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Advances in biofuels / / Ravindra Pogaku, Rosalam Hj. Sarbatly, editors
Advances in biofuels / / Ravindra Pogaku, Rosalam Hj. Sarbatly, editors
Edizione [1st ed. 2013.]
Pubbl/distr/stampa New York, : Springer, c2013
Descrizione fisica 1 online resource (xx, 266 pages) : illustrations (some color), color maps
Disciplina 662.88
Altri autori (Persone) PogakuRavindra
SarbatlyRosalam Hj
Collana Gale eBooks
Soggetto topico Biomass energy
Waste products as fuel
ISBN 1-4614-6249-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Prospect, Challenges and Opportunities on Biofuels in Malaysia -- Investment Opportunities at Palm Oil Industrial Cluster (POIC) Lahad Datu with Special Reference to Biofuels -- Biomass Conversion to Fuel (Solid, Liquid and Gas Fuel) -- On-line Mass Spectrometric Analysis of Sulfur Compounds From Hydrothermal Reactions of Biomass Wastes for Hydrogen Production -- Utilization of Oil Palm Wastes for Biofuel and Other Added Bioproducts: A Holistic Approach to Sustainable Waste Management for the Oil Palm Industry -- In-situ Spectroscopic Monitoring of Straight Vegetable Oils Combustion Properties (Sunflower and Soybean Oils) -- Low Cost Alternative Renewable Energy Bioethanol Production Palm Oil in Malaysian Context -- A bio- route production of biodiesel -- Catalysis in Biodiesel Synthesis: Challenges and Future Perspectives -- Higher Grade Biodiesel Production by Using Solid Heterogeneous Catalysts -- Enzymatic Process for Biodiesel And High Value Added Products -- Stability studies of immobilized Burkholderia cepacia lipase and its application in biodiesel production from Jatropha curcas oil -- Fermentation Study on Macroalgae Eucheuma Cottonii for Bioethanol Production via Varying Acid Hydrolysis -- Membrane Photobioreactor as a Device to Increase CO2 Mitigation by Microalgae.
Record Nr. UNINA-9910739434303321
New York, : Springer, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Bioenergy and biofuel from biowastes and biomass [[electronic resource] /] / sponsored by Bioenergy and Biofuel Task Committee of the Environmental Council [and] Environmental and Water Resources Institute (EWRI) of the American Society of Civil Engineers ; edited by Samir K. Khanal ... [et al.]
Bioenergy and biofuel from biowastes and biomass [[electronic resource] /] / sponsored by Bioenergy and Biofuel Task Committee of the Environmental Council [and] Environmental and Water Resources Institute (EWRI) of the American Society of Civil Engineers ; edited by Samir K. Khanal ... [et al.]
Pubbl/distr/stampa Reston, VA, : American Society of Civil Engineers, c2010
Descrizione fisica 1 online resource (522 p.)
Disciplina 662.88
Altri autori (Persone) KhanalSamir Kumar
Soggetto topico Biomass energy
Refuse as fuel
Waste products as fuel
Soggetto genere / forma Electronic books.
ISBN 0-7844-7330-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto ""Contents""; ""Chapter 1 Bioenergy and Biofuel Production: Some Perspectives""; ""1.1 Introduction""; ""1.2 Why Biofuels?""; ""1.3 Current Status of Biofuel/Bioenergy Generation""; ""1.4 Biochemical or Thermochemical Conversion of Lignocellulosic Biomass?""; ""1.5 Cost Analysis of Cellulosic Biofuels""; ""1.6 Sustainability of Biofuel Industries""; ""1.7 Summary""; ""1.8 References""; ""Appendix""; ""Anaerobic Biotechnology""; ""Chapter 2 High Strength Wastewater to Bioenergy""; ""2.1 Introduction""; ""2.2 Energy Recovery from Anaerobic Processes""
""2.3 Possible Future Combination of Anaerobic Technology with FCs""""2.4 Summary""; ""2.5 References""; ""Chapter 3 Food Waste to Bioenergy""; ""3.1 Introduction""; ""3.2 Anaerobic Digestion""; ""3.3 Key Affecting Factors in Food Waste Digestion""; ""3.4 Case Study of Biomethane Production""; ""3.5 Future Research Direction""; ""3.6 Summary""; ""3.7 References""; ""Chapter 4 Bioenergy Production from Organic Fraction of Municipal Solid Waste (OFMSW) through Dry Anaerobic Digestion""; ""4.1 Introduction""; ""4.2 Dry Anaerobic Digestion of OFMSW""
""4.3 Factors Affecting Dry Anaerobic Digestion""""4.4 Case Studies""; ""4.5 Future Perspective of Dry Anaerobic Digestion""; ""4.6 Summary""; ""4.7 References""; ""Chapter 5 Bioenergy from Landfills""; ""5.1 Introduction""; ""5.2 Development and Utilization of Bioenergy from Landfills""; ""5.3 Benefits of LFG Recovery and Utilization""; ""5.4 Gas Quantities, Characteristics, and Monitoring""; ""5.5 Factors Affecting Biogas Production""; ""5.6 Gas Collection, Treatment and Energy Recovery""; ""5.7 Tools and Models""; ""5.8 Economic Evaluation""; ""5.9 Future Work""; ""5.10 Summary""
""5.11 References""""Chapter 6 Microbial Electricity Generation from Cellulosic Biomass""; ""6.1 Introduction""; ""6.2 Microbial Fuel Cell (MFC)""; ""6.3 Electricity Generation from Cellulosic Biomass Hydrolysates""; ""6.4 Effects of Furan Derivatives and Phenolic Compounds on Electricity Generation""; ""6.5 Direct Electricity Generation from Cellulosic Biomass""; ""6.6 Engineering and Economic Considerations""; ""6.7 References""; ""Lignocellulosic Biomass to Biofuels""; ""Chapter 7 Evaluation of Cellulosic Feedstocks for Biofuel Production""; ""7.1 Introduction""
""7.2 Criteria for Third Generation Feedstock Crops""""7.3 Additional Criteria to Evaluate Feedstock""; ""7.4 Evaluation of Three Feedstock Crops""; ""7.5 Economic Analysis of Three Feedstock Crops""; ""7.6 Summary""; ""7.7 References""; ""Appendix""; ""Chapter 8 Preprocessing of Lignocellulosic Biomass for Biofuel Production""; ""8.1 Introduction""; ""8.2 Merits of Biomass Preprocessing""; ""8.3 IBSAL Model in Biomass Preprocessing""; ""8.4 Biomass Preprocessing Methods""; ""8.5 Important Considerations in Biomass Preprocessing""
""8.6 Field (Decentralized) or Plant (Centralized) Preprocessing?""
Record Nr. UNINA-9910458579503321
Reston, VA, : American Society of Civil Engineers, c2010
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Bioenergy and biofuel from biowastes and biomass / / sponsored by Bioenergy and Biofuel Task Committee of the Environmental Council [and] Environmental and Water Resources Institute (EWRI) of the American Society of Civil Engineers ; edited by Samir K. Khanal ... [et al.]
Bioenergy and biofuel from biowastes and biomass / / sponsored by Bioenergy and Biofuel Task Committee of the Environmental Council [and] Environmental and Water Resources Institute (EWRI) of the American Society of Civil Engineers ; edited by Samir K. Khanal ... [et al.]
Pubbl/distr/stampa Reston, VA, : American Society of Civil Engineers, c2010
Descrizione fisica 1 online resource (522 p.)
Disciplina 662.88
Altri autori (Persone) KhanalSamir Kumar
Soggetto topico Biomass energy
Refuse as fuel
Waste products as fuel
ISBN 0-7844-7330-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Chapter 1 Bioenergy and Biofuel Production: Some Perspectives; Anaerobic Biotechnology; Chapter 2 High Strength Wastewater to Bioenergy; Chapter 3 Food Waste to Bioenergy; Chapter 4 Bioenergy Production from Organic Fraction of Municipal Solid Waste (OFMSW) through Dry Anaerobic Digestion; Chapter 5 Bioenergy from Landfills; Chapter 6 Microbial Electricity Generation from Cellulosic Biomass Lingnocellulosic Biomass to Biofuels; Chapter 7 Evaluation of Cellulosic Feedstocks for Biofuel Production; Chapter 8 Preprocessing of Lignocellulosic Biomass for Biofuel Production; Chapter 9 Lignocellulosic Biomass Pretreatment; Chapter 10 Enzymatic Hydrolysis of Lignocellulosic Biomass; Chapter 11 Syngas Fermentation to Ethanol: Challenges and Opportunities; Chapter 12 Lingnin Recovery and Utilization Bioreactor Systems; Chapter 13 Bioreactor Systems for Biofuel/Bioelectricity Production Algal Biofuels; Chapter 14 Algal Biodiesel Production: Challenges and Opportunities; Chapter 15 Heterotrophic Algal-Biodiesel Production: Challenges and Opportunities; Chapter 16 Microalgal Ethanol Production: A New Avenue for Sustainable Biofuel Production Biofuel Residues/Wastes Management; Chapter 17 Value-Added Processing of Residues from Biofuel Industries Life-Cycle Analysis; Chapter 18 Energy Life-Cycle Analysis of a Biofuel Production System; Chapter 19 Comprehensive Study of Cellulosic Ethanol Using Hybrid Eco-LCA Advanced Technology In Biofuel; Chapter 20 Biobutanol Production from Agri-Residues; Chapter 21 Application of Nanotechnology and Nanomaterials for Bioenergy and Biofuel Production
Record Nr. UNINA-9911004855003321
Reston, VA, : American Society of Civil Engineers, c2010
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Biofuels international
Biofuels international
Pubbl/distr/stampa Morden, : Horseshoe Media, 2007-
Disciplina 333.9539
Soggetto topico Biomass energy
Waste products as fuel
Soggetto genere / forma Periodicals.
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione eng
Altri titoli varianti Biofuels international.magazine
Record Nr. UNISA-996417625603316
Morden, : Horseshoe Media, 2007-
Materiale a stampa
Lo trovi qui: Univ. di Salerno
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Biofuels international
Biofuels international
Pubbl/distr/stampa Morden, : Horseshoe Media, 2007-
Disciplina 333.9539
Soggetto topico Biomass energy
Waste products as fuel
Soggetto genere / forma Periodicals.
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione eng
Altri titoli varianti Biofuels international.magazine
Record Nr. UNINA-9910389352403321
Morden, : Horseshoe Media, 2007-
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Biogas from waste and renewable resources : an introduction / / Dieter Deublein and Angelika Steinhauser
Biogas from waste and renewable resources : an introduction / / Dieter Deublein and Angelika Steinhauser
Autore Deublein Dieter
Edizione [2nd ed.]
Pubbl/distr/stampa Weinheim, [Germany] : , : Wiley-VCH Verlag GmbH & Co. KGaA, , 2011
Descrizione fisica 1 online resource (580 p.)
Disciplina 665.776
Soggetto topico Biogas
Biogas industry
Refuse as fuel
Waste products as fuel
Biomass energy
Renewable energy sources
Soggetto genere / forma Electronic books.
ISBN 3-527-64371-0
1-283-37047-6
9786613370471
3-527-63279-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Biogas from Waste and Renewable Resources; Contents; Preface; Preface to the Second Edition; Symbols and Abbreviations; Acknowledgments; Part One: Potential and History; General Thoughts about Energy Supply; 1: Energy Supply-Today and in the Future; 1.1 Primary Energy Sources; 1.2 Secondary Energy Sources; 1.3 End-Point Energy Sources; 1.4 Effective Energy; 2: Energy Supply in the Future-Scenarios; 3: Potential for Transforming Biomass into End-Point Energy Sources; 3.1 Amount of Available Area; 3.2 Theoretical Potential; 3.2.1 C3 Plants (Energy Plants); 3.2.2 C4 Plants and CAM Plants
3.2.3 Micro-algae3.3 Technical Potential; 3.4 Economic Potential; 3.5 Realizable Potential; 4: History and Status to Date in Europe; 4.1 First Attempts at Using Biogas; 4.2 Second Attempts at Using Biogas; 4.3 Third Attempts at Applying Biogas; 4.4 Status to Date and Perspective in Europe; 5: History and Status to Date Worldwide; 5.1 History and Status to Date in China; 5.1.1 Period from 1970 to 1983; 5.1.2 Period from 1984 to 1991; 5.1.3 Period from 1992 to 1998; 5.1.3.1 "A Pit with Three Rebuildings"; 5.1.3.2 "Four in One"; 5.1.3.3 "Pig-Biogas-Fruits"; 5.1.4 Period from 1999 Onwards
5.2 History and Status to Date in India5.3 Status to Date in America; 5.4 Status to Date in the CIS States; 6: General Aspects of the Recovery of Biomass in the Future; Part Two: Substrates and Biogas; Introduction; 7: Substrate; 7.1 Agricultural Products; 7.1.1 Liquid Manure and Co-substrates; 7.1.2 Maize as the Only Main Crop; 7.1.3 Bioenergy of Forage Beets; 7.1.4 Grass; 7.1.5 Sorghum; 7.1.6 Crop Rotations; 7.1.6.1 Forage Rye + Maize; 7.1.6.2 Winter Barley + Maize; 7.1.6.3 Hybrid Rye + Sorghum; 7.1.6.4 Rye + Annual Ryegrass + Maize; 7.1.6.5 Perennial Ryegrass + Sorghum
7.2 Biowaste from Collections of Residual Waste and Domestic Waste Like Commercial Waste7.3 Landfill for Residual Waste; 7.4 Sewage Sludge and Co-substrate; 7.5 Industrial Waste Water; 7.6 Waste Grease or Fat; 7.7 Cultivation of Algae; 7.8 Plankton; 7.9 Sediments in the Sea; 7.10 Wood, Straw; 8: Biogas; 8.1 Biogas Compared with Other Methane-Containing Gases; 8.2 Detailed Overview of Biogas Components; 8.2.1 Methane and Carbon Dioxide; 8.2.2 Nitrogen and Oxygen; 8.2.3 Carbon Monoxide; 8.2.4 Ammonia; 8.2.5 Hydrogen Sulfide; 8.2.6 Water Vapor; 8.2.7 Chlorine, Fluorine, Mercaptans
8.2.8 BTX, PAHs, etc.8.2.9 Siloxanes; Part Three: Formation of Biogas; 9: Biochemistry; 10: Bioreactions; 10.1 Hydrolysis; 10.2 Acidogenic Phase; 10.3 Acetogenic Phase; 10.4 Methanogenic Phase; 11: Process Parameters; 11.1 Parameter: Hydrogen Partial Pressure; 11.2 Parameter: Concentration of the Microorganisms (Ensilage, Recirculation of Biomass); 11.3 Parameter: Type of Substrate; 11.4 Parameter: Specific Surface Area of Material; 11.5 Parameter: Disintegration; 11.6 Parameter: Cultivation, Mixing, and Volume Load; 11.7 Parameter: Light; 11.8 Parameter: Temperature; 11.9 Parameter: pH
11.10 Parameter: Redox Potential
Record Nr. UNINA-9910139421103321
Deublein Dieter  
Weinheim, [Germany] : , : Wiley-VCH Verlag GmbH & Co. KGaA, , 2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Biogas from waste and renewable resources : an introduction / / Dieter Deublein and Angelika Steinhauser
Biogas from waste and renewable resources : an introduction / / Dieter Deublein and Angelika Steinhauser
Autore Deublein Dieter
Edizione [2nd ed.]
Pubbl/distr/stampa Weinheim, [Germany] : , : Wiley-VCH Verlag GmbH & Co. KGaA, , 2011
Descrizione fisica 1 online resource (580 p.)
Disciplina 665.776
Soggetto topico Biogas
Biogas industry
Refuse as fuel
Waste products as fuel
Biomass energy
Renewable energy sources
ISBN 3-527-64371-0
1-283-37047-6
9786613370471
3-527-63279-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Biogas from Waste and Renewable Resources; Contents; Preface; Preface to the Second Edition; Symbols and Abbreviations; Acknowledgments; Part One: Potential and History; General Thoughts about Energy Supply; 1: Energy Supply-Today and in the Future; 1.1 Primary Energy Sources; 1.2 Secondary Energy Sources; 1.3 End-Point Energy Sources; 1.4 Effective Energy; 2: Energy Supply in the Future-Scenarios; 3: Potential for Transforming Biomass into End-Point Energy Sources; 3.1 Amount of Available Area; 3.2 Theoretical Potential; 3.2.1 C3 Plants (Energy Plants); 3.2.2 C4 Plants and CAM Plants
3.2.3 Micro-algae3.3 Technical Potential; 3.4 Economic Potential; 3.5 Realizable Potential; 4: History and Status to Date in Europe; 4.1 First Attempts at Using Biogas; 4.2 Second Attempts at Using Biogas; 4.3 Third Attempts at Applying Biogas; 4.4 Status to Date and Perspective in Europe; 5: History and Status to Date Worldwide; 5.1 History and Status to Date in China; 5.1.1 Period from 1970 to 1983; 5.1.2 Period from 1984 to 1991; 5.1.3 Period from 1992 to 1998; 5.1.3.1 "A Pit with Three Rebuildings"; 5.1.3.2 "Four in One"; 5.1.3.3 "Pig-Biogas-Fruits"; 5.1.4 Period from 1999 Onwards
5.2 History and Status to Date in India5.3 Status to Date in America; 5.4 Status to Date in the CIS States; 6: General Aspects of the Recovery of Biomass in the Future; Part Two: Substrates and Biogas; Introduction; 7: Substrate; 7.1 Agricultural Products; 7.1.1 Liquid Manure and Co-substrates; 7.1.2 Maize as the Only Main Crop; 7.1.3 Bioenergy of Forage Beets; 7.1.4 Grass; 7.1.5 Sorghum; 7.1.6 Crop Rotations; 7.1.6.1 Forage Rye + Maize; 7.1.6.2 Winter Barley + Maize; 7.1.6.3 Hybrid Rye + Sorghum; 7.1.6.4 Rye + Annual Ryegrass + Maize; 7.1.6.5 Perennial Ryegrass + Sorghum
7.2 Biowaste from Collections of Residual Waste and Domestic Waste Like Commercial Waste7.3 Landfill for Residual Waste; 7.4 Sewage Sludge and Co-substrate; 7.5 Industrial Waste Water; 7.6 Waste Grease or Fat; 7.7 Cultivation of Algae; 7.8 Plankton; 7.9 Sediments in the Sea; 7.10 Wood, Straw; 8: Biogas; 8.1 Biogas Compared with Other Methane-Containing Gases; 8.2 Detailed Overview of Biogas Components; 8.2.1 Methane and Carbon Dioxide; 8.2.2 Nitrogen and Oxygen; 8.2.3 Carbon Monoxide; 8.2.4 Ammonia; 8.2.5 Hydrogen Sulfide; 8.2.6 Water Vapor; 8.2.7 Chlorine, Fluorine, Mercaptans
8.2.8 BTX, PAHs, etc.8.2.9 Siloxanes; Part Three: Formation of Biogas; 9: Biochemistry; 10: Bioreactions; 10.1 Hydrolysis; 10.2 Acidogenic Phase; 10.3 Acetogenic Phase; 10.4 Methanogenic Phase; 11: Process Parameters; 11.1 Parameter: Hydrogen Partial Pressure; 11.2 Parameter: Concentration of the Microorganisms (Ensilage, Recirculation of Biomass); 11.3 Parameter: Type of Substrate; 11.4 Parameter: Specific Surface Area of Material; 11.5 Parameter: Disintegration; 11.6 Parameter: Cultivation, Mixing, and Volume Load; 11.7 Parameter: Light; 11.8 Parameter: Temperature; 11.9 Parameter: pH
11.10 Parameter: Redox Potential
Record Nr. UNINA-9910830648703321
Deublein Dieter  
Weinheim, [Germany] : , : Wiley-VCH Verlag GmbH & Co. KGaA, , 2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Biological sludge minimization and biomaterials/bioenergy recovery technologies [[electronic resource] /] / edited by Etienne Paul, Yu Liu
Biological sludge minimization and biomaterials/bioenergy recovery technologies [[electronic resource] /] / edited by Etienne Paul, Yu Liu
Pubbl/distr/stampa Hoboken, N.J., : Wiley, c2012
Descrizione fisica 1 online resource (537 p.)
Disciplina 628.3
Altri autori (Persone) PaulEtienne <1964->
LiuYu <1964->
Soggetto topico Water treatment plant residuals - Purification
Waste products as fuel
Water - Purification
Biochemical engineering
ISBN 1-280-69930-2
9786613676283
1-118-30968-5
1-118-30964-2
1-118-30965-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies; Contents; Preface; Contributors; 1 Fundamentals of Biological Processes for Wastewater Treatment; 1.1 Introduction; 1.2 Overview of Biological Wastewater Treatment; 1.2.1 The Objective of Biological Wastewater Treatment; 1.2.2 Roles of Microorganisms in Wastewater Treatment; 1.2.3 Types of Biological Wastewater Treatment Processes; 1.3 Classification of Microorganisms; 1.3.1 By the Sources of Carbon and Energy; 1.3.2 By Temperature Range; 1.3.3 Microorganism Types in Biological Wastewater Treatment
1.4 Some Important Microorganisms in Wastewater Treatment1.4.1 Bacteria; 1.4.2 Fungi; 1.4.3 Algae; 1.4.4 Protozoans; 1.4.5 Rotifers and Crustaceans; 1.4.6 Viruses; 1.5 Measurement of Microbial Biomass; 1.5.1 Total Number of Microbial Cells; 1.5.2 Measurement of Viable Microbes on Solid Growth Media; 1.5.3 Measurement of Active Cells in Environmental Samples; 1.5.4 Determination of Cellular Biochemical Compounds; 1.5.5 Evaluation of Microbial Biodiversity by Molecular Techniques; 1.6 Microbial Nutrition; 1.6.1 Microbial Chemical Composition; 1.6.2 Macronutrients; 1.6.3 Micronutrients
1.6.4 Growth Factor1.6.5 Microbial Empirical Formula; 1.7 Microbial Metabolism; 1.7.1 Catabolic Metabolic Pathways; 1.7.2 Anabolic Metabolic Pathway; 1.7.3 Biomass Synthesis Yields; 1.7.4 Coupling Energy-Synthesis Metabolism; 1.8 Functions of Biological Wastewater Treatment; 1.8.1 Aerobic Biological Oxidation; 1.8.2 Biological Nutrients Removal; 1.8.3 Anaerobic Biological Oxidation; 1.8.4 Biological Removal of Toxic Organic Compounds and Heavy Metals; 1.8.5 Removal of Pathogens and Parasites; 1.9 Activated Sludge Process; 1.9.1 Basic Process; 1.9.2 Microbiology of Activated Sludge
1.9.3 Biochemistry of Activated Sludge1.9.4 Main Problems in the Activated Sludge Process; 1.10 Suspended- and Attached-Growth Processes; 1.10.1 Suspended-Growth Processes; 1.10.2 Attached-Growth Processes; 1.10.3 Hybrid Systems; 1.10.4 Comparison Between Suspended- and Attached-Growth Systems; 1.11 Sludge Production, Treatment and Disposal; 1.11.1 Sludge Production; 1.11.2 Sludge Treatment Processes; 1.11.3 Sludge Disposal and Application; References; 2 Sludge Production: Quantification and Prediction for Urban Treatment Plants and Assessment of Strategies for Sludge Reduction
2.1 Introduction2.2 Sludge Fractionation and Origin; 2.2.1 Sludge Composition; 2.2.2 Wastewater Characteristics; 2.3 Quantification of Excess Sludge Production; 2.3.1 Primary Treatment,; 2.3.2 Activated Sludge Process,; 2.3.3 Phosphorus Removal (Biological and Physicochemical); 2.4 Practical Evaluation of Sludge Production; 2.4.1 Sludge Production Yield Variability with Domestic Wastewater; 2.4.2 Influence of Sludge Age: Experimental Data Versus Models; 2.4.3 ISS Entrapment in the Sludge; 2.4.4 Example of Sludge Production for a Different Case Study; 2.5 Strategies for Excess Sludge Reduction
2.5.1 Classification of Strategies
Record Nr. UNINA-9910141260803321
Hoboken, N.J., : Wiley, c2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Biological sludge minimization and biomaterials/bioenergy recovery technologies / / edited by Etienne Paul, Yu Liu
Biological sludge minimization and biomaterials/bioenergy recovery technologies / / edited by Etienne Paul, Yu Liu
Edizione [1st ed.]
Pubbl/distr/stampa Hoboken, N.J., : Wiley, c2012
Descrizione fisica 1 online resource (537 p.)
Disciplina 628.3
Altri autori (Persone) PaulEtienne <1964->
LiuYu <1964->
Soggetto topico Water treatment plant residuals - Purification
Waste products as fuel
Water - Purification
Biochemical engineering
ISBN 9786613676283
9781280699306
1280699302
9781118309681
1118309685
9781118309643
1118309642
9781118309650
1118309650
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies; Contents; Preface; Contributors; 1 Fundamentals of Biological Processes for Wastewater Treatment; 1.1 Introduction; 1.2 Overview of Biological Wastewater Treatment; 1.2.1 The Objective of Biological Wastewater Treatment; 1.2.2 Roles of Microorganisms in Wastewater Treatment; 1.2.3 Types of Biological Wastewater Treatment Processes; 1.3 Classification of Microorganisms; 1.3.1 By the Sources of Carbon and Energy; 1.3.2 By Temperature Range; 1.3.3 Microorganism Types in Biological Wastewater Treatment
1.4 Some Important Microorganisms in Wastewater Treatment1.4.1 Bacteria; 1.4.2 Fungi; 1.4.3 Algae; 1.4.4 Protozoans; 1.4.5 Rotifers and Crustaceans; 1.4.6 Viruses; 1.5 Measurement of Microbial Biomass; 1.5.1 Total Number of Microbial Cells; 1.5.2 Measurement of Viable Microbes on Solid Growth Media; 1.5.3 Measurement of Active Cells in Environmental Samples; 1.5.4 Determination of Cellular Biochemical Compounds; 1.5.5 Evaluation of Microbial Biodiversity by Molecular Techniques; 1.6 Microbial Nutrition; 1.6.1 Microbial Chemical Composition; 1.6.2 Macronutrients; 1.6.3 Micronutrients
1.6.4 Growth Factor1.6.5 Microbial Empirical Formula; 1.7 Microbial Metabolism; 1.7.1 Catabolic Metabolic Pathways; 1.7.2 Anabolic Metabolic Pathway; 1.7.3 Biomass Synthesis Yields; 1.7.4 Coupling Energy-Synthesis Metabolism; 1.8 Functions of Biological Wastewater Treatment; 1.8.1 Aerobic Biological Oxidation; 1.8.2 Biological Nutrients Removal; 1.8.3 Anaerobic Biological Oxidation; 1.8.4 Biological Removal of Toxic Organic Compounds and Heavy Metals; 1.8.5 Removal of Pathogens and Parasites; 1.9 Activated Sludge Process; 1.9.1 Basic Process; 1.9.2 Microbiology of Activated Sludge
1.9.3 Biochemistry of Activated Sludge1.9.4 Main Problems in the Activated Sludge Process; 1.10 Suspended- and Attached-Growth Processes; 1.10.1 Suspended-Growth Processes; 1.10.2 Attached-Growth Processes; 1.10.3 Hybrid Systems; 1.10.4 Comparison Between Suspended- and Attached-Growth Systems; 1.11 Sludge Production, Treatment and Disposal; 1.11.1 Sludge Production; 1.11.2 Sludge Treatment Processes; 1.11.3 Sludge Disposal and Application; References; 2 Sludge Production: Quantification and Prediction for Urban Treatment Plants and Assessment of Strategies for Sludge Reduction
2.1 Introduction2.2 Sludge Fractionation and Origin; 2.2.1 Sludge Composition; 2.2.2 Wastewater Characteristics; 2.3 Quantification of Excess Sludge Production; 2.3.1 Primary Treatment,; 2.3.2 Activated Sludge Process,; 2.3.3 Phosphorus Removal (Biological and Physicochemical); 2.4 Practical Evaluation of Sludge Production; 2.4.1 Sludge Production Yield Variability with Domestic Wastewater; 2.4.2 Influence of Sludge Age: Experimental Data Versus Models; 2.4.3 ISS Entrapment in the Sludge; 2.4.4 Example of Sludge Production for a Different Case Study; 2.5 Strategies for Excess Sludge Reduction
2.5.1 Classification of Strategies
Record Nr. UNINA-9910820649603321
Hoboken, N.J., : Wiley, c2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Biomass and Biowaste : New Chemical Products from Old / / Alina M. Balu, Araceli García Nuñez
Biomass and Biowaste : New Chemical Products from Old / / Alina M. Balu, Araceli García Nuñez
Pubbl/distr/stampa Berlin ; ; Boston : , : De Gruyter, , [2020]
Descrizione fisica 1 online resource (196 pages) : color illustrations
Disciplina 662.88
Soggetto topico Waste products as fuel
Biomass conversion
Biomass energy
ISBN 9781523154043
1523154047
9783110538151
3110538156
9783110537826
3110537826
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Frontmatter -- Preface -- Acknowledgments -- Contents -- List of contributing authors -- 1. Furfural derivatives from agricultural and agri-food wastes by heterogeneous catalysis -- 2. Biorefinery approach for the utilization of dairy by-products and lignocellulosic biomass to lactic acid -- 3. Biomass and biowastes: renewable resources for biodegradable materials in advanced applications -- 4. Supported metal catalysts for the sustainable upgrading of renewable biomass to value-added fine chemicals and fuels -- 5. State-of-the-art in biomass fast pyrolysis using acidic catalysts: direct comparison between microporous zeolites, mesoporous aluminosilicates and hierarchical zeolites -- 6. Advances in the application of transition metal phosphide catalysts for hydrodeoxygenation reactions of bio-oil from biomass pyrolysis -- 7. Bio-waste and petroleum fractions coprocessing to fuels -- Backmatter -- Index
Record Nr. UNINA-9911007197403321
Berlin ; ; Boston : , : De Gruyter, , [2020]
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