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An accurate membrane flux model, the solution-diffusion model, is employed.
Statistical analysis also showed that both the pressure-head and aeration intensity significantly affected membrane flux.
Among the four factors, membrane flux was found to influence TMP the most obviously.
Amphiphilic copolymers have the ability to improve membrane flux and antifouling property.
Reduction in immersion time of MPD led to improve in membrane flux.
Membrane flux and PFHxA rejection rate were monitored throughout the filtration test.
The higher the pressure-head, the greater the impact of aeration intensity on membrane flux.
The results showed that appending electric field had significant influence on the membrane flux.
Mainly, this was attributed to the higher membrane flux in the modified PRO design.
In general, these cleaning/disinfection agents have to improve the membrane flux to a certain extent.
1,2-PD enhanced the membrane flux but reduced the retention much significantly than LiNO3.
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