Download Bioprocesses and Applied Enzymology by Jakob Reiser (auth.) PDF

By Jakob Reiser (auth.)

Contents: I. Endo, T. Nagamune, Saitama, Japan; S. Tachikawa, H. Inaba, Kanagawa, Japan: A Tubular Bioreactor for excessive Density Cultivation of Microorganisms.- okay. Ramasubramanyan, ok. Venkatasubramanian, Piscataway, NJ/USA: Large-scale Animal mobile Cultures: layout and Operational Considerations.- N. Kosaric, London, Ontario/Canada; R. Blaszczyk, Lodz, Poland: Microbial Aggregates in Anaerobic Wastewater Treatment.- L. Vallander, K.-E. Eriksson, Stockholm, Sweden: Production of Ethanol from Lignocellulosic fabrics: nation of the Art.- A. Tanaka, H. Nakajima, Kyoto, Japan: Application of Immobilized starting to be Cells.- J. Kamphuis, W.H.J. Boesten, Q.B. Broxterman, H.F.M. Hermes, J.A.M. van Balken, E.M. Meijer, H.E. Schoemaker, Geleen, The Netherlands: New advancements within the Chemo-Enzymatic creation of Amino Acids.- T. Ohshima, ok. Soda, Kyoto, Japan: Biochemistry and Biotechnology of Amino Acid Dehydrogenases.

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168] have demonstrated that the process of bacterial adhesion is related to the negative surface charge density and to the relative hydrophobicity/hydrophilicity at the surface. It has been shown [172] that flocculation/ aggregation of activated sludge cells can be predicted using contact angle and zeta potential measurements. The presence of divalent metal ions, which could act as a bridge between negatively charged groups on cell surfaces, have also proved to be important in the aggregation process.

5 References . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28 28 35 36 37 38 39 40 41 41 44 46 51 55 The p h e n o m e n o n aggregation of anaerobic bacteria gives an opportunity to speed up the digestion rate during methanogenesis. The aggregates are mainly composed of methanogenic bacteria which convert acetate and H2/CO 2 into methane. Other bacteria are also included in the aggregates but their concentration is rather small.

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