Applied bioremediation and phytoremediation:
"The production of a vast array of chemicals, especially petroleum compounds during the last century, has caused a serious deterioration in environment quality. In this context, one major threat is posed by the continually expanding areas of contaminated soils and sediments. For this volume, a...
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2004
|
Schriftenreihe: | Soil biology
1 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Zusammenfassung: | "The production of a vast array of chemicals, especially petroleum compounds during the last century, has caused a serious deterioration in environment quality. In this context, one major threat is posed by the continually expanding areas of contaminated soils and sediments. For this volume, a number of experts from universities, government laboratories and industry, have contributed chapters on innovative methods in bioremediation and phytoremediation."--BOOK JACKET. |
Beschreibung: | Includes bibliographical references and index |
Beschreibung: | XIX, 281 S. graph. Darst. |
ISBN: | 3540210202 |
Internformat
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245 | 1 | 0 | |a Applied bioremediation and phytoremediation |c Ajay Singh, Owen P. Ward (eds.) |
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490 | 1 | |a Soil biology |v 1 | |
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650 | 4 | |a Biorestauration | |
650 | 4 | |a Phytorestauration | |
650 | 4 | |a Sols - Décontamination | |
650 | 4 | |a Bioremediation | |
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adam_text |
Titel: Applied bioremediation and phytoremediation
Autor: Singh, Ajay
Jahr: 2004
Contents
1 Soil Bioremediation and Phytoremediation -
An Overview . 1
Owen Ward and Ajay Singh
1 Introduction . 1
2 Major Environmental Contaminants. 4
2.1 Chemical Contaminants. 4
2.2 Biological Wastes and Contaminants. 5
3 Microbial Transformation of Chemical Contaminants . 5
4 Phytoremediation . 7
5 Criteria for Selecting Bioremediation as an Option and
for Selecting a Particular Bioremediation Configuration . 7
6 Regulations and Public Attitudes . 9
7 Advantages of Bioremediation Approaches
to Environmental Sustainability. 9
8 Conclusions. 10
References . 11
2 Biodegradation and Bioremediation of Petroleum
Pollutants in Soil. 13
Michael H. Huesemann
1 Introduction . 13
2 Types of Petroleum Wastes and Their Composition . 14
3 Soil Biotreatment Technologies. 15
4 Loss Mechanisms Other Than Biodegradation. 17
5 Optimizing Environmental Conditions. 18
5.1 Moisture Content . 18
5.2 Oxygen . 18
5.3 Fertilizers . 20
5.4 pH. 21
5.5 Temperature . 21
6 Addressing Other Potential Limitations. 22
6.1 High Contaminant Concentrations . 22
6.2 Presence of Inhibitors. 22
X Contents
6.3 Insufficient Number of Hydrocarbon-Degrading
Microorganisms . 23
6.4 Lack of Cometabolism . 24
6.5 Inherent Recalcitrance . 25
6.6 Bioavailability Limitations . 26
7 Risk Assessment and Environmentally Acceptable
End Points. 28
8 Conclusions. 29
References. 29
3 Bioremediation of Pesticide-Contaminated Soils . 35
Ramesh C. Kuhad, Atul K. Johri, Ajay Singh, and
Owen P. Ward
1 Introduction . 35
2 Biodegradation of Pesticides. 36
3 Organochlorines . 38
3.1 Chlorophenoxy Acids. 38
3.2 DDT. 40
3.3 /-Hexachlorocyclohexane . 42
3.4 Endosulfan . 43
4 Organophosphates. 44
5 Carbamates . 45
6 s-Triazines. 46
7 Other Pesticides. 47
8 Conclusions and Future Prospects . 48
References. 49
4 Biodegradation and Bioremediation of Explosives. 55
Jian-Shen Zhao, Diane Fournier, Sonia Thiboutot,
GuyAmpleman, and Jalal Hawari
1 Introduction . 55
2 Structural Properties and Effect on Biodegradation . 57
3 Biodegradation of Cyclic Nitramine Explosives. 60
3.1 Biodegradation of RDX and HMX by Anaerobic
Bacteria. 60
3.2 Biodegradation of RDX Under Aerobic Conditions . 63
3.3 Biodegradation of Polycyclic Nitramine Explosive
CL-20. 66
3.4 Biodegradation of RDX and HMX in Sediments. 67
4 Biodegradation of TNT and Other Polynitroaromatic
Explosives . 67
4.1 Biodegradation of TNT by Aerobic Bacteria. 67
Contents XI
4.2 Biodegradation of TNT by Anaerobic Bacteria. 70
4.3 Biodegradation of TNT by Fungi. 71
5 Safety Procedures . 73
6 Conclusions. 73
References . 74
5 Biological Treatment of Metallic Pollutants. 81
Brendlyn D. Faison
1 Introduction . 81
1.1 Definition of Scope. 81
1.2 Biologically Relevant Elements. 83
1.3 Iron Respiration as a Model for Dissimilatory
Metabolism. 87
2 Microorganisms as Remediation Tools for Suboxic
Environments . 89
2.1 Problem Definition. 89
2.2 Relevant Biological Factors. 90
2.3 Relationship to Abiotic Factors . 103
3. Practical Aspects of Bioremediation 105
3.1 Management and Operations. 105
3.2 Hydrological Data Needs . 105
3.3 Physicochemical Data Needs . 110
3.4 Spatial and Temporal Data Needs . 110
3.5 Major Technology Needs . Ill
4 Conclusions. 112
References . 113
6 Phytoremediation of Persistent Organic Contaminants
in the Environment . 115
Saleema Saleh, Xiao-Dong Huang, Bruce M. Greenberg,
and Bernard R. Glick
1 Fundamentals of Phytoremediation. 115
2 Physical Remediation Strategies. 117
3 Phytoremediation Strategies. 118
4 Advantages and Disadvantages of Phytoremediation. 122
5 Phytoremediation of Organics . 123
5.1 Sources of Organic Contaminants
in the Environment. 123
5.2 Factors That Affect the Uptake of Organic
Contaminants . 124
5.3 Contaminant Classes. 125
5.4 Role of Microorganisms in Soil Bioremediation. 127
XII Contents
5.5 Improved Mechanisms to Optimize
Phytoremediation. 129
6 Conclusions. 131
References . 131
7 Phytoremediation of Metals and Inorganic Pollutants. 135
Tomas Macek, Daniela Pavlikova, and Martina Mackova
1 Introduction . 135
2 Phytoremediation and Rhizoremediation. 140
2.1 The Role of the Rhizosphere . 140
2.2 Exudates and Enzymes Released. 141
2.3 Phytoremediation Methods . 141
2.4 Artificial Wetlands . 142
2.5 Perspectives Regarding Plants Used for Detoxification
in Chemical Weapon Demilitarisation. 142
3 In Vitro Plant Cultures in the Phytoremediation
of Metals . 143
3.1 Callus and Cell Suspension Cultures . 143
3.2 Hairy Root Cultures . 144
4 Breeding and Genetic Engineering. 145
4.1 Methods of Preparation of Transgenic Plants . 145
4.2 Phytoremediation of a Mercury-Contaminated
Environment. 146
4.3 Volatilisation of Selenium. 147
4.4 Increased Accumulation of Heavy Metals . 147
5 Other Approaches to Improve Phytoremediation
Processes. 148
5.1 Symbiotic Bacteria. 148
5.2 Mycorrhizal Symbiosis. 149
5.3 Role of Secondary Plant Metabolites
in Phytoremediation. 150
6 Conclusions. 150
References. 152
8 Remediation of Organic Pollutants Through
Natural Attenuation . 159
Serge Delisle and Charles W. Greer
1 Definition of Natural Attenuation. 159
1.1 Monitored Natural Attenuation (MNA). 161
1.2 Evaluating Natural Attenuation . 161
1.3 Abiotic Processes of Natural Attenuation. 161
Contents XIII
2 Overview of Intrinsic Bioremediation . 163
2.1 Electron Acceptors . 164
2.2 Intrinsic Bioremediation of Petroleum
Hydrocarbons. 166
2.3 Intrinsic Bioremediation of Chlorinated Solvents . 166
3 Case Studies of Monitored Natural Attenuation. 167
3.1 Intrinsic Bioremediation of Fuel Hydrocarbons at a
Former Canadian Forces Base, Chatham, New
Brunswick - Case 1. 167
3.2 Intrinsic Bioremediation of Chlorinated Solvents
at Canadian Force Base, Trenton, Ontario - Case 2 . 176
4 Conclusions. 182
References . 185
9 Evaluation of Current Soil Bioremediation
Technologies . 187
Owen P. Ward and Ajay Singh
1 Introduction . 187
2 Factors Affecting Bioremediation and Choice
of Technology . 188
2.1 Site Characteristics. 188
2.2 Soil Type. 188
2.3 Moisture Content . 188
2.4 Nature of Contaminant. 189
2.5 Time Constraints . 189
2.6 Volatilization. 190
2.7 Biostimulation. 190
2.8 Bioaugmentation. 194
2.9 Sampling and Monitoring. 195
3 Bioremediation Technologies and Their Evaluation. 196
3.1 Natural Attenuation . 197
3.2 In Situ Subsurface Bioremediation. 197
3.3 Soil Pile and Composting Techniques . 199
3.4 Marine Shoreline and Wetlands Remediation. 200
3.5 Land Farming. 202
3.6 Slurry Bioreactors. 202
3.7 Phytoremediation. 204
4 Conclusions. 206
References . 207
XIV Contents
10 Bioremediation of Petroleum Hydrocarbon-Polluted Soils
in Extreme Temperature Environments. 215
Rosa Margesin
1 Introduction . 215
2 Bioremediation in Cold Environments. 215
2.1 Arctic Soils . 216
2.2 Alpine Soils. 221
2.3 Antarctic Soils. 224
3 Bioremediation of Desert Soils After the Gulf War . 228
3.1 Limiting Factors for Biodegradation . 229
3.2 Field Bioremediation . 230
4 Conclusion. 231
References . 232
11 Innovative Methods for the Biofiltration of Air
Contaminants. 235
Zarook Shareefdeen
1 Introduction . 235
2 Non-biological Methods . 236
3 Biological Methods . 237
3.1 Classical Biofilters. 238
3.2 Biotrickling Biofilters. 239
3.3 Bioscrubbers. 239
4 Biofilter Terminology and Parameters . 240
4.1 Empty Bed Residence Time . 240
4.2 Elimination Capacity or Removal Rate . 240
4.3 Removal Efficiency. 241
4.4 Mass Loading . 241
4.5 Media Volume, Media Depth and Footprint. 241
5 Media Properties. 242
6 Feasibility of VOC and Odor Removal in Biofilters . 243
7 Modeling of Biofiltration Processes . 244
8 Selected Industrial Applications. 245
9 Conclusions. 251
References. 251
12 Risk-Based Remediation of Contaminated Soil. 255
Tahir Husain
1 Introduction . 255
2 Regulatory Standards . 256
3 Formulation. 259
Contents XV
3.1 Tier 1 Approach . 261
3.2 Tier 2 Approach . 266
3.3 Tier 3 Approach . 269
4 Transport Models and Remediation Technology
Database . 269
5 Conclusions. 274
References . 274
Subject Index . 277 |
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spelling | Applied bioremediation and phytoremediation Ajay Singh, Owen P. Ward (eds.) Berlin [u.a.] Springer 2004 XIX, 281 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Soil biology 1 Includes bibliographical references and index "The production of a vast array of chemicals, especially petroleum compounds during the last century, has caused a serious deterioration in environment quality. In this context, one major threat is posed by the continually expanding areas of contaminated soils and sediments. For this volume, a number of experts from universities, government laboratories and industry, have contributed chapters on innovative methods in bioremediation and phytoremediation."--BOOK JACKET. Biorestauration Phytorestauration Sols - Décontamination Bioremediation Phytoremediation Soil remediation Bioremediation (DE-588)4611954-1 gnd rswk-swf Boden (DE-588)4007348-8 gnd rswk-swf Phytoremediation (DE-588)4723845-8 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Boden (DE-588)4007348-8 s Bioremediation (DE-588)4611954-1 s DE-604 Phytoremediation (DE-588)4723845-8 s Singh, Ajay 1963- Sonstige (DE-588)129240877 oth Ward, Owen P. Sonstige oth Soil biology 1 (DE-604)BV019353150 1 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012817171&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Applied bioremediation and phytoremediation Soil biology Biorestauration Phytorestauration Sols - Décontamination Bioremediation Phytoremediation Soil remediation Bioremediation (DE-588)4611954-1 gnd Boden (DE-588)4007348-8 gnd Phytoremediation (DE-588)4723845-8 gnd |
subject_GND | (DE-588)4611954-1 (DE-588)4007348-8 (DE-588)4723845-8 (DE-588)4143413-4 |
title | Applied bioremediation and phytoremediation |
title_auth | Applied bioremediation and phytoremediation |
title_exact_search | Applied bioremediation and phytoremediation |
title_full | Applied bioremediation and phytoremediation Ajay Singh, Owen P. Ward (eds.) |
title_fullStr | Applied bioremediation and phytoremediation Ajay Singh, Owen P. Ward (eds.) |
title_full_unstemmed | Applied bioremediation and phytoremediation Ajay Singh, Owen P. Ward (eds.) |
title_short | Applied bioremediation and phytoremediation |
title_sort | applied bioremediation and phytoremediation |
topic | Biorestauration Phytorestauration Sols - Décontamination Bioremediation Phytoremediation Soil remediation Bioremediation (DE-588)4611954-1 gnd Boden (DE-588)4007348-8 gnd Phytoremediation (DE-588)4723845-8 gnd |
topic_facet | Biorestauration Phytorestauration Sols - Décontamination Bioremediation Phytoremediation Soil remediation Boden Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012817171&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV019353150 |
work_keys_str_mv | AT singhajay appliedbioremediationandphytoremediation AT wardowenp appliedbioremediationandphytoremediation |