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The mesoporous structure is more suitable for diffusion of reactants.
The thermodynamic modeling provided a valuable guide for selecting an amorphous composition suitable for diffusion barrier applications.
These extreme parameters still did not produce an SCF environment suitable for diffusion or dissolution mass transfer, and thus a recovery of 76.2% (n = 3, RSD = 7.5%) was only obtained.
Numerous designs have been suggested in the literature to produce the desired magnetic field distributions, including designs which feature constant magnetic field gradients suitable for diffusion and profiling experiments.
The importance of the present results in the design and operation of catalytic stirred tank reactor with a builtin heat transfer facility suitable for diffusion controlled exothermic reactions which need rapid cooling to protect heat sensitive catalysts and heat sensitive products was noted.
This model as stated earlier is suitable for diffusion of uncharged molecules.
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Therefore, future work should focus on the preparation, characterization and modelling of catalysts suitable for surface diffusion mechanism.
In terms of polarity as estimated by the calculated octanol/water partition coefficient clogP, FragranceDB overlapped nicely with PubChem, ChEMBL and ZINC by covering the range 0 < clogP < 5, which is a polarity range suitable for rapid diffusion in biological media (Figure 1C).
A model-based experimental analysis framework is presented that allows the efficient and direct discrimination between suitable prediction models for diffusion coefficients.
Implication of the present results for the design and operation of electrochemical and catalytic reactors suitable for conducting liquid solid diffusion controlled reactions such as photocatalytic reactions and immobilized enzyme catalyzed biochemical reactions was highlighted.
When we run a simulation using the whole system (6– 10), we should use a time integration technique that is suitable for the stiff diffusion equations in combination with the non-stiff ODEs.
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