Results 291 to 300 of about 557,900 (328)
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Biochemical reaction engineering and biochemical reactors

Chemical Engineering Science, 1980
Abstract Biochemical reactors provide a fascinating assortment of new challenges to the reaction engineer. These arise because of the characteristics of the reactants, catalysts, and the reaction networks involved. Especially important are genetic controls of cell metabolism and structure/function/activity relationships in enzyme catalysis.
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Biochemical engineering and industry

Journal of Biotechnology, 1997
Abstract The use of biochemical engineering in an industrial setting is presented by examples from the author's own field of expertise: process development for industrial enzymes. Examples given cover the fields bioreactor performance, measurement and control on fermentation, downstream operations and development and optimization of production ...
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A View of the History of Biochemical Engineering

2000
The authors present a view of biochemical engineering by describing their personal interests and experience over the years involving mostly conversion of lignocellulosics into fuels and chemicals and the associated engineering subjects.
George T. Tsao, Raphael Katzen
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Biochemical engineering materials screening and monitoring

Plastic and Reconstructive Surgery, 1969
AbstractThis work was motivated by the need for a systematic compatibility screen for materials of interest for heart assist devices. A practical polymer screening and monitoring program for biochemical engineering materials was developed. Initial emphasis was placed on screening to measure degradation to low molecular weight, water miscible moieties ...
N. Gordon   +4 more
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Biochemical Engineering

2019
All engineering disciplines have been developed from the basic sciences. Science gives us the information on the reasoning behind new product development, whereas engineering is the application of science to manufacture the product at the commercial level. Biological processes involve various biomolecules, which come from living sources.
Debayan Das, Debabrata Das
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Irreversibility in biophysical and biochemical engineering

Physica A: Statistical Mechanics and its Applications, 2012
Abstract The thermodynamic analysis of open systems is fundamental in engineering. For the open systems at their steady state, two apparently opposed principles for the rate of entropy production have been used: the minimum entropy production rate derived by Prigogine, used in the description of various processes in physics, chemistry and biology ...
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Physics and biochemical engineering: 3

Physics Education, 2006
Once an antibiotic has been produced on a large scale, as described in our preceding articles, it has to be extracted and purified. Filtration and centrifugation are the two main ways of doing this, and the design of industrial processing systems is governed by simple physics involving factors such as pressure, viscosity and rotational motion.
Robert Fairbrother   +2 more
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Biochemical engineering

Current Opinion in Biotechnology, 1997
, May, , Schwartz
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Biochemical engineering

Current Opinion in Biotechnology, 2004
Manuel J T, Carrondo, John G, Aunins
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The Needs for—and of—Biochemical Engineers [PDF]

open access: possibleNature Biotechnology, 1989
Steven Peretti, Robert Cherry
openaire   +1 more source

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