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Gas diffusion limitations for the reformed fuel limited the performance at high temperature, e.g., ≈0.5 W/cm2 at 750 °C.
However, its limited pore size (5 5.5 Å) offers diffusion limitations when working with large molecules.
However, internal diffusion limitations had to be taken into account.
Diffusion limitations during reaction may also be a consideration.
However, apparent NOx diffusion limitations prevent complete utilization.
The unimolecular reaction for cellulose nitrate deflagration avoids the usual diffusion limitations of traditional combustion synthesis.
The optimal washcoat thickness to avoid diffusion limitations is 5 μm.
However, whole cell biocatalyst systems are critically disadvantaged due to substrate diffusion limitations.
This is due mainly to diffusion limitations within the grafting material.
This effect may reduce the effective reaction rate due to increased diffusion limitations.
Washcoat diffusion limitations adversely affect the high temperature performance more than the NH3 oxidation to NOx.
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