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The control variable was feed flow.
The hygroscopicity values decreased with increasing feed flow rate.
The feed flow conditions were simulated and calculated.
Fast feed flow rate resulted in a shortened induction period.
These include the observation that for vacuum pervaporation shell-side feed flow is superior, whilst for sweep gas pervaporation tube-side feed flow should be selected.
However, feed flow velocity does not significantly affect the flux, especially at low feed temperatures.
Feed-forward disturbance control was designed for the compensation of the feed flow fluctuations.
The feed flow rates or residence time were identified as significant variables of this microreaction system.
Limiting current densities (LCDs) were determined at different feed flow rates.
Dynamic simulations show that rather large feed flow rate and composition disturbances can be effectively rejected.
Generally, for parallel/cross flow MEE the feed flow rate is same for all the effects.
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