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UF Modeling (Ultrafiltration Modeling)

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Basic membrane process configurations include single-pass, batch, fed-batch, and continuous operation (Fig. 1). Single-pass operation involves a single pass of feed through the module feed channel where it exists as sufficiently concentrated retentate. This requires a long residence time in the modules using long feed channels and/or low feed flow rates. Component concentrations change along the length of the retentate channel. Analysis starts with the steady-state component and solvent mass balances as shown in the Table 1. These consider an incremental area element, dA, in the axial or flow direction for a feed channel, module, or membrane assembly of constant width. Constant density is also assumed. Combining the balance equations and integrating yields a relation between concentrations, volume reduction, and solute passage. The area required for processing is obtained by integrating the solvent balance. The Cheryan flux approximation \( \overline{J} =...

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Correspondence to Herb Lutz .

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© 2016 Springer-Verlag Berlin Heidelberg

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Lutz, H. (2016). UF Modeling (Ultrafiltration Modeling). In: Drioli, E., Giorno, L. (eds) Encyclopedia of Membranes. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-662-44324-8_1208

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