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Solid Waste Technology and Management, 2 Volume Set
Thomas Christensen (Edited by), TH Christensen (Author)
9781405175173, Wiley
Hardback, published 26 November 2010
1056 pages
26.4 x 20.3 x 7.6 cm, 2.703 kg
"Written by 40 internationally known experts, and carefully edited for consistency, the book is a balanced account of all aspects of municipal solid waste management, treatment and disposal, and covers both engineering and management aspects with an overarching emphasis on the life-cycle analysis approach." (MyCFO, 28 February 2011)
The collection, transportation and subsequent processing of waste materials is a vast field of study which incorporates technical, social, legal, economic, environmental and regulatory issues. Common waste management practices include landfilling, biological treatment, incineration, and recycling – all boasting advantages and disadvantages. Waste management has changed significantly over the past ten years, with an increased focus on integrated waste management and life-cycle assessment (LCA), with the aim of reducing the reliance on landfill with its obvious environmental concerns in favour of greener solutions. With contributions from more than seventy internationally known experts presented in two volumes and backed by the International Waste Working Group and the International Solid Waste Association, detailed chapters cover: Solid Waste Technology & Management is a balanced and detailed account of all aspects of municipal solid waste management, treatment and disposal, covering both engineering and management aspects with an overarching emphasis on the life-cycle approach.
Preface xi List of Contributors xiii VOLUME 1 1 INTRODUCTION 1.1 Introduction toWaste Management 3 1.2 Introduction toWaste Engineering 17 1.3 Introduction toWaste Economics 29 1.4 Introduction toWaste Legislation and Regulation 52 2 WASTE GENERATION AND CHARACTERIZATION 2.1 Waste Characterization: Approaches and Methods 63 2.2 Residential Waste 85 2.3 Commercial and InstitutionalWaste 97 2.4 IndustrialWaste 100 2.5 Construction and DemolitionWaste 104 3 LCA OF WASTE MANAGEMENT SYSTEMS 3.1 LCA inWaste Management: Introduction to Principle and Method 113 3.2 Application of LCA inWaste Management 137 3.3 LCA Modeling of Waste Management Scenarios 161 4 WASTE MINIMIZATION 4.1 Waste Prevention and Minimization: Concepts, Strategies and Means 183 4.2 Waste Prevention and Minimization: Cases 193 5 MATERIAL RECYCLING 5.1 Recycling of Paper and Cardboard 203 5.2 Recycling of Glass 211 5.3 Recycling of Plastic 220 5.4 Recycling of Metals 234 5.5 Recycling of Construction and DemolitionWaste 243 6 COLLECTION 6.1 Waste Collection: Equipment and Vehicles 253 6.2 Waste Collection: Systems and Organization 277 6.3 Source Segregation and Collection of Source-Segregated Waste 296 6.4 Waste Transfer Stations 311 7 MECHANICAL TREATMENT 7.1 Mechanical Treatment: Unit Processes 321 7.2 Mechanical Treatment: Material Recovery Facilities 349 8 THERMAL TREATMENT 8.1 Incineration: Process and Technology 365 8.2 Incineration: Flue Gas Cleaning and Emissions 393 8.3 Incineration: Mass Balances 421 8.4 Incineration: Solid Residues 430 8.5 Incineration: Utilization of Residue in Construction 463 8.6 Incineration: Co-combustion 476 8.7 Incineration: RDF and SRF – Solid Fuels fromWaste 486 8.8 Pyrolysis and Gasification 502 VOLUME 2 9 BIOLOGICAL TREATMENT 9.1 Composting: Process 515 9.2 Composting: Technology 533 9.3 Composting: Mass Balances and Product Quality 569 9.4 Anaerobic Digestion: Process 583 9.5 Anaerobic Digestion: Technology 601 9.6 Anaerobic Digestion: Mass Balances and Products 618 9.7 Mechanical Biological Treatment 628 9.8 Emerging Biological Technologies: Biofuels and Biochemicals 639 9.9 Use of Compost in Horticulture and Landscaping 651 9.10 Utilization of Biologically Treated Organic Waste on Land 665 10 LANDFILLING 10.1 Landfilling: Concepts and Challenges 685 10.2 Landfilling: Environmental Issues 695 10.3 Landfilling: Hydrology 709 10.4 Landfilling: Geotechnology 734 10.5 Landfilling: Mineral Waste Landfills 755 10.6 Landfilling: Reactor Landfills 772 10.7 Landfilling: MBP Waste Landfills 788 10.8 Landfilling: Bottom Lining and Leachate Collection 800 10.9 Landfill Top Covers 830 10.10 Landfilling: Gas Production, Extraction and Utilization 841 10.11 Landfilling: Leachate Treatment 858 10.12 Landfilling: Planning, Siting and Design 898 10.13 Landfilling: Operation and Monitoring 914 10.14 Landfill Closure, Aftercare and Final Use 932 11 SPECIAL AND HAZARDOUS WASTE 11.1 Healthcare RiskWaste 951 11.2 Waste Electrical and Electronic Equipment 960 11.3 Preservative Treated Wood 971 11.4 Hazardous Waste 982 11.5 Other Special Waste 991 Index 1001
Thomas H. Christensen
Thomas H. Christensen
Hanna Merrild and Thomas H. Christensen
Peter Pagh and Henrik Wejdling
Anders Lagerkvist, Holger Ecke and Thomas H. Christensen
Thomas H. Christensen, Thilde Fruergaard and Yasushi Matsufuji
Thomas H. Christensen and Thilde Fruergaard
Thomas H. Christensen
Thomas H. Christensen and Lizzi Andersen
Michael Hauschild and Morton A. Barlaz
Anna Bj¨orklund, G¨oran Finnveden and Liselott Roth
Thomas H. Christensen, Federico Simion, Davide Tonini and Jacob Møller
Stefan Salhofer, Nicole Unger and Bernd Bilitewski
Stefan Salhofer and Nicole Unger
Thomas H. Christensen and Anders Damgaard
Thomas H. Christensen and Anders Damgaard
Thomas H. Christensen and Thilde Fruergaard
Anders Damgaard and Thomas H. Christensen
Thomas H. Christensen and Harpa Birgisdottir
Per Nilsson
Per Nilsson and Thomas H. Christensen
Thomas H. Christensen and Yasushi Matsufuji
Thomas H. Christensen
Bernd Bilitewski
Thomas H. Christensen and Bernd Bilitewski
Tore Hulgaard and J¨urgen Vehlow
J¨urgen Vehlow and Søren Dalager
Søren Dalager and Dieter O. Reimann
Ole Hjelmar, Annette Johnson and Rob Comans
Maria Arm, T. Taylor Eighmy and Thomas H. Christensen
Helmut Rechberger
Susanne Rotter
Thomas Astrup and Bernd Bilitewski
Edward Stentiford and Marco de Bertoldi
Uta Krogmann, Ina K¨orner and Luis F. Diaz
Alessio Boldrin, Thomas H. Christensen, Ina K¨orner and Uta Krogmann
Irini Angelidaki and Damien John Batstone
Jes la Cour Jansen
Jacob Møller, Thomas H. Christensen and Jes la Cour Jansen
Bernd Bilitewski, Christiane Oros and Thomas H. Christensen
Dimitar Karakashev and Irini Angelidaki
Morten Carlsbæk
Peter E. Holm, Lars Stoumann Jensen and Michael J. McLaughlin
Thomas H. Christensen, Heijo Scharff and Ole Hjelmar
Thomas H. Christensen, Simone Manfredi and Peter Kjeldsen
Peter Kjeldsen and Richard Beaven
R. Kerry Rowe and Jamie F. VanGulck
Ole Hjelmar and Hans A. van der Sloot
Thomas H. Christensen, Simone Manfredi and Keith Knox
Rainer Stegmann
Thomas H. Christensen, Simone Manfredi, Peter Kjeldsen and Robert B. Wallace
Charlotte Scheutz and Peter Kjeldsen
Hans Willumsen and Morton A. Barlaz
Hans-J¨urgen Ehrig and Howard Robinson
Roberto Raga, Raffaello Cossu and Anders Lagerkvist
Nicole D. Berge, Eyad S. Batarseh and Debra R. Reinhart
Heijo Scharff
Ole Vennicke Christiansen and Peder Bisbjerg
Marianne Bigum and Thomas H Christensen
Ina K¨orner, Jenna Jambeck, Hans Leithoff and Volker Lenz
Joan Maj Nielsen and Jørn Lauridsen
Line Brogaard and Thomas H. Christensen
Subject Areas: Chemistry [PN]
