Energetics and kinetics in biotechnology

  • 330 Pages
  • 0.56 MB
  • English
Elsevier Biomedical Press , Amsterdam, New York
Biochemical engineering -- Mathematical models., Bioenergetics -- Mathematical models., Chemical kinetics -- Mathematical models., Models, Biological., Kinetics., Energy metabo
StatementJ.A. Roels.
LC ClassificationsTP248.3 .R63 1983
The Physical Object
Paginationx, 330 p. :
ID Numbers
Open LibraryOL3496363M
ISBN 100444804420
LC Control Number82016409

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Energetics and kinetics in biotechnology. Amsterdam ; New York: Elsevier Biomedical Press, The University of Chicago Press. Books Division. Chicago Distribution Center.

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() Kinetics and energetics of photosynthetic micro-organisms in photobioreactors. In: Bioprocess and Algae Reactor Technology, Apoptosis. Advances in Biochemical Engineering Biotechnology, vol   Modern Biotechnology provides a much-needed introduction connecting the latest innovations in this area to key engineering fundamentals.

With an unmatched level of coverage, this unique resource prepares a wide range of readers for the practical application of biotechnology in biopharmaceuticals, biofuels, and other bioproducts.

A steady-state model which considers the anaerobic process as a series of bacterially mediated reactions is presented. The organism yield is considered to be a function of reaction energetics. The analysis allows computation of the concentration of all components and organism concentrations as a function of the cellular retention time.

The results from the model are qualitatively in agreement. Applications of kinetic cell factory models for improving production, substrate utilization, product quality, and process design are reviewed.

In the last part, a number of advantages and challenges of kinetic modeling are listed and some future perspectives of kinetic modeling in biotechnology are discussed.

The recognition that many aspects of the behaviour of organisms can be interpreted in terms of the properties of chemical reaction systems has emphasised the importance of the part that thermodynamics and kinetics can play in the development of biochemistry.

In recent years a number of articles and reviews have dealt with aspects of this problem, but no systematic account has been available. Does any one have books 'Energetics and Kinetics in Biotechnology' by. Please if any body have this book provide me.

I need it for further planning of my research. This book is a short introduction to the engineering principles of harnessing the vast potential of microorganisms, and animal and plant cells in making biochemical products. It was written for scientists who have no background in engineering, and for engineers with minimal background in biology.

The overall subject dealt with is process. But the coverage goes beyond the process of. Biotechnology is one of the major technologies of the twenty-first century.

Its wide-ranging, multi-disciplinary activities include recombinant DNA techniques, cloning and the application of microbiology to the production of goods from bread to antibiotics. In this new edition of the textbook Basic Biotechnology, biology and bioprocessing topics are uniquely combined to provide a complete.

Kinetic energy depends upon two things, i.e. mass (m) and velocity (v) as the formula of kinetic energy depicts; Where ‘m’ is the mass of the object that is in motion and ‘v’ is the velocity.

Therefore, by the above formula, we can say that kinetic energy is directly proportional to the mass and square of the speed of the object in motion. Biochemical Engineering and Biotechnology demonstrates the application of biological sciences in engineering with theoretical and practical aspects to enhance understanding of knowledge in this field.

The book adopts a practical approach, showing related case studies with original research data. Also, the kinetic energy of a body is expected to increase tremendously as the velocity of the body increases. This is because; the Kinetic energy (K.E) is directly proportional to the square of the body’s velocity (v 2).The mass of the body also contributes directly to the kinetic energy of a body due to the direct proportionality that exists between K.E and mass as exemplified by the.

Address: P.O. Box Batavia, IL Phone: Fax: Email: [email protected]   Production kinetics. Microbial growth kinetics, i.e., the relationship between the specific growth rate (μ) of a microbial population and the substrate concentration (s), is an indispensable tool in all fields of microbiology, be it physiology, genetics, ecology, or biotechnology, and therefore it is an important part of the basic teaching of microbiology [].

Now let it drop. Its newly-acquired potential energy begins to re-appear as kinetic energy as it accelerates downward at a velocity increasing by m/sec every second ( m sec –2 or 32 ft sec –2).

At the instant it strikes the surface, the potential energy you gave supplied to the book has now been entirely converted into kinetic energy. A series of triethylenetetrammonium nitrate protic ionic liquid (TNPIL) functionalized, highly ordered mesoporous SBA molecular sieves with different loadings have been synthesized via impregnation.

The CO2 capture performance of the hybrid sorbents was evaluated under conditions mimicking a combustion flue gas (15% CO2) over the temperature range of – K. The breakthrough. This book is a progressive presentation of kinetics of the chemical reactions. It provides complete coverage of the domain of chemical kinetics, which is necessary for the various future users in the fields of Chemistry, Physical Chemistry, Materials Science, Chemical Engineering, Macromolecular Chemistry and Combustion.

Principles of catalysis, enzymes and enzyme kinetics, enzyme regulation, mechanism of enzyme catalysis, isozymes G. Conformation of proteins (Ramachandran. Abstract: Drug development is a long and expensive process.

It starts from the identification of a small molecule (hit compound) endowed with the ability to suppress a cellular or viral enzyme essential for the development of a given disease and proceeds through subsequent rounds of structural changes and optimization until the desired pharmacological properties are reached (lead compound).

Search in book: Search Contents. Preface to College Physics. About OpenStax; About This Book. Kinetics, with close ties to the industry globally, takes the mantel of responsibility seriously in facility planning, construction, and continuing operations.

As a result, five important questions are essential for adding rigor when responding to any request for assistance on piping and process modules. Key Terms. first law of thermodynamics: A version of the law of conservation of energy, specialized for thermodynamical systems, that states that the energy of an isolated system is constant and can neither be created nor destroyed.; work: A measure of energy expended by moving an object, usually considered to be force times work is done if the object does not move.50 Doc Scientia - Textbook and Workbook Book 2 - Natural Sciences - Grade 7 Energy and change Contextual questions 1 Identify the type of potential energy in the photographs below: A.

B. C. 2 State whether each of the following possesses potential energy or kinetic energy.