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The membrane contactor module is operated under partially wetted and counter-current flow mode.
Absorption performance in the cyclic process depends on selective sorption and other absorbent properties especially viscosity and hollow-fiber membrane contactor module design employing microporous hydrophobized polyether ether ketone (PEEK) hollow fiber-based membranes.
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PVDF and PSf hollow fiber membranes were used in the membrane contactor modules.
The PSMAB process separation performance has been explored using PEG 400-based absorbent in two hollow-fiber membrane contactor modules with improved designs in series at temperatures up to 100 °C and feed-gas pressures up to 1720 kPag.
In a first step, a membrane contactor model is developed based on mass and energy balances and the simulations are validated using experimental results obtained on hollow fiber modules with microporous membranes.
As a proportional increase of the absorption rate with the number of membranes was observed, when required, more membranes can be easily added to a contactor module to increase the absorption performance.
The proposed modules and an ordinary single hollow fiber membrane contactor were modeled using partial differential equations based on a single component absorption scheme.
The advantages and limitations of key fabrication and module-design techniques are examined, before three of the most innovative membrane contactor operations – membrane distillation (MD), osmotic membrane distillation and crystallisation – are investigated in depth.
With the analysis of key challenges being addressed for membrane contactor development, the state-of-the-art of highly hydrophobic microporous membranes, novel liquid absorbents and membrane module design and process simulation are presented.
The membrane contactor pilot unit was installed near the flue, where a slip stream of the flue gases was continuously sampled and fed in the hollow fiber membrane module.
This paper provides a clear overview on the recent developments of membrane contactor technology in PCC.
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