Mitigation of landfill gas emissions / (Record no. 7364)

MARC details
000 -LEADER
fixed length control field 04771nam a2200181Ia 4500
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20201228133136.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 170108s9999 xx 000 0 und d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
ISBN 9780415630771
041 ## - LANGUAGE CODE
Language code of text/sound track or separate title eng
082 ## - DEWEY DECIMAL CLASSIFICATION NUMBER
Classification number 363.7387
Item number PAW-M
100 ## - MAIN ENTRY--AUTHOR NAME
Personal name Pawlowska, Malgorzata
245 ## - TITLE STATEMENT
Title Mitigation of landfill gas emissions /
Statement of responsibility, etc by Malgorzata Pawlowska
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Name of publisher CRC Press,
Year of publication 2014.
Place of publication Leiden:
300 ## - PHYSICAL DESCRIPTION
Number of Pages xiii, 104 p.
505 ## - FORMATTED CONTENTS NOTE
Formatted contents note 1 Landfilling of municipal solid waste in global perspective --<br/>1.1 Introduction --<br/>1.2 Current state of waste landfilling --<br/>1.3 Landfill gas impact on the environment --<br/>1.3.1 Landfill gas contribution to climate change --<br/>1.3.2 Landfill gas effect on the atmospheric chemistry --<br/>1.3.3 Local odour nuisance --<br/>1.3.4 Human health hazards --<br/>1.4 Role of waste landfilling in carbon budget --<br/>1.4.1 Landfills as a carbon repository --<br/>1.4.2 Landfill gas as renewable energy source --<br/>1.5 Strategies of mitigation for landfill gas emission --<br/>1.6 Summary References --<br/>2 Characteristics of landfill gas --<br/>2.1 Introduction --<br/>2.2 Landfill gas composition --<br/>2.2.1 Factors influencing landfill gas composition --<br/>2.2.2 Characteristics of landfill gas components --<br/>2.3 Quantitative estimation of landfill gas production--<br/>2.4 Landfill gas utilization --<br/>2.5 Summary References --<br/>3 Increasing landfill gas production and recovery --<br/>3.1 Introduction --<br/>3.2 Recirculation of liquids as a basis for an anaerobic bioreactor landfill --<br/>3.2.1 Increasing moisture content and water migration inside deposited waste --<br/>3.2.2 Other effects accompanying the supply of liquids to a landfill bioreactor --<br/>3.3 Technical requirements for anaerobic bioreactor landfill construction --<br/>3.4 Effects of liquids recirculating inside the landfill --<br/>3.5 Critical approach to anaerobic bioreactors landfill technology --<br/>3.6 Hybrid bioreactor landfill--<br/>3.7 Summary References --<br/>4 Attenuation of greenhouse gas emissions via landfill aeration --<br/>4.1 Introduction--<br/>4.2 Fundaments of the aerobic decomposition of organic matter in landfill --<br/>4.3 Consequences of in situ landfill aeration --<br/>4.3.1 Landfill gas composition --<br/>4.3.2 Quality and quantity of landfill leachate --<br/>4.3.2.1 Changes in pH value --<br/>4.3.2.2 Reduction in leachate organic strength --<br/>4.3.2.3 Enhanced ammoniacal nitrogen removal --<br/>4.3.2.4 Changes in leachate alkalinity --<br/>4.3.2.5 Decrease in heavy metals concentration --<br/>4.3.2.6 Decrease in ecotoxicity of leachate --<br/>4.3.2.7 Increase in chloride concentration --<br/>4.3.2.8 Reduction in leachate volume --<br/>4.3.3 Deposited waste parameters --<br/>4.3.3.1 Landfill settlement --<br/>4.3.3.2 Reduction of organic matter content in waste --<br/>4.3.3.3 Temperature inside the landfill --<br/>4.4 Concepts of landfill aeration --<br/>4.4.1 Aerobic bioreactor landfill --<br/>4.4.2 Semi-aerobic landfill --<br/>4.4.3 In-situ aeration of old landfills --<br/>4.5 Methods of air supply to the landfill --<br/>4.5.1 Low pressure aeration --<br/>4.5.1.1 Active aeration without or with off-gas extraction --<br/>4.5.1.2 Passive aeration (air venting or over-suction system) --<br/>4.5.2 High pressure aeration --<br/>4.6 Advantages and disadvantages of the landfill aeration--<br/>4.7 Critical approach to the landfill aeration concept --<br/>4.8 Summary References --<br/>5 Biological oxidation as a method for mitigation of LFG emission --<br/>5.1 Introduction --<br/>5.2 Fundaments of microbial removal of LFG components --<br/>5.3 Biooxidation of methane under aerobic conditions --<br/>5.3.1 Methane-oxidising microorganisms: Classification and habitat requirements --<br/>5.3.2 Pathway of aerobic methane biooxidation--<br/>5.3.3 Methanotrophs in landfill covers and biofilters --<br/>5.4 Biooxidation of VOCs under aerobic conditions --<br/>5.4.1 VOCs-oxidising microorganisms --<br/>5.4.2 Pathways of degradation of VOCs used as a primary substrate for bacteria growth --<br/>5.4.3 Cometabolic pathways of aerobic VOCs biodegradation --<br/>5.4.4 Substrate interactions affecting biodegradation of particular BTEXs --<br/>5.5 Factors determining efficiency of biological methods for mitigation of LFG emission--<br/>5.5.1 Parameters of filter bed material --<br/>5.5.2 Temperature of microorganisms growth --<br/>5.5.3 Composition of gas mixture --<br/>5.6 Technological approach to application of biological methods for mitigation of LFG emission --<br/>5.6.1 Forms of biotic systems for landfill gas mitigation --<br/>5.6.1.1 Landfill biocovers --<br/>5.6.1.2 Biowindows --<br/>5.6.1.3 Biofilters --<br/>5.6.1.4 Biotarps --<br/>5.7 Operating and control parameters of landfill gas biofilters --<br/>5.8 Quantitative approach to methane and VOCs removal in landfill covers and biofilters --<br/>5.9 Critical approach to LFG biofiltration --<br/>5.10 Summary References
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical Term PL
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Koha item type Books
Holdings
Lost status Damaged status Collection code Home library Current library Shelving location Date acquired Source of acquisition Full call number Accession Number Koha item type
    Non Fiction Library, SPAB Library, SPAB F-2 03/10/2016 SPB/LIB/16-17/B701/2016-8-16/IN15606/16-17/2016-9-17/Shankar/GBPGBP59.00/RS5475.20 363.7387 PAW-M 009835 Text/Reserve Book

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