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Experimental study of mass transfer in a convective mass-transfer apparatus for membrane plasma exchange
Abstract The possibility to achieve a high degree (up to 90%) of blood plasma exchange in a single-stage, three-channel, countercurrent convective mass exchange apparatus (CMEA) has been confirmed with the use of a model suspension as an example. It has been shown that CMEA is more efficient than a plasma filter at high (over 50%) degrees of plasma exchange.
Experimental study of mass transfer in a convective mass-transfer apparatus for membrane plasma exchange
Abstract The possibility to achieve a high degree (up to 90%) of blood plasma exchange in a single-stage, three-channel, countercurrent convective mass exchange apparatus (CMEA) has been confirmed with the use of a model suspension as an example. It has been shown that CMEA is more efficient than a plasma filter at high (over 50%) degrees of plasma exchange.
Experimental study of mass transfer in a convective mass-transfer apparatus for membrane plasma exchange
Aliev, M. R. (Autor:in)
Petroleum Chemistry ; 56 ; 450-453
01.05.2016
4 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Membrane plasma exchange in a countercurrent convective mass-transfer apparatus
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