By N. W. F. Kossen (auth.), Enrique Galindo, Octavio T. Ramírez (eds.)
Bioprocess engineering performs a key function within the improvement and optimization of bioprocesses resulting in the goods of biotechnology. A survey of the state of the art during this box is tremendously wanted. This paintings covers the entire crucial sub-areas and as such is needed studying for scientists energetic in all of the disciplines considering bioprocess engineering. This assessment of simple and utilized techniques is introduced jointly via a wide overseas team of professional authors.
The paintings is a mirrored image of the 1st foreign Symposium on Bioprocess Engineering, June 1994. notwithstanding, it has to be emphasised that the publication can't be perceived as a typical symposium complaints quantity: a strict peer-review strategy assures the readers of a excessive point of caliber; greater than 1 / 4 of the paintings involves invited contributions, whereas lower than half the spontaneously submitted manuscripts have been accredited for book.
Advances in Bioprocess Engineering belongs one of the quintessential set of tools of latest researcher during this box.
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Extra resources for Advances in Bioprocess Engineering
5. Moo-Young, M. , Biotechnology, 6(11), 1291-1296 (1988) . Considerations for designing bioreactors for shearsensitive culture. 6. , Kida, K. , J. Ferment. , 74, 129131 (1992). The influence of shear stress and its reduction in the production of saccharifying enzyme from shochu distillery wastewater by Aspergillus awamori var. kawachi. 7. Lang, C . , 30 , 1692-4 (1958). simple microdetermination of Kj eldahl nitrogen in biological materials. 8. Updegraff, D. , Anal. , 32, 420-4 (1969). Semimicro determination of cellulose in biological materials.
J. Ferment. , 74, 129131 (1992). The influence of shear stress and its reduction in the production of saccharifying enzyme from shochu distillery wastewater by Aspergillus awamori var. kawachi. 7. Lang, C . , 30 , 1692-4 (1958). simple microdetermination of Kj eldahl nitrogen in biological materials. 8. Updegraff, D. , Anal. , 32, 420-4 (1969). Semimicro determination of cellulose in biological materials. 9. Chisti, Y. , Biotechnol. , 34, 1391-1392 (1989). On the calculation of shear rate and apparent viscosity in airlift and bubble column bioreactors.
Effect of agitation on protein production and cellulose utilization. 70) Values in parentheses are relative to the value at 250 rpm. Identical fermentations conducted with the turbine replaced with an axial flow Prochem impeller (Figure 2) operated at 250 rpm gave marginally higher specific Figure 2. The Prochem Maxflo axial flow impeller. CONCLUSIONS Solid-substrate slurry fermentation systems for highly aerobic and shearsensitive cultures of the mycelial fungus Neurospora sitophila present an unusually complex design problem.