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Anaerobic digestion model. No. 1, (ADM1)

Author: D J Batstone; IWA Task Group for Mathematical Modelling of Anaerobic Digestion Processes,
Publisher: London : IWA Publishing, 2002.
Series: Scientific and technical report (London, England)
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
The IWA Task Group for Mathematical Modelling of Anaerobic Digestion Processes was created with the aim to produce a generic model and common platform for dynamic simulations of a variety of anaerobic processes. This book presents the outcome of this undertaking and is the result of four years collaborative work by a number of international experts from various fields of anaerobic process technology. The purpose of  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Anaerobic digestion model no. 1 (ADM1).
London : IWA, 2002
(OCoLC)49240141
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: D J Batstone; IWA Task Group for Mathematical Modelling of Anaerobic Digestion Processes,
ISBN: 9781780403052 1780403054
OCLC Number: 878137397
Description: 1 online resource (91 pages) : illustrations.
Contents: Cover --
Copyright --
Contents --
Acknowledgements --
List of Task Group members --
Preface --
Summary --
1 Introduction to the ADM1 --
1.1 The importance of anaerobic digestion and a generic process model --
1.2 Conversion processes in anaerobic digestion --
2 Nomenclature, state variables and expressions --
2.1 Units --
2.2 Nomenclature and description of parameters and variables --
2.3 Dynamic state variables --
3 Biochemical processes --
3.1 Structure of biochemical reactions in the ADM1 --
3.2 Rate equation matrix --
3.3 Disintegration and hydrolysis. 3.3.1 Kinetics of disintegration and hydrolysis --
3.4 Mixed product acidogenesis --
3.4.1 Acidogenesis from monosaccharides --
3.4.2 Acidogenesis from amino acids --
3.5 Syntrophic hydrogen-producing acidogenesis and hydrogen-utilising methanogenesis --
3.5.1 Form of electron carrier --
3.5.2 Biological groups and components in the ADM1 --
3.5.3 Hydrogen inhibition functions for acetogenesis --
3.6 Aceticlastic methanogenesis --
3.7 Inhibition and toxicity --
3.7.1 Modelling of inhibition --
3.8 Influence of temperature --
3.8.1 Modelling of temperature effect on disintegration and hydrolysis. 3.8.2 Effect of temperature on thermodynamic yields and reaction pathways --
4 Physico-chemical processes --
4.1 Liquid-liquid processes --
4.1.1 Modelling of acid-base reactions --
4.2 Liquid-gas transfer --
4.2.1 Liquid-gas transfer equations --
4.3 Variation of physico-chemical parameters with temperature --
5 Model implementation in a single stage CSTR --
5.1 Liquid phase equations --
5.2 Gas phase equations --
5.3 Specific example: inorganic carbon --
5.3.1 DAE system --
5.3.2 DE system --
6 Suggested biochemical parameter values, sensitivity and estimation --
6.1 Hydrolysis parameters. 6.1.1 Parameters associated with propionate --
6.1.2 Parameters associated with acetate --
7 Conclusion --
References --
Appendix A: A review of parameters --
Appendix B: Supplementary matrix information --
Appendix C: Integration with the ASM --
Appendix D: Estimating stoichiometric coefficients for fermentation --
Index.
Series Title: Scientific and technical report (London, England)
Responsibility: IWA Task Group for Mathematical Modelling of Anaerobic Digestion Processes ; D.J. Batstone [and eight others].

Abstract:

The IWA Task Group for Mathematical Modelling of Anaerobic Digestion Processes was created with the aim to produce a generic model and common platform for dynamic simulations of a variety of  Read more...

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