By Dibakar Bhattacharyya
Membrane concepts offer a huge technology and know-how base. even supposing there are numerous books within the conventional membrane box, there's a nice desire for a hugely entire e-book. This refereed publication covers fabrics from hugely revered researchers. This name is very multidisciplinary in nature and may be super important to scientists and engineers enthusiastic about a number of actions. scholars and college contributors worldwide will locate this identify to be an outstanding reference ebook. - Invited contributions from prime researchers within the box. - assurance of subject is of worth to scientists/engineers operating in various similar fields [separations/reactions, complex biofunctional fabrics, contactor designs]. - goals to fill industry hole for a hugely accomplished booklet containing advances in either man made and biofunctional/bimimetic membranes.
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Additional resources for New Insights into Membrane Science and Technology: Polymeric and Biofunctional Membranes
As in heat exchange, concentration boundary layers do not increase as rapidly in cross-flow as in axial flow. The reduction in concentration boundary layer thickness increases mass transfer coefficients. One may attribute the negative (lower values) deviations to a combination of the other complexities of shell-side flow illustrated in Figure 2. First, poor fluid distribution from the shell inlet port may lead to higher flows in some regions and lower flows in others than one would expect if the axial pressure gradient was uniform throughout the bundle.
003. The sources ofthe correlations are: o Yang and Cussler , + Prasad and Sirkar , * Costello et al. , x Viegas et al. , 0 Gawronski and Wrzesinska , and small dot Wu and Chen . The  represent theoretical predictions for a square packing with uniform wall mass flux from Miyatake and Iwashita . flow through each region is calculated from an appropriate friction factorReynolds number relationship using the region's hydraulic diameter and assuming the pressure drop across each region is the same.
Dashed curves are approximate analytical solution. The dashed curves show the calculations using the approximate analytical solution, in which case the deposit mass is uniform across the fouled region of the membrane at its maximum value. The solid curves are the calculations using the full numerical solution and show the variation in deposit mass over the fouled region of the membrane. Even at long filtration times, the deposit mass remains relatively uniform over the membrane surface due to the inherent "selfleveling" character of the fouling process.
New Insights into Membrane Science and Technology: Polymeric and Biofunctional Membranes by Dibakar Bhattacharyya