Scott K., Handbook of Industrial Membranes, 1995 Elsevier Science Publishers LTD., pp. 32-33. |
Brockelbank, et al., "Primary Separation" Chap. 4in G. Schmidt-Kastner et al., Hsg.: "Recovery of Bioproducts", European Federation of Biotechnology, Study Report of Working Party on Downstream Processing, 1993, pp. 1-130. |
Eriksson, Desalination, 53:259-263 (1985), "Some Examples Of The Use of Crossflow Filtration In The Downstream Processing In A Biochemical Industry". |
Winzeler, Chimia, 44:288-291 (1990), "Membran-Filtration mit hoher Trennleistung und minimalem Energiebedarf" (In German). |
Muller et al., Chem. Ing.-Tech. 62:(5):380-390 (1990), "Die Chromatographie, eine zentrale Methode in der biotechnischen Aufarbeitung" (In German). |
Sullivan et al., Chem. Eng. Prog. 80(1):68-75 (1984), Use of this membrane separation technique will accelerate because of its economic and processing advantages and the availability of new membrane materials. |
Flaschel et al., Adv. In Biochem. Engineering/Biotechnology, vol. 26, Downstream Processing, S. 73-142, N.Y. (1983); Ed.: D.J. Bell. |
Atkinson et al., Biochem. Engineering and Biotechnology Handbook, Chap. 16, "Downstream Processing" and Chap. 17m "Product Recovery Processes and Unit Operations", Second Ed., Stockton Press 1991, New York. |
Dodt et al., Biol. Chem. Hoppe-Seyler, 366:379-385 (1985), "The Complete Covalent Structure of Hirudin". |
Markwardt, Biomed. Biochem. Acta, 44:1007-1013 (1985), "Pharmacology of Hirudin: One hundred years after the first report of the anticoagulant agent in medicinal leeches". |