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Improving mass transfer in membrane modules is always desirable, but not easily achieved under laminar regime.
A protein ultrafiltration plant involving the use of commercially available tubular ceramic membrane modules is studied.
The algebraic and differential equation system modelling the mass transfer along the membrane modules is presented.
Using this method, a cheese whey ultrafiltration plant involving the use of commercially available tubular ceramic membrane modules, is studied.
Non-uniform flow in the hollow fiber membrane modules is believed to cause non-ideal performance of the module.
Given the current advances in membranes for energy efficient separation in general, a significant portion of the works is primarily centered around the development of membrane material while the operability of the membrane modules is regularly disregarded.
Similar(53)
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.
Four different membrane modules were used to explore the impact of configuration on separation performance.
Mathematical models of hollow-fibre and spiral-wound membrane modules are presented in this paper.
The allocation of membrane area to the two membrane modules was optimized.
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