Electro-membrane separations in biotechnology

Author:

Lazarova Zdravka1,Beschkov Venko2,Velizarov Svetlozar3

Affiliation:

1. AIT Austrian Institute of Technology , Konrad-Lorenz-Straße 24 , Tulln 3430 , Austria

2. Institute of Chemical Engineering, Bulgarian Academy of Sciences , Sofia 1113 , Bulgaria

3. LAQV, Chemistry Dept./FCT/Universidade Nova de Lisboa , 2829-516 Caparica , Portugal

Abstract

Abstract Membrane processes are of crucial importance for downstream processing in biotechnology. This is due to their selectivity and the mild operating conditions, enabling to extract target products without damages caused by overheating and chemical agents. Besides the most spread membrane processes like ultrafiltration and reverse osmosis, electrodialysis is very important for removal and extraction of electrically charged products, i. e. anions of organic acids, some antibiotics, etc. The electrodialysis process can be organized in batch or continuous mode. On the other hand, in the electro-crossflow filtration, the transport of target solutes across the membrane is guided by two main driving forces, the transmembrane pressure and the electric potential. This combination enables various possibilities for more selective and efficient downstream processing in biotechnology. This chapter provides a brief overview of recent achievements of electrodialysis in selected bioproducts separations and recovery. A special focus, including original experimental data, is then given to electro-filtration, which is a powerful tool creating new opportunities for performing separations on the basis of both electric charge and particle size differences.

Publisher

Walter de Gruyter GmbH

Subject

General Physics and Astronomy,General Materials Science,General Chemistry

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