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Rheological characterization
Linköping University, The Tema Institute, Department of Water and Environmental Studies. Linköping University, Faculty of Arts and Sciences.
Linköping University, The Tema Institute, Department of Water and Environmental Studies. Linköping University, Faculty of Arts and Sciences.
Linköping University, The Tema Institute, Department of Water and Environmental Studies. Linköping University, Faculty of Arts and Sciences.
Linköping University, The Tema Institute, Department of Water and Environmental Studies. Linköping University, Faculty of Arts and Sciences.
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2012 (English)In: Biogas / [ed] Sunil Kumar, Rijeka, Croatia: INTECH, 2012, 63-76 p.Chapter in book (Refereed)
Abstract [en]

This book contains research on the chemistry of each step of biogas generation, along with engineering principles and practices, feasibility of biogas production in processing technologies, especially anaerobic digestion of waste and gas production system, its modeling, kinetics along with other associated aspects, utilization and purification of biogas, economy and energy issues, pipe design for biogas energy, microbiological aspects, phyto-fermentation, biogas plant constructions, assessment of ecological potential, biogas generation from sludge, rheological characterization, etc.

Place, publisher, year, edition, pages
Rijeka, Croatia: INTECH, 2012. 63-76 p.
Keyword [en]
Biogas, rheology, viscoplastic, non-Newtonian fluids, viscosity
National Category
Natural Sciences
Identifiers
URN: urn:nbn:se:liu:diva-76551DOI: 10.5772/32596ISBN: 978-953-51-0204-5 (print)OAI: oai:DiVA.org:liu-76551DiVA: diva2:514917
Note

Chapter 1 Potentials of SelectedTropical Crops and Manure as Sources of Biofuels 1

Chapter 2 Anaerobic Biogas Generation forRural Area Energy Provision in Africa 35

Chapter 3 Rheological Characterization 63

Chapter 4 Influence of Substrate Concentrationon the Anaerobic Degradability of Two-PhaseOlive Mill Solid Waste: A Kinetic Evaluation 77

Chapter 5 Biogas Production from AnaerobicTreatment of Agro-Industrial Wastewater 91

Chapter 6 Biogas Production and Cleanup by Biofiltrationfor a Potential Use as an Alternative Energy Source 113

Chapter 7 Gas Quality ParameterComputation in Intermeshed Networks 135

Chapter 8 Production of Biogas from Sludge Wasteand Organic Fraction of Municipal Solid Waste 151

Chapter 9 Economic and Ecological PotentialAssessment for Biogas Production Based on Intercrops 173 '

Chapter 10 Feasibility of BioenergyProduction from UltrafiltrationWhey Permeate Using the UASB Reactors 191

Chapter 11 Microbiological Methods of Hydrogen Generation 223

Chapter 12 Photofermentative Hydrogen Generationin Presence of Waste Water from Food Industry 251

Chapter 13 Study on Manufacturing Technologyand Performance of Biogas Residue Film 267

Chapter 14 Digestate: A New Nutrient Source – Review 295

Chapter 15 Dairy Farming and the StagnatedBiogas Use in Rungwe District, Tanzania:An Investigation of the Constraining Factors 311

Chapter 16 Enhancing Biogas Production andUASB Start-Up by Chitosan Addition 327

Chapter 17 Biogas Plant Constructions 343

Chapter 18 Conditioning of Biogas forInjection into the Natural Gas Grid 369

Chapter 19 Kinetics of Biogas Production from Banana Stem Waste 395

Available from: 2012-04-16 Created: 2012-04-11 Last updated: 2014-11-14Bibliographically approved

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Publisher's full textFind book at a Swedish library/Hitta boken i ett svensktFind book in another country/Hitta boken i ett annat land

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Björn, AnnikaKarlsson, AnnaEjlertsson, JörgenSvensson, Bo H.

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