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Three types of membrane reactors were developed for the oxidative coupling of methane.
Novel membrane reactors were developed for dissolved oxygen (DO) removal from water.
MTBE conversions in the membrane reactors were much enhanced compared to the equilibrium conversions.
Tubular and membrane reactors were compared theoretically in terms of efficiency of the process.
Experimental data obtained from the membrane reactors were compared with the theoretical results and capabilities of the reactors for the DO removal were evaluated.
Similar(55)
Typical materials for multi-phase membrane reactors are briefly listed.
A mathematical model to simulate the performance of enzymatic membrane reactors was developed.
The effect of kinetic and operating parameters on the performance of membrane reactors was determined.
Finally, brief concluding remarks on porous ceramic membrane reactors are given and possible future research interests are also outlined.
Pervaporation membrane reactors are ideal candidates to enhance conversion in reversible reactions generating water as a by-product.
Membrane reactors are becoming increasingly of interest due to their ability to take reactions to completion by continuous product removal.
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