Practical manual of groundwater microbiology
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Sprache: | English |
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Boca Raton, Fla. [u.a.]
CRC
2008
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Ausgabe: | 2. ed. |
Schriftenreihe: | Sustainable water well series
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245 | 1 | 0 | |a Practical manual of groundwater microbiology |c D. Roy Cullimore |
250 | |a 2. ed. | ||
264 | 1 | |a Boca Raton, Fla. [u.a.] |b CRC |c 2008 | |
300 | |a 376 S. |b Ill., graph. Darst. | ||
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Datensatz im Suchindex
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adam_text | Practical Manual of
GROUNDWATER
MICROBIOLOGY
SECOND EDITION
D Roy Cullimore
(roC) CRC Press
M^ J Taylor amp; Francis Group
Boca Raton London New York
CRC Press is an imprint of the
Taylor amp; Francis Croup, an Informs business
Table of Contents
List of Figures xv
Preface xvii
Author xxi
Chapter 1 Water Wells Have Natural Filters: The Challenge 1
1 1 Introduction 1
1 2 Feeding the Natural Filters 3
1 3 Other Factors Associated with Natural Filters 6
1 4 Maintaining Natural Filters around Water Wells 7
1 5 Failure of Natural Filters and Symptoms in
Water Wells 8
Chapter 2 Microbes in Water Wells: The Good, the Bad, and
the Ugly 11
2 1 What Are Microbes? 11
2 2 Where Are Microbes? 13
2 3 Sterility, Health, and Microbes 14
2 4 Bacterial Groups of Significance in Water Wells 16
2 5 Coliform Bacteria 16
251 Total Coliforms 17
252 Testing for Coliform Bacteria in Water 17
253 MF Coliform Test Method 18
254 MPNs Coliform Test Method 18
255 MUG Test 19
2 6 Iron-Related Bacteria 19
2 7 Slime-Forming Bacteria 21
2 8 Total Bacteria 21
28L SPC Method 22
282 TPC Method 22
2 9 Microorganisms in Water Wells 23
2 10 Role of Molds (Fungi) in Water Wells 23
2 11 Role of Protozoa in Water Wells 25
2 12 Role of Viruses in Water Wells 26
2 13 Acute Gastrointestinal Illness of Unknown Etiology 28
Chapter 3 Sampling Procedures 31
3 1 Introduction 31
3 2 Sampling Water Wells 31
3 3 Single Sampling Procedure for Water Well 33
3 4 Multiple Sampling from Water Well 37
3 5 ZIP Testing 39
3 6 Routine Sampling 42
Chapter 4 Symptoms of Failure, Early Warnings, and Eventual
Catastrophes 47
4 1 Introduction 47
4 2 Sustainable Wells 48
4 3 Historical Records 50
4 4 Biological Assay Data 51
4 5 Biofouling: The Impact of Biofilms on Specific Capacity ! 54
4 6 Significance of Drawdown Changes 56
4 7 Oil-Lubricated Pumps: The Risks 56
4 8 Considerations in Deciding upon a Treatment Strategy 57
Chapter 5 Remedies from a Drop to a Drum 59
5 1 Introduction 59
5 2 PM Servicing 62
5 3 Regeneration 63
5 4 Water Wells That Fail without Routine
PM or Regeneration 63
Chapter 6 Regeneration from Edge of Catastrophe 69
6 1 Introduction 69
611 Structural or Mechanical Failure 69
612 Clogging 69
613 Plugging 70
614 Corrosion 70
615 Regeneration • 70
6 2 Types of Chemicals Employed in Regeneration 73
621 Issues in Chemical Choices 73
6 3 Chemical Selection for Use in Regeneration of Wells 74
631 Acids 74
6311 Acetic Acid 75
6312 Sulfamic Acid 75
6313 Phosphoric Acids 75
6314 Organic Acids 76
632 Biocides 76
6321 Chlorine 76
6322 Ozone 77
6323 Hydrogen Peroxide 77
6324 Potassium Permanganate 77
633 Surfactants 78
6 4 Sequestration Strategies 78
6 5 Use of Heat 78
6 6 Chemical Blend Selection 79
6 7 Regeneration Practices 80
Chapter 7 Spheres of Influence: The Coming and the Going 85
7 1 Introduction 85
7 2 Risks from Flooding Causing Compromise to Wells 85
7 3 Groundwater under Direct Influence of
Surface Water 91
Chapter 8 Art of Well Development 95
Chapter 9 Illustrated Guide for Groundwater Microbiology 101
9 1 Natural Filters around Water Wells 101
9 2 Changes in Position of Biomass around Wells 102
9 3 Growth of Biomass and Impact on Well Characteristics 103
9 4 Groundwater Flow through Four Biofouling
Water Wells 105
9 5 Diagrammatic Presentation of Bacterial Cell 106
9 6 Cross Section of Attached Biomass 107
9 7 Major Forms of Biofouling in Water Wells 108
9 8 Forms of Coliform Bacteria 109
9 9 Forms of Iron-Related Bacteria 110
9 10 Biocolloids 111
9 11 Sulfate-Reducing Bacteria 112
9 12 Fungi (Molds) 114
9 13 Pathogenic (Health Risk) Protozoa 115
9 14 Size of Viruses and Bacteria 116
9 15 Growing Bacteria 117
9 16 Agar Dip-Paddle Technique 119
9 17 Slope BART Culture Technique 120
9 18 BART Test Method 121
9 19 Rodina Test for IRB 122
9 20 Cholodny Test for IRB 123
9 21 Grainge and Lund Test for IRB 124
9 22 George Alford Quick and Dirty (GAQD) Test for IRB 125
9 23 Staining Methods for IRB 126
9 24 Agar Spreadplate Enumeration Method for Bacteria 128
9 25 Bacterial Colony Forms Growing on Agar Plates 129
9 26 ATP Test Method for Detecting Bacterial Activity 130
9 27 Comparison of ATP to Time Lapse Using
BART Testers 131
9 28 Theoretical Functioning of BART Tester 132
9 29 Types of BART Testers in Common Use 133
9 30 Protocol for Filling BART Field Tester 134
9 31 Common Sites for Early BART Reactions 136
9 32 IRB-BART Reaction Patterns 137
9 33 SRB-BART Reaction Patterns 138
9 34 SLYM-BART Reaction Patterns 139
9 35 HAB-BART Reaction Patterns 140
9 36 DN-BART Reaction Patterns 141
9 37 N-BART Reaction Patterns 142
9 38 ALGE-BART Reaction Patterns 143
9 39 APB-BART Reaction Patterns 144
9 40 Relationship of Time Lapse to Population 145
9 41 ORP Relationship to IRB-BART Reactions 146
9 42 ORP Relationship to SRB-BART Reactions 148
9 43 Effects of Sampling during Pumping on
Biomass Characteristics 149
9 44 Location of Biomass Shifting during Plugging
of Well 150
9 45 Primary Effect of Water Well Treatments 151
9 46 Mechanisms for Bacteriologically Influenced
Infestation of Water Wells 153
9 47 Zones of Interrogation Projection (ZIP I) 154
9 48 Zones of Interrogation Projection (ZIP II) 155
9 49 Zones of Interrogation Projection (ZIP III) 156
9 50 Relationship between Bacterial Activity and Specific
Capacity in Biofouling Water Wells 157
9 51 Movement of the Redox Front around a Well
Suffering Microbiologically Influenced Plugging 158
9 52 Treatment Impacts on Biofouling Water Well 159
9 53 Video-Camera Logging of Biofouled Water Wells 160
9 54 Methane (Natural Gas) Eruptions in Water Wells 161
9 55 Harmonic Pulsing Activities in Plugging Biomass 162
9 56 Metal Bioaccumulation around Active Water Wells 163
9 57 Impact of Treatments on the Sequential Releases of !
Metals from Biomass 164
9 58 Risks from Applying Phosphorus Compounds as a
Treatment Strategy for Biofouled Water Wells 166
9 59 Maturation of Biofouling Water Well: Impacts on
Specific Capacity, and Bacterial Activity 168
9 60 Control Strategies for Removal of Biomass 169
9 61 Comparison of Well Regeneration with Preventative
Maintenance (Servicing) 170
9 62 Shock, Disrupt, and Disperse Phases of Water
Well Regeneration 171
9 63 Effects of Distortions in Location of Biomass
On Efficiency of Treatments 171
9 64 Treatment of Fractured Hard Rock Wells 174
9 65 Impact of Treatment on Biomass Involved in
Biofouling : 175
9 66 Factors Affecting Sustainability of Water Wells 177
9 67 Effect of Growth of Various Microbial Communities
on Functions of Water Wells 177
9 68 Sequential Risk Analysis for Test Pumping of Wells 179
9 69 Biofouling of Relief Wells in Earth-Filled Dam
Structures Used to Create Water Reservoirs- 181
9 70 Biofouling of Horizontal Wells 182
9 71 Impact of Flooding on Producing Water Wells 182
9 72 Direct and Indirect Impacts of Water Wells Flooded
by Surface Waters 185
9 73 Flood Impact on Biofouled Well 186
9 74 Protection of Wells from Flooding 187
9 75 Impact of Flooding on Position of the Redox
Front around Water Wells 188
9 76 Impact of Oil and Gas Wells on Neighboring
Water Wells 189
9 77 Theoretical Functioning of BART Tester 191
9 78 Positioning of Biomass around Slotted Screens in
Biofouling Water Wells 191
9 79 Treatment Sequences in Biofouled Water Well
Regeneration 194
Appendices
Appendix A Microbiological Test Methods 197
A I Introduction 197
A 2 Historical Background 197
A 3 Direct Examination of Water Samples
for Microorganisms 198
A 4 Cultivation Methods Applicable to Detection
of Microorganisms in Water 199
A 5 Use of Agar Plates to Determine Bacterial Activities 203
A 6 Selection of Agar Media 204
A 7 Spreadplate Enumeration for Microbial
Content of Water 208
A 8 Biochemically Based Determination of
Microorganisms in Water 208
A 9 Testing for Molds in Water Wells 211
A 10 Testing for Viruses in Water Wells 211
Appendix B BART Methodologies 215
B I Introduction 215
B 2 Setting up BART Test 217
B 3 Red Capped Iron-Related Bacteria—IRB-BART 219
B31 Qualitative Interpretation of IRB
Reaction Patterns 221
B 4 Black Capped SRB—SRB-BART 224
B 5 Lime Green Capped Slime-Forming
Bacteria—SLYM-BART 226
B 6 Dark Blue Capped Heterotrophic
Bacteria—HAB-BART 228
B 7 Gray Capped Denitrifying Bacteria—DN-BART 231
B 8 White Capped Nitrifying Bacteria—N-BART 232
B 9 Dark Green Capped Algae—ALGE-BART 234
B 10 Purple Capped Acid-Producing
Bacteria—APB-BART 235
B ll Yellow Capped Fluorescent Pseudomonad
Bacteria—FLOR-BART 237
B I2 Comparison of BART to Other Test Methods 238
B 12 1 Comparisons of BART Testers and
Heterotrophic Plate Count and Adenosine
Triphosphate Tests 238
B I2 2 Environmental Technology Verification
(Canada, ETV) 238
B 12 3 Comparison of BART Testers with
Other Microbiological Tests 240
Appendix C Video Borehole Log 245
Appendix D Treatment Strategies 249
D I Introduction 249
D 2 Treatment Alternatives 250
D 3 Survey of Potential Treatment Applications 251
D 4 Overview of Physical Treatments 251
D41 Direct Application of Heat 251
D42 Hydraulic Surging and Direct Physical
Cleaning of Fouled Sites 252
D43 Shifting in Position of Redox Front 253
D44 Application of Electromagnetically
Charged Surfaces 254
D 5 Overview of Chemical Treatments 255
D51 Disinfectants 255
D511 Chlorine-Based Disinfectants 256
D512 Ozone 257
- D513 Peroxides 257
D52 Acids 258
D521 Inorganic Acids 258
D5211 Hydrochloric Acid 258
D5212 Sulfamic Acid 259
D5213 Phosphorus-Based Acids 259
D522 Organic Acids 260
D5221 Acetic Acid 260
D5222 Other Organic Acids 260
D53 Dispersants and Penetrants 261
D54 Alkalies 262
D55 Selected Blended Mixtures of Chemicals 263
D 6 Overview of Treatments Blending Chemical and
Physical Methods 263
D61 Pressurized Injection of Carbon Dioxide 264
D62 Blended Chemical and Heat Treatments 265
D 7 Chemical Treatments: Traditional versus New 266
D71 Chemical Treatment of Wells 267
D72 Traditional Technologies 267
D73 Chemical Treatments in
Preventive Mode 268
D 8 Selecting Well Volume to Treat 268
Appendix E Sustainability of Water Wells 271
E I Introduction 271
E 2 Defining Sustainability 271
E 3 Production Performance 273
E 4 Quality Forensics 276
E 5 PM Servicing Timing 283
E 6 Regeneration Timing 284
Appendix F Interaction between Neighboring Water Wells 287
F I Interaction with Neighboring Oil and Gas Wells 288
F 2 Oil and Gas Wells 293
F21 Impact One: Oxygen and Dilution Impact 293
F22 Impact Two: Water-Borne Pathogenic
Microorganisms 293
F23 Impact Three: Biofouling Potential 294
F24 General Discussion 294
F 3 Influence of Microbial Activities on
Functioning of Tile Drains 296
Appendix G Standard Microbiological Approaches for Groundwater
Challenges, Concepts (Summary) 301
Appendix H Methods for Obtaining Water Samples for
Microbiological Testing 303
Appendix I Conservation of the Water Sample between
Collection and Testing 307
Appendix J Influence of Ambient Water Temperatures
on Tests 309
Appendix K Protocols to Obtain Water Samples 311
Appendix L Application of BART Testers 313
L I Use of BART Testers 313
L 2 Functional Advantages and Concerns of
Molecular and Genetically Based Determinations
of Microbial Presence and Activities 314
Appendix M Evaluation of Risk Potentials Relating to Specific
Capacity, Plugging, Corrosion, and Health Risks 317
M I Introduction 317
M 2 Sustainability in Water Wells: Signals
of Success and Warnings of Doom 319
Appendix N Regulatory Considerations Concerning Phosphorus 323
Appendix O Applications of Heat as Component in
Regeneration of Biofouled Water Wells 325
Appendix P Application of Vegetable Oil as Substitute
for Hydrocarbon-Based Oils to Lubricate Pumps 327
Appendix Q Frequently Asked Questions 329
Q I What Are Coliform Bacteria? 329
Q 2 Are Coliform Bacteria Pathogenic (Disease Producing)? 329
Q 3 What Is the Difference between Total Coliforms
and Fecal Coliforms? 329
Q 4 Which of the Two Coliform Groups Presents the
Greatest Hazard in Drinking Water? 330
Q 5 Are Coliform Bacteria Only Found in Well Water
after Contamination with Wastes? 330
Q 6 Are Water Wells Sterile When Not Contaminated with •
Coliform Bacteria? 330
Q 7 What Do These Other Microorganisms Do to a Well? 330
Q 8 How Do These Bacteria Cause a Well to Lose Water
Quality and Quantity? 330
Q 9 Can These Microbes also Physically Damage a Well? 331
Q 10 What Happens if We Disinfect Water Wells? 331
QI1 Should I Use Chlorine to Disinfect a Well? - 331
Q 12 If I Cannot Use Chlorine Disinfectant, What Other
Disinfectant Can I Use? 332
Q I3 If My Well Is Plugging with Microbial Slime?
Can I Use Heat to Help Destroy Slimes? 332
Q I4 I Have Heard That Heat Simply Pushes Microbes
Further into the Formation and Create an Even
Bigger Problem Is That Correct? 333
Q I5 Can I Take a Water Sample and Send It Away for
Testing for Redox (ORP) to See Where the
Microbes Are? 333
Q I6 How Can I Test Water for Bacteria That Might
Cause Biofouling or Check a Well to See How
Safe the Water Is to Drink? 334
Q 17 Is It True That Some Experts Say That the
Bacterial Problems in Groundwater Are Not Significant? 335
Appendix R Glossary 337
Appendix S Well Questionnaire (First Enquiry) 355
Appendix T Further Reading 359
Index 365
|
any_adam_object | 1 |
author | Cullimore, Roy |
author_facet | Cullimore, Roy |
author_role | aut |
author_sort | Cullimore, Roy |
author_variant | r c rc |
building | Verbundindex |
bvnumber | BV036078113 |
classification_rvk | WF 2300 |
ctrlnum | (OCoLC)263707370 (DE-599)BSZ27839499X |
dewey-full | 579.1 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 579 - Microorganisms, fungi & algae |
dewey-raw | 579.1 |
dewey-search | 579.1 |
dewey-sort | 3579.1 |
dewey-tens | 570 - Biology |
discipline | Biologie |
edition | 2. ed. |
format | Book |
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id | DE-604.BV036078113 |
illustrated | Illustrated |
indexdate | 2024-12-23T22:58:57Z |
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isbn | 0849385318 9780849385315 |
language | English |
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owner_facet | DE-83 |
physical | 376 S. Ill., graph. Darst. |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | CRC |
record_format | marc |
series2 | Sustainable water well series |
spellingShingle | Cullimore, Roy Practical manual of groundwater microbiology Groundwater / Microbiology / Handbooks, manuals, etc Hydrogeochemie (DE-588)4225478-4 gnd Biofilm (DE-588)4232790-8 gnd Biogeochemie (DE-588)4125243-3 gnd Mikroorganismus (DE-588)4039226-0 gnd Grundwasser (DE-588)4022369-3 gnd Mikrobiologie (DE-588)4316357-9 gnd Geomikrobiologie (DE-588)4156734-1 gnd |
subject_GND | (DE-588)4225478-4 (DE-588)4232790-8 (DE-588)4125243-3 (DE-588)4039226-0 (DE-588)4022369-3 (DE-588)4316357-9 (DE-588)4156734-1 |
title | Practical manual of groundwater microbiology |
title_auth | Practical manual of groundwater microbiology |
title_exact_search | Practical manual of groundwater microbiology |
title_full | Practical manual of groundwater microbiology D. Roy Cullimore |
title_fullStr | Practical manual of groundwater microbiology D. Roy Cullimore |
title_full_unstemmed | Practical manual of groundwater microbiology D. Roy Cullimore |
title_short | Practical manual of groundwater microbiology |
title_sort | practical manual of groundwater microbiology |
topic | Groundwater / Microbiology / Handbooks, manuals, etc Hydrogeochemie (DE-588)4225478-4 gnd Biofilm (DE-588)4232790-8 gnd Biogeochemie (DE-588)4125243-3 gnd Mikroorganismus (DE-588)4039226-0 gnd Grundwasser (DE-588)4022369-3 gnd Mikrobiologie (DE-588)4316357-9 gnd Geomikrobiologie (DE-588)4156734-1 gnd |
topic_facet | Groundwater / Microbiology / Handbooks, manuals, etc Hydrogeochemie Biofilm Biogeochemie Mikroorganismus Grundwasser Mikrobiologie Geomikrobiologie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018969231&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT cullimoreroy practicalmanualofgroundwatermicrobiology |