The application of the one-dimensional theory of mass transport to the derivation of mathematical formulas for clearances of a variety of membrane mass exchangers, namely hemodialyzers, hemofilters, plasma separators, and the cascade filtration procedure, has been reviewed. The applied theory predicts that clearances depend approximately on fluid inlet rates but not no concentrations, and with constant fluid flow rates, clearances are constant. Also, the applications of device clearance in kinetic modelling has been discussed.
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