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Biochemical engineering

On the other hand, certain tumor cells have the traits for immortality and rapid proliferation. By combining the two cells by fusion, a hybridoma can be created that has both traits. The monoclonal antibodies (MAbs) produced from the hybridoma cells can be used for diagnosis, disease treatment, and protein purification. [Pg.2]

Animal Agriculture Development of disease-free seed stocks healthier, higher-yielding food animals. [Pg.3]

Plant Agriculture transfer of stress-, herbicide-, or pest-resistance traits to crop species, development of plants with the increased abilities of photosynthesis or nitrogen fixation, development of biological insecticides and nonice nucleating bacterium. [Pg.3]

Specialty Chemicals amino acids, enzymes, vitamins, lipids, hydroxylated aromatics, biopolymers. [Pg.3]

Environmental Applications mineral leaching, metal concentration, pollution control, toxic waste degradation, and enhanced oil recovery. [Pg.3]

Professor Rajiv Dutta Deputy Director Head Amity Institute of Biotechnology Lucknow, India E-mail raJivd lko.amity.edu [Pg.3]

Springer is a pan of Springer Science+Business Media springer.com [Pg.3]

24 Ansari Road, Darya Ganj, New Delhi -110 002, India [Pg.3]

The use ofgenetal descriptive names, registered names, trademarks, etc. in this publication does not imply, even in die absence of a specific statement, that such names are exempt from the relevant protective laws and r ulations and therefore free for general use. [Pg.3]

Product liability The publisher cannot guarantee the accuracy of any information about dosage and applicatioo contained in this book. In every individual case the user must check such information by consulting the relevant literature. [Pg.3]


B. Atkinson and F. Mavituna, Biochemical Engineering and Biotechnology Handbook, Macmillan, London, 1983. [Pg.337]

B. Atkinson and F. Mavituna, Biochemical Engineering andBiotechnology Handbook, 2nd ed., Macmillan Pubhshers Ltd., Basingstoke, UK, 1991. An exceptional collection of information on all aspects of fermentation with an exhaustive and up to date bibhography. [Pg.185]

J. E. Bailey and D. F. Ohis, Biochemical Engineering Fundamentals, 2nd ed. McGraw-HiU Book Co., Inc., New York, 1986. A very good treatise describing the apphcation of basic engineering principles to fermentation technology. [Pg.185]

H. C. Vogel, Fermentation and Biochemical Engineering Handbook, Noyes Publishing, Inc., Park Ridge, N.J., 1983. [Pg.185]

Absorption Air pollution Automatic control Biochemical engineering... [Pg.61]

Arthur E. Humphrey, Ph.D., Retired, Professor of Chemical Engineering, Pennsylvania State University Member, U.S. National Academy of Engineering, American Institute of Chemical Engineers, American Chemical Society, American Society for Microbiology (Section 24, Biochemical Engineering)... [Pg.12]

ACS, Washington DC, 1990, pp. 14—34]. Secdion 24 in this handbook provides a general discussion of biochemical engineering. [Pg.2056]

BIOCHEMICAL ENGINEERING TABLE 24-2 Comparison of Ethanol Fermenters... [Pg.2138]

FIG. 24-23 Continuous culture with recycle. (A. E. Humphrey, Biochemical Engineering in Encyclopedia of Chemical Processing and Design, -ool. 4, July 1977,pp. 359A 94.)... [Pg.2147]

The term fermentation is often used loosely by biochemical engineers. Biochemists have a more focused perspective (anaerobic) catabolism of an organic compound in which the compound serves as both an electron donor and acceptor and in which ATP is produced. [Pg.853]

Bailey, J. E. and Ollis, D. F., Biochemical Engineering Eunda-mentals, 2nd ed., Me.Graw-Hill Book Co., 1986. [Pg.908]

Bungay, H. R., Computer Games and Simulation for Biochemical Engineering, John Wiley Sons, 1985. [Pg.908]

This is an essential topic for biochemists and biochemical engineers. Biochemical reactions involve both cellular and enzymatic processes, and the principal differences between biochemical and chemical reactions lie in the nature of the living systems. Biochemists and biochemical engineers can stabilize most organic substances in processes involving microorganisms. [Pg.1116]

W. Hummel, in New Enzymes for Organic Synthesis. Screening, Supply and Engineering (T. Scheper, ed.) [Advances in Biochemical Engineering. Biotechnology, Vol. 58], p. 145. Springer-Verlag, Berlin, 1997. [Pg.286]

J. E. Bailey and D. F. Ollis, Biochemical Engineering Eundamentals, McGraw-Hill, New York, 1986. [Pg.346]

Masanori Hara Department of Chemical and Biochemical Engineering, Rutgers University,... [Pg.892]


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See also in sourсe #XX -- [ Pg.425 ]

See also in sourсe #XX -- [ Pg.175 , Pg.183 , Pg.192 ]

See also in sourсe #XX -- [ Pg.465 , Pg.466 , Pg.467 ]




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Advances in Biochemical Engineering Biotechnology, Vol

Biochemical Engineering Nomenclature

Biochemical Engineering: A Textbook for Engineers, Chemists and Biologists

Biochemical engineer

Biochemical engineer

Biochemical engineering animal cells

Biochemical engineering batch

Biochemical engineering biological reactors

Biochemical engineering cell cultures

Biochemical engineering computer aids

Biochemical engineering continuous

Biochemical engineering continuous culture

Biochemical engineering controls

Biochemical engineering fermenters

Biochemical engineering immobilizing enzymes

Biochemical engineering mathematical analysis

Biochemical engineering mixed cultures

Biochemical engineering oxygen transfer

Biochemical engineering process modeling

Biochemical engineering product recovery

Biochemical engineering reaction kinetics

Biochemical engineering reactors

Biochemical engineering recycle

Biochemical engineering scale

Biochemical engineering sterilization

Biochemical reaction engineering

Biochemical reaction engineering (Chapter

Biochemical reaction engineering (Chapter examples

Carrier, biochemical engineering

DESIGN PROBLEMS IN BIOCHEMICAL ENGINEERING

Fermenters: biochemical engineering, 176 bioprocess

Funding biochemical engineering research

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Subject biochemical engineering

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Translating between Biochemical and Chemical Engineering Equilibrium Expressions

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