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This membrane design is detailed in a Nano Letters paper published last February.
Additionally, a new theoretical membrane design approach is presented.
The research results may be employed in membrane design.
The advantages of the dual-layer hollow fibre membrane design and the single-step co-extrusion and co-sintering process employed to achieve this membrane design are addressed.
A secondary benefit of the membrane design is the confinement of reaction products in the bulk stream on the active layer side, thus reducing the downstream separation needs.
The multi-layer model yields a useful definition for the reaction boundary layer and provides a comparison among different membrane kinetic configurations for membrane design purposes.
The mode overlap with the gain material improved from Γ = 0.36 for a typical laser stack on a glass substrate to Γ = 0.59 for our membrane design (Fig. 1g).
This membrane design could be 50 times more water-permeable than today's polymer filters, the researchers estimate, which means less energy would be required to push the liquid through.
The results obtained in this study may provide important insights into reinforced PRO membrane design.
The SFSELM design is similar to the supported liquid membrane design in some aspects.
An example of membrane design for integration in power plants will be given.
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CEO of Professional Science Editing for Scientists @ prosciediting.com