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Fouling can be a serious problem in membrane filtration processes.
Membrane fouling and concentration polarization are major limiting factors in membrane filtration processes permeability (Ghosh 2006).
Air sparging is recognized as an effective way to increase permeate flux in membrane filtration processes.
Batch filtration offers a vital technique within the selection of membrane filtration processes available.
Permeability in membrane filtration processes suffers from two major limiting factors: concentration polarization and membrane fouling.
A mathematical frame for modeling batch and semi-batch membrane filtration processes is provided.
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Frequently, experimental design and artificial neural networks (ANNs) have been successfully used in membrane filtration process in recent years.
A constant volume dilution (CVD) membrane filtration process was designed to perform a chemical-free neutralization of the tomato slurry.
Therefore, in this work, a cross-flow membrane filtration process was designed to separate whey proteins from whey-derived phages.
The upstream adsorption was utilized to strikingly reduce the wastewater strength thereby alleviating its fouling propensity with respect to the UF membranes during the downstream membrane filtration process.
Tóth et al. (2011) used distillation and membrane filtration process for treatment of PIWW, which contains high chemical oxygen demand and adsorbable organically bound halogens (AOX).
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