Environmental engineering: basic principles
Gespeichert in:
Weitere Verfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin ; Boston
De Gruyter
[2018]
|
Schriftenreihe: | De Gruyter Graduate
|
Schlagworte: | |
Online-Zugang: | http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110468014&searchTitles=true Inhaltsverzeichnis |
Beschreibung: | XVII, 392 Seiten Illustrationen, Diagramme, Karten (teilweise farbig) |
ISBN: | 9783110468014 3110468018 |
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264 | 1 | |a Berlin ; Boston |b De Gruyter |c [2018] | |
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Datensatz im Suchindex
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adam_text | CONTENTS
PREFACE* V
LIST OF CONTRIBUTING AUTHORS * XV
ANITA §ALID AND BRUNO ZELID
1 INTRODUCTION TO ENVIRONMENTAL ENGINEERING * 1
1.1 A NEW ENGINEERING FIELD? * 1
1.2 NEW ERA - TODAYS ENVIRONMENTAL ENGINEERING * 2
1.3 ENVIRONMENTAL ISSUES * 5
1.3.1 AIR QUALITY - WHY IT IS SUCH A PROBLEM? * 8
1.3.2 SOIL QUALITY - WHAT PROBLEMS EMERGE FROM SOIL POLLUTION?
1.3.3 WATER QUALITY - ARE WATER WARS OUR FUTURE? * 11
1.4 WHAT IS THE FUTURE OF ENVIRONMENTAL ENGINEERING? * 13
1.5 CONCLUSION * 13
REFERENCES * 13
IVANDICA TERNJEJ AND ZLATKO MIHALJEVIC
2 ECOLOGY * 17
2.1 INTRODUCTION * 17
2.2 CONDITIONS FOR LIFE * 18
2.2.1 ABIOTIC FACTORS * 19
2.2.2 BIOTIC RELATIONSHIPS * 20
2.2.3 COMMUNITY * 27
2.2.4 ECOSYSTEM * 29
2.2.5 SUCCESSION
-----
35
2.2.6 BIOMES
-----
37
2.2.7 GLOBAL CHANGES * 37
2.2.8 APPLIED ECOLOGY
-----
39
REFERENCES * 41
STUDY QUESTIONS * 43
TOMISLAV BOLANCA, SIME UKID AND MIRJANA NOVAK STANKOV
3 ENVIRONMENTAL CHEMISTRY * 47
3.1 INTRODUCTION * 47
3.2 ELECTROLYTES AND NON-ELECTROLYTES * 47
3.3 CONCENTRATION AND ACTIVITY * 48
3.4 IONIZATION OF WATER * 49
3.5 STRONG AND WEAK ACIDS * 51
3.6 STRONG AND WEAK BASES * 55
3.7 HYDROLYSIS OF SALTS * 58
3.8 BUFFERS * 63
3.9 REACTIONS OF COMPLEXATION * 66
3.10 REDOX REACTIONS * 68
3.11 SOLUBILITY OF MINERALS * 73
3.11.1 NATURE OF SOLVENT AND SOLUTE * 74
3.11.2 TEMPERATURE EFFECT * 75
3.11.3 COMMON-ION EFFECT * 75
3.11.4 EFFECT OF COMPLEX FORMATION * 76
3.11.5 ELECTROLYTE EFFECT * 77
3.11.6 EFFECT OF PH OF THE SOLUTION * 78
3.12 SOLUBILITY OF GASES * 83
REFERENCES * 83
FELICITA BRISKI AND MARIJA VUKOVIC DOMANOVAC
4 ENVIRONMENTAL MICROBIOLOGY
* 85
4.1 EVOLUTION OF MICROORGANISMS * 85
4.2 THE MICROBIAL WORLD: CLASSIFICATION, METABOLISM AND GROWTH *
4.3 MICROBIAL DIVERSITY IN THE ENVIRONMENT * 97
4.4 EUTROPHICATION PROCESS * 105
4.5 MICROORGANISMS IN BIODEGRADATION AND BIOREMEDIATION * 106
4.6 BIODEGRADATION OF ORGANIC POLLUTANTS * 109
4.7 PRINCIPLES OF BIOREMEDIATION * 113
4.7.1 WHAT IS BIOREMEDIATION? * 113
4.7.2 SOME GROUPS OF MICROBES * 115
4.8 COMPOSTING * 116
4.8.1 WHAT IS COMPOSTING? COMPOSTING IS NATURE*S WAY OF RECYCLING *
REFERENCES * 118
A APPENDIX * 120
ZORAN NAKID, MARTA MILEUSNID, KRESIMIR PAVLID AND ZORAN KOVAD
5 ENVIRONMENTAL GEOLOGY AND HYDROLOGY
* 121
5.1 FLOODS AS NATURAL HAZARD * 122
5.1.1 HYDROLOGICAL CYCLE * 123
5.1.2 EXTREME EVENTS IN HYDROLOGY * 128
5.2 GROUNDWATER AS GEOLOGICAL RESOURCE * 131
5.2.1 GEOLOGICAL OCCURRENCE OF GROUNDWATER * 132
5.2.2 WATER FLOW IN UNSATURATED AND SATURATED ZONE * 133
5.2.3 MASS TRANSPORT IN POROUS MEDIUM * 137
5.2.4 MODELLING OF WATER FLOW AND SOLUTE TRANSPORT IN POROUS
MEDIUM * 140
5.2.5 GROUNDWATER QUALITY AND POLLUTION * 143
5.3 IMPACT OF MINING INDUSTRY ON ENVIRONMENT AND HUMAN HEALTH * 145
5.3.1 MINEWASTE * 146
5.3.2 IMPACT ON THE ENVIRONMENT * 148
5.3.3 IMPACT ON HUMAN HEALTH * 151
5.4 HIGHLIGHTS
------
154
REFERENCES * 155
QUESTIONS * 158
ALEKSANDRA SANDER, JASNA PRLIC KARDUM, GORDANA MATIJA§IC AND KRUNOSLAV
LILEK
6 TRANSPORT PHENOMENA IN ENVIRONMENTAL ENGINEERING * 159
6.1 CONSERVATION LAWS * 160
6.1.1 MACROSCOPIC MASS BALANCE * 160
6.1.2 MACROSCOPIC ENERGY BALANCE * 161
6.1.3 MACROSCOPIC MOMENTUM BALANCE * 162
6.2 MOTION OF PARTICLES IN FLUID * 163
6.3 FLOW THROUGH POROUS MEDIA * 167
6.4 HEAT TRANSFER * 174
6.4.1 HEAT CONDUCTIVITY * 174
6.4.2 HEAT TRANSFER BY CONDUCTION * 175
6.4.3 HEAT TRANSFER BY CONVECTION * 176
6.4.4 THERMAL RADIATION * 178
6.5 MASS TRANSFER * 180
6.5.1 MOLECULAR DIFFUSION * 181
6.5.2 COEFFICIENT OF MASS DIFFUSLVITY * 181
6.5.3 STEADY-STATE MOLECULAR DIFFUSION IN BINARY SYSTEMS * 182
6.5.4 EQUIMOLAR COUNTER DIFFUSION * 183
6.5.5 DIFFUSION OF COMPONENT A THROUGH STAGNANT COMPONENT B * 183
6.5.6 TRANSIENT DIFFUSION * 183
6.5.7 CONVECTIVE MASS TRANSFER * 185
6.5.8 INTERPHASE MASS TRANSFER * 185
REFERENCES * 191
EXAMPLES FOR PRACTICE * 191
KAROLINA MADUNA AND VESNA TOMASID
7 AIR POLLUTION ENGINEERING * 195
7.1 INTRODUCTION * 195
7.1.1 THE COMPLEXITIES OF THE AIR POLLUTION PROTECTION * 195
7.1.2 BASIC DEFINITIONS AND CLASSIFICATIONS * 199
7.2 TRANSPORT AND TRANSFORMATION OF AIR POLLUTANTS IN THE
ATMOSPHERE * 207
7.2.1 PRIMARY AND SECONDARY AIR POLLUTANTS * 208
7.2.2 ACID RAIN * 214
7.2.3 GREENHOUSE EFFECT * 214
7.2.4 GLOBAL CLIMATE CHANGE
VS
GLOBAL WARMING * 215
7.3 AIR POLLUTION CONTROL
-----
215
7.3.1 SELECTION OF THE AIR POLLUTION CONTROL APPROACH AND CONTROL
TECHNIQUE * 215
7.3.2 APPROPRIATE USE OF UNITS AND SOME BASICS OF AIR POLLUTION
CONTROL * 219
7.3.3 CONTROL OF PARTICULATE AIR POLLUTION * 222
7.3.4 CONTROL OF GASEOUS AND VAPOR POLLUTANTS * 233
REFERENCES * 238
QUESTIONS AND EXERCISES TO GET YOU THINKING * 240
DANIJELA ASPERGER, DAVOR DOLAR, KRESIMIR KOSUTIC, HRVOJE KU§IC, ANA LON
FA RI 6
BOZIC AND MARIJA VUKOVIC DOMANOVAC
8 WATER AND WASTEWATER TREATMENT ENGINEERING
* 241
8.1 WATER AND WASTEWATER CHARACTERIZATION AND ANALYSIS * 241
8.1.1 BIOLOGICAL CHARACTERISTICS * 244
8.1.2 PHYSICAL CHARACTERISTICS * 244
8.1.3 CHEMICAL CHARACTERISTICS * 245
8.2 WATER AND WASTEWATER TREATMENT BY MEMBRANE PROCESSES * 249
8.3 BIOLOGICAL WASTEWATER TREATMENT * 256
8.3.1 ACTIVATED SLUDGE PROCESS * 258
8.3.2 ENVIRONMENTAL FACTORS * 259
8.3.3 MEMBRANE BIOREACTOR * 260
8.3.4 BIOLOGY OF ACTIVATED SLUDGE * 260
8.3.5 THE MONOD EQUATION * 262
8.4 ADVANCED OXIDATION PROCESSES * 263
8.4.1 CHEMICAL AOPS * 264
8.4.2 PHOTO-ASSISTED AOPS * 268
8.4.3 REACTIONS AND KINETICS OF HYDROXYL RADICALS * 271
REFERENCES * 273
DISCUSSION, QUESTIONS AND EXERCISES * 275
IVICA KISIC, 2ELJKA ZGORELEC AND ALEKSANDRA PERCIN
9 SOIL TREATMENT ENGINEERING
* 277
9.1 INTRODUCTION * 277
9.2 BASICS OF SOIL SCIENCE * 278
9.3 SOIL FORMATION * 280
9.3.1 FACTORS AND PROCESSES OF SOIL FORMATION * 280
9.3.2 BASIC SOIL CHARACTERISTICS * 281
9.3.3 ROLES OF SOIL * 294
9.3.4 POTENTIAL SOIL CONTAMINANTS * 297
9.3.5 REMEDIATION TECHNOLOGIES FOR CONTAMINATED SOILS * 300
9.3.6 TYPES, FORMS, TECHNIQUES AND TECHNOLOGIES OF REMEDIATION * 301
REFERENCES * 311
PRACTICAL TASKS * 313
STUDY QUESTIONS * 315
ANITA 5 ALID, ANA JURINJAK TUSEK AND BRUNO ZELID
10 MODELING OF ENVIRONMENTAL PROCESSES * 317
10.1 MODELS * 317
10.2 MATHEMATICAL MODELS AND MODELING * 319
10.3 BASIC RULES IN MATHEMATICAL MODELING * 323
10.4 BALANCE EQUATIONS - SOLVING MATHEMATICAL MODELS * 335
10.5 CONCLUSION * 347
IMPORTANT NOTIFICATION * 348
REFERENCES * 348
EXAMPLES FOR PRACTICE * 348
HRVOJE KU§IC AND ANA LONDARIC BOZID
11 RISK ASSESSMENT * 357
11.1 INTRODUCTION * 357
11.1.1 WHAT IS RISK? * 357
11.1.2 WHAT IS HAZARD? * 358
11.2 LOOKING FOR ANSWERS * 359
11.3 CONCEPTUAL MODELS * 360
11.4 RISK ASSESSMENT FRAMEWORK * 362
11.5 ENVIRONMENTAL RISK ASSESSMENT * 364
11.6 RISK ASSESSMENT METHODOLOGY * 366
11.7 RISK ASSESSMENT FOR CHEMICALS * 368
11.8 DOSE-RESPONSE RELATIONSHIP * 372
11.9 RISK ASSESSMENT TECHNIQUES * 375
11.9.1 RISK MATRICES * 375
11.9.2 LOGIC TREES * 377
11.9.3 EVENT TREES * 379
11.10 CONCLUSION MARKS * 380
REFERENCES * 380
STUDY QUESTIONS AND TASKS * 382
INDEX * 385
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spelling | Environmental engineering basic principles edited by Vesna Tomašić and Bruno Zelić Berlin ; Boston De Gruyter [2018] XVII, 392 Seiten Illustrationen, Diagramme, Karten (teilweise farbig) txt rdacontent n rdamedia nc rdacarrier De Gruyter Graduate Umwelttechnik (DE-588)4061650-2 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Umwelttechnik (DE-588)4061650-2 s DE-604 Tomašić, Vesna edt Zelić, Bruno edt Erscheint auch als Online-Ausgabe, PDF 978-3-11-046803-8 Erscheint auch als Online-Ausgabe, EPUB 978-3-11-046807-6 X:MVB http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110468014&searchTitles=true DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030518480&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Environmental engineering basic principles Umwelttechnik (DE-588)4061650-2 gnd |
subject_GND | (DE-588)4061650-2 (DE-588)4143413-4 |
title | Environmental engineering basic principles |
title_auth | Environmental engineering basic principles |
title_exact_search | Environmental engineering basic principles |
title_full | Environmental engineering basic principles edited by Vesna Tomašić and Bruno Zelić |
title_fullStr | Environmental engineering basic principles edited by Vesna Tomašić and Bruno Zelić |
title_full_unstemmed | Environmental engineering basic principles edited by Vesna Tomašić and Bruno Zelić |
title_short | Environmental engineering |
title_sort | environmental engineering basic principles |
title_sub | basic principles |
topic | Umwelttechnik (DE-588)4061650-2 gnd |
topic_facet | Umwelttechnik Aufsatzsammlung |
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