Get Bioprocess Technology: Kinetics and Reactors PDF

By Professor Dr. Anton Moser (auth.)

ISBN-10: 1461387485

ISBN-13: 9781461387480

ISBN-10: 1461387507

ISBN-13: 9781461387503

This booklet is predicated on a 1981 German language variation released by means of Springer­ Verlag, Vienna, lower than the name Bioprozesstechnik. Philip Manor has performed the interpretation, for which i'm deeply thankful. This publication differs from the German variation in lots of methods along with language. it truly is considerably enlargened and up to date, and examples of desktop simula­ tions were further including different appendices to make the paintings either extra finished and more effective. This publication is the results of over 15 years of expertise in instructing and examine. It stems from lectures that i started in 1970 on the Technical collage of Graz, Austria, and persevered on the college of Western Ontario in London, Canada, 1980; on the loose college of Brussels, 1981; at Chalmers Technical college in G6teborg, Sweden; on the Academy of Sciences in lena, East Germany; on the "Haus der Technik" in Essen, West Germany, 1982; on the Academy of technology in Sofia, Bulgaria; and on the Technical college of Delft, Netherlands, 1986. the most pursuits of this booklet are, first, to bridge the space that often exists among uncomplicated rules and utilized engineering perform, moment, to reinforce the mixing among organic and actual phenomena, and, 3rd, to give a contribution to the interior improvement of the sector of biotechnology through describing the process-oriented box of bioprocess technology.

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Extra resources for Bioprocess Technology: Kinetics and Reactors

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The Principles of Bioprocess Technology obtained for anaerobic microorganisms (Speece and McCarty, 1964). 12b) 2. There is, consequently, no unique elementary balance equation for microbial growth; rather, there is a range of such equations with different numerical coefficients. , number of organisms containing 1 g' atom of total nitrogen or of protein-nitrogen, or of DNA phosphorus) vary with growth rate and limiting substrate. It would seem logical to derive the concept of a "mole" of microorganisms from the empirical formula that (neglecting sulfur, phosphorus, and ash) can be expressed in the general form CaHbOcN d.

Stouthamer and Bettenhaussen (1973) pointed out that the effect of maintenance energy on YATP has been underestimated, and it is one factor responsible for the wide range of YATP values found (5-32 g dry biomass per mole ATP, depending on the nature of the carbon). The concept of the "C-mole of biomass" allows yields to be expressed in molar units. 19) c [ g' atom cell C formed] g . 20) and While both may be useful, the latter is usually preferred, because it is independent of the number of carbon atoms in the substrate molecule (Herbert, 1975).

The same concept of yield can be applied to quantify the relation between consumed or produced amounts. 4 and represented by Equs. 14a-o. 15a) or [ g cells formed ] _ g. 16) This yield factor plays an important role when the molecular energetics of biochemical pathways are considered. 5, independent of the nature of the organism and the environment. According to Stouthamer and Bettenhaussen (1973), an equation can be assumed for the consumption of ATP in a metabolizing cell, 30 2. The Principles of Bioprocess Technology YATP = YATp,max .

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Bioprocess Technology: Kinetics and Reactors by Professor Dr. Anton Moser (auth.)

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