Coverart for item
The Resource Photobioreaction engineering, edited by Jack Legrand

Photobioreaction engineering, edited by Jack Legrand

Label
Photobioreaction engineering
Title
Photobioreaction engineering
Statement of responsibility
edited by Jack Legrand
Contributor
Subject
Language
eng
Summary
Annotation
Member of
Cataloging source
IDEBK
Dewey number
660.6/3
Index
index present
LC call number
TP248.3
Literary form
non fiction
Nature of contents
dictionaries
http://library.link/vocab/relatedWorkOrContributorName
Legrand, Jack
Series statement
Advances in chemical engineering
Series volume
volume 48
http://library.link/vocab/subjectName
  • Biochemical engineering
  • Photobiochemistry
  • Bioreactors
  • SCIENCE
  • TECHNOLOGY & ENGINEERING
  • Biochemical engineering
  • Bioreactors
  • Photobiochemistry
Summary expansion
'Photobioreaction Engineering', the latest edition in the 'Advances in Chemical Engineering' series, a serial that was established in 1960, and remains one of great importance to organic chemists, polymer chemists, and many biological scientists. It includes contributions from established authorities in the field who combine descriptive chemistry and mechanistic insight to create an understanding of how the chemistry drives the properties
Label
Photobioreaction engineering, edited by Jack Legrand
Instantiates
Publication
Note
Includes index
Carrier category
online resource
Carrier category code
  • cr
Carrier MARC source
rdacarrier
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
Photobioreactor Modeling and Radiative Transfer Analysis for Engineering Purposes / Claude-Gilles Dussap -- 1. Introduction -- 2. Calculating the Radiative Properties of Photosynthetic Microorganisms -- 3. Analysis of Multiple-Scattering Radiative Transfer Within Photobloreactors: Approximate Solutions for the Radiation Field Within One-Dimensional Cartesian Photobloreactors -- 4. Numerical Implementation of Photobioreactor Models by the Monte Carlo Method, Including Rigorous Solution of the Radiative Transfer Equation for Complex Geometric Structure -- 5. Stoichiometric, Thermoklnetic, and Energetic Coupling with a Radiation Field: Calculation of the Main Averaged Rates and Efficiency for the Photobioreactor -- Acknowledgments -- References -- 2. Interaction Between Light and Photosynthetic Microorganisms / Razmig Kandilian -- 1. Introduction -- 2. Background -- 3. Theoretical Predictions -- 4. Experimental Measurements -- 5. Radiation Characteristics Under Various Conditions -- 6. Conclusions and Prospects -- References -- 3. Modeling of Microalgae Bioprocesses / Clemens Posten -- 1. Introduction -- 2. Basic Considerations and General Approach -- 3. Building Blocks for Phototrophic Process Models -- References -- Further Reading -- 4. Microalgal Photosynthesis and Growth in Mass Culture / Marcel Janssen -- 1. Fundamentals of Photoautotrophic Growth and Light -- 2. Quantifying Light-Limited Microalgal Growth -- 3. Estimating Photobioreactor Productivity -- 4. Improving the Estimation of Photobioreactor Productivity -- References -- 5. Industrial Photobloreactors and Scale-Up Concepts / Jack Legrand -- 1. Introduction -- 2. PBR Engineering and Scaling Rules -- 3. Modeling PBRs -- 4. Optimization of PBR Operation -- 5. Development of Commercial Technologies Based on PBR Engineering Rules -- 6. Conclusion
Control code
936628040
Dimensions
unknown
Extent
1 online resource.
Form of item
online
Isbn
9780128037010
Media category
computer
Media MARC source
rdamedia
Media type code
  • c
http://library.link/vocab/ext/overdrive/overdriveId
892943
Specific material designation
remote
System control number
(OCoLC)936628040
Label
Photobioreaction engineering, edited by Jack Legrand
Publication
Note
Includes index
Carrier category
online resource
Carrier category code
  • cr
Carrier MARC source
rdacarrier
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
Photobioreactor Modeling and Radiative Transfer Analysis for Engineering Purposes / Claude-Gilles Dussap -- 1. Introduction -- 2. Calculating the Radiative Properties of Photosynthetic Microorganisms -- 3. Analysis of Multiple-Scattering Radiative Transfer Within Photobloreactors: Approximate Solutions for the Radiation Field Within One-Dimensional Cartesian Photobloreactors -- 4. Numerical Implementation of Photobioreactor Models by the Monte Carlo Method, Including Rigorous Solution of the Radiative Transfer Equation for Complex Geometric Structure -- 5. Stoichiometric, Thermoklnetic, and Energetic Coupling with a Radiation Field: Calculation of the Main Averaged Rates and Efficiency for the Photobioreactor -- Acknowledgments -- References -- 2. Interaction Between Light and Photosynthetic Microorganisms / Razmig Kandilian -- 1. Introduction -- 2. Background -- 3. Theoretical Predictions -- 4. Experimental Measurements -- 5. Radiation Characteristics Under Various Conditions -- 6. Conclusions and Prospects -- References -- 3. Modeling of Microalgae Bioprocesses / Clemens Posten -- 1. Introduction -- 2. Basic Considerations and General Approach -- 3. Building Blocks for Phototrophic Process Models -- References -- Further Reading -- 4. Microalgal Photosynthesis and Growth in Mass Culture / Marcel Janssen -- 1. Fundamentals of Photoautotrophic Growth and Light -- 2. Quantifying Light-Limited Microalgal Growth -- 3. Estimating Photobioreactor Productivity -- 4. Improving the Estimation of Photobioreactor Productivity -- References -- 5. Industrial Photobloreactors and Scale-Up Concepts / Jack Legrand -- 1. Introduction -- 2. PBR Engineering and Scaling Rules -- 3. Modeling PBRs -- 4. Optimization of PBR Operation -- 5. Development of Commercial Technologies Based on PBR Engineering Rules -- 6. Conclusion
Control code
936628040
Dimensions
unknown
Extent
1 online resource.
Form of item
online
Isbn
9780128037010
Media category
computer
Media MARC source
rdamedia
Media type code
  • c
http://library.link/vocab/ext/overdrive/overdriveId
892943
Specific material designation
remote
System control number
(OCoLC)936628040

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