual diffusion from the self-diffusion data and published thermodynamic data by using the Vrentas-Duda theory are in agreement with the measured mutual diffusivities.
The relationship of the mutual diffusion coefficients is [mmim]DMP/CH3OH > [mmim]DMP/H2O > LiBr/H2O on the same conditions.
The model was validated to show good concurrence with the experimental mutual diffusion data.
A mutual diffusion coefficient on the order of 2×10−8 cm2/s was calculated at 100°C.
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