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In the membrane bioreactor process, hollow-fibre microfiltration membrane modules are submerged in a single tank in which aeration, secondary clarification, and filtration can occur, thereby providing both secondary and tertiary treatment in a small land area.
Established technologies based on specific membrane modules are also described.
Mathematical models of hollow-fibre and spiral-wound membrane modules are presented in this paper.
As membranes and membrane modules are becoming cheaper, operation below the threshold flux becomes more practical.
Hollow fiber membrane modules are used in a wide range of separation applications.
The corresponding membrane modules are made in a honeycomb configuration, leading to high packing density and thermochemical stability.
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Four different membrane modules were used to explore the impact of configuration on separation performance.
Improving mass transfer in membrane modules is always desirable, but not easily achieved under laminar regime.
The allocation of membrane area to the two membrane modules was optimized.
Recent researches on the fundamental transport data in the membrane modules were collected and compared.
CHF membrane modules were prepared for pilot plant testing and performance measured using CO2, O2, N2.
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