Design of remediation systems:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton [u.a.]
CRC, Lewis
1997
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 263 S. Ill., graph. Darst. |
ISBN: | 1566702178 |
Internformat
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100 | 1 | |a Wong, Jimmy H. C. |e Verfasser |4 aut | |
245 | 1 | 0 | |a Design of remediation systems |c Jimmy H. C. Wong ; Chin Hong Lim ; Greg L. Nolen |
264 | 1 | |a Boca Raton [u.a.] |b CRC, Lewis |c 1997 | |
300 | |a 263 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
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650 | 4 | |a Contaminación de suelos | |
650 | 4 | |a Contaminación del agua por petróleo | |
650 | 7 | |a Poluição da água (remediação) |2 larpcal | |
650 | 7 | |a Poluição do solo (remediação) |2 larpcal | |
650 | 7 | |a Química ambiental |2 larpcal | |
650 | 4 | |a Hazardous waste site remediation | |
650 | 4 | |a Oil pollution of soils | |
650 | 4 | |a Oil pollution of water | |
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700 | 1 | |a Lim, Chin Hong |e Verfasser |4 aut | |
700 | 1 | |a Nolen, Greg L. |e Verfasser |4 aut | |
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Datensatz im Suchindex
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adam_text | DESIGN OF REMEDIATION SYSTEMS JIMMY H.C. WONG CHIN HONG LIM GREG L.
NOLEN LEWIS PUBLISHERS BOCA RATON NEW YORK CONTENTS CHAPTER 1
INTRODUCTION 1 CHAPTER 2 CHEMISTRY OF HYDROCARBONS 3 2.1 INTRODUCTION 3
2.2 BASIC CHEMISTRY OF HYDROCARBONS AND FUNCTIONAL GROUPS 3 2.2.1
DEFINITIONS 4 2.2.2 ALIPHATIC HYDROCARBONS 4 2.2.2.1 ALKANES 4 2.2.2.2
ALKENES 6 2.2.2.3 ALKYNES 7 2.2.3 AROMATIC HYDROCARBONS 7 2.2.3.1
ALKYLBENZENES 8 2.2.3.2 POLYCYCLIC AROMATIC HYDROCARBONS 9 2.2.4
FUNCTIONAL GROUPS 10 2.2.5 NITROGEN- AND SULFUR-CONTAINING HYDROCARBONS
12 2.2.6 DEGRADATION OF HYDROCARBONS 13 2.2.6.1 SUBSTITUTION 13 2.2.6.2
DEHYDROGENATION 13 2.2.6.3 OXIDATION 14 2.2.6.4 REDUCTION 14 2.3 CLASSES
OF CONTAMINANTS 14 2.4 HYDROCARBON PRODUCTS FROM PETROLEUM 15 2.5
LABORATORY ANALYSES 18 CHAPTER 3 BASIC GEOLOGY AND HYDROGEOLOGY 23 3.1
INTRODUCTION . ., 23 3.2 REVIEW OF GEOLOGY AND SOIL TYPES 23 3.2.1 SOIL
FORMATION AND THE NATURE OF SOIL CONSTITUENTS 23 3.2.2 SOIL TEXTURE 24
3.2.3 GRAIN SIZE AND GRAIN SIZE DISTRIBUTION 24 3.2.4 CLASSIFICATION OF
SOILS 28 3.3 HYDROCARBON PHASES IN SOILS 33 3.4 REVIEW OF HYDROGEOLOGY
33 3.4.1 CLASSIFICATION OF SUBSURFACE WATER 33 3.4.2 AQUIFERS 37 3.4.2.1
AQUIFER 37 3.4.2.2 AQUITARD 37 3.4.2.3 UNCONFINED AQUIFER , 38 3.4.2.4
CONFINED AQUIFER 38 3.4.2.5 PERCHED AQUIFER 39 3.4.3 AQUIFER PROPERTIES
39 3.4.3.1 POROSITY 39 3.4.3.2 SPECIFIC YIELD 39 3.4.3.3 SPECIFIC
RETENTION 40 3.4.3.4 STORAGE COEFFICIENT 40 3.4.3.5 PERMEABILITY 41
3.4.3.6 HYDRAULIC CONDUCTIVITY 42 3.4.3.7 TRANSMISSIVITY 44 3.4.3.8
HOMOGENEITY AND HETEROGENEITY 44 3.5 FUNDAMENTAL PRINCIPLES OF
GROUNDWATER FLOW 44 3.5.1 GROUNDWATER FLOW VELOCITY*DARCY S LAW 44 3.5.2
FLOW BETWEEN AQUIFERS 46 3.6 CONTAMINANT FATE AND TRANSPORT 46 3.6.1
CONTAMINANT MIGRATION 46 3.6.2 VOLATILIZATION 47 3.6.3 ADSORPTION 47
3.6.4 CONTAMINANT PATHWAYS THROUGH THE VADOSE ZONE 49 3.6.5 CONTAMINANT
MOVEMENT WITHIN THE AQUIFER 49 3.6.6 EFFECTS OF AQUIFER STRATIGRAPHY ON
CONTAMINANT MOVEMENT 49 3.6.7 CONTAMINANT MOVEMENT BETWEEN AQUIFERS
THROUGH AQUITARDS 51 CHAPTER 4 DESIGN APPROACH 53 4.1 INTRODUCTION 53
4.2 TYPICAL DESIGN PROCESS 54 4.3 RISK-BASED CORRECTIVE ACTION 57
CHAPTER 5 DESIGN OF SOIL VAPOR EXTRACTION SYSTEMS 65 5.1 INTRODUCTION 65
5.2 SOIL VAPOR EXTRACTION CONCEPT 67 5.2.1 CONTAMINANT CHARACTERISTICS
68 5.2.1.1 VAPOR PRESSURE 68 5.2.1.2 WATER SOLUBILITY 68 5.2.1.3 HENRY S
LAW CONSTANT 69 5.2.1.4 MELTING POINT AND BOILING POINT 69 5.2.1.5
ORGANIC CARBON PARTITION COEFFICIENT 69 5.2.1.6 CONTAMINANT COMPOSITION
70 5.2.2 SOIL PROPERTIES 72 5.2.2.1 AIR PERMEABILITY 72 5.2.2.2 SOIL
TYPE 73 5.2.2.3 SOIL MOISTURE CONTENT 73 5.2.3 SITE CONDITIONS 73
5.2.3.1 LOCATION OF WATER TABLE 73 5.2.3.2 SUBSURFACE CONDUITS 74
5.2.3.3 SURFACE CAPS 74 5.2.4 DESIGN CONSIDERATIONS 74 5.2.4.1 RADIUS OF
INFLUENCE 75 5.2.4.2 BLOWER SIZE 75 5.2.4.3 EXTRACTION WELL LOCATIONS
AND SPACING 76 5.2.4.4 EXTRACTION WELL SCREENS 76 5.3 AIR SPARGING
CONCEPT 78 5.3.1 CONTAMINANT CHARACTERISTICS 79 5.3.2 SOIL PROPERTIES 79
5.3.2.1 PERMEABILITY 79 5.3.2.2 SOIL TYPES 79 5.3.3 SITE CONDITIONS 80
5.3.3.1 LOCATION OF WATER TABLE 80 5.3.3.2 CONFINING LAYERS 80 5.3.3.3
PRESENCE OF FREE-FLOATING PRODUCT 80 5.3.3.4 SUBSURFACE CONDUITS 81
5.3.4 DESIGN CONSIDERATIONS 81 5.3.4.1 RADIUS OF INFLUENCE 81 5.3.4.2
INJECTION PRESSURE AND BLOWER/COMPRESSOR SIZING 81 5.3.4.3 SPARGE WELL
LOCATIONS 82 5.3.4.4 SPARGE WELL SCREENS 82 5.4 PILOT TESTS 82 5.4.1 SVE
PILOT TEST 83 5.4.1.1 PURPOSE 83 5.4.1.2 SET-UP 84 5.4.1.3 EQUIPMENTS
AND MEASUREMENT INSTRUMENTS 84 5.4.1.4 DATA COLLECTION 87 5.4.1.5 DATA
EVALUATION 89 5.4.2 AIR SPARGE.PILOT TEST 95 5.4.2.1 PURPOSE 95 5.4.2.2
SET-UP 95 5.4.2.3 EQUIPMENT AND MEASUREMENT INSTRUMENTS 96 5.4.2.4 DATA
COLLECTION (GASOLINE-CONTAMINATED SITE) 96 5.4.2.5 DATA EVALUATION 97
5.4.3 COMBINED SVE AND AIR SPARGE PILOT TEST... 98 5.4.3.1 PURPOSE 98
5.4.3.2 SET-UP 98 5.4.3.3 EQUIPMENT AND MEASUREMENT INSTRUMENTS 101
5.4.3.4 DATA COLLECTION 101 5.5 DESIGN OF SVE/AS SYSTEMS 103 5.5.1
SYSTEM PLANNING 103 5.5.1.1 PREVIOUS FINDINGS AND CONCLUSIONS 103
5.5.1.2 DEFINE DESIGN OBJECTIVES 103 5.5.1.3 IDENTIFY DESIGN PARAMETERS
103 5.5.2 SYSTEM DESIGN 104 5.5.2.1 DETAILED FINAL DESIGN 104 5.5.2.2
COMPUTER MODELS 104 5.6 DETAILED DESIGN 107 5.6.1 PLACEMENT AND DESIGN
OF SVE OR SVE/AS WELLS 107 5.6.2 SVE BLOWER SIZE DETERMINATION 108 5.6.3
AS BLOWER/AIR COMPRESSOR SELECTION ILL 5.6.4 PIPING DESIGN ILL 5.6.4.1
SVE/AS PIPING ILL 5.6.4.2 NATURAL GAS PIPING 111 5.6.4.3 TRENCH BACKFILL
MATERIAL 112 5.6.5 VAPOR TREATMENT EQUIPMENT SELECTION 112 5.6.5.1
CARBON ADSORPTION 115 5.6.5.2 THERMAL OXIDATION 115 5.6.5.3 CATALYTIC
OXIDATION 123 5.6.5.4 INTERNAL COMBUSTION ENGINES 124 5.6.5.5 BIOFILTERS
124 5.7 DESIGN EXAMPLES 124 5.7.1 EXAMPLE 1 124 5.7.1.1 SCENARIO 125
5.7.1.2 PREVIOUS FINDINGS AND CONCLUSIONS 126 5.7.1.3 SITE CONDITIONS
126 5.7.1.4 SVE/AS PILOT TEST RESULTS 126 5.7.1.5 DESIGN OBJECTIVES 128
5.7.1.6 DESIGN PARAMETERS 128 5.7.1.7 CONCEPTUAL DESIGN 128 5.7.2
EXAMPLE 2 129 5.7.2.1 SCENARIO 129 5.7.2.2 SITE CHARACTERIZATION 129
5.7.2.3 SVE PILOT TEST RESULTS 131 5.7.2.4 DESIGN OBJECTIVE 133 5.7.2.5
DESIGN PARAMETERS 133 5.7.2.6 CONCEPTUAL DESIGN 133 CHAPTER 6 DESIGN OF
BIOREMEDIATION SYSTEMS 135 6.1 INTRODUCTION 135 6.2 MICROBIOLOGY OF
BIOREMEDIATION 137 6.2.1 BACTERIA 137 6.2.2 BACTERIA REQUIREMENTS 138
6.2.3 METABOLISM 139 6.2.4 CLASSIFICATION OF BACTERIA 141 6.3 FACTORS
AND CONDITIONS AFFECTING BIOREMEDIATION 141 6.3.1 CONTAMINANT
CHARACTERISTICS 141 6.3.2 INDIGENOUS MICROORGANISMS 144 6.3.3 NUTRIENTS
146 6.3.3.1 MACRONUTRIENTS 146 6.3.3.2 MICRONUTRIENTS 146 6.3.4 ELECTRON
ACCEPTORS 146 6.3.5 SUBSURFACE CHARACTERISTICS 150 6.3.5.1 SOIL TYPE 150
6.3.5.2 SOIL MOISTURE CONTENT 151 6.3.5.3 GROUNDWATER CHEMISTRY 151
6.3.6 DESIGN CONSIDERATIONS 153 6.3.6.1 PROVIDING ELECTRON ACCEPTORS 158
6.3.6.2 PROVIDING NUTRIENTS 159 6.3.6.3 PROVIDING MICROORGANISMS 159 6.4
FEASIBILITY STUDIES 159 6.4.1 DATA COLLECTION 161 6.4.2 DATA EVALUATION
163 6.5 SYSTEM DESIGN 165 6.5.1 PROVISION OF MICROORGANISM REQUIREMENTS
166 6.5.2 DESIGN OF DELIVERY SYSTEMS 168 6.5.3 DESIGN OF A BIOVENTING
SYSTEM 168 6.5.4 DESIGN OF AIR SPARGE (BIOSPARGING) WELLS 169 6.5.5
DESIGN OF GROUNDWATER REINJECTION WELLS 169 6.5.6 DESIGN OF INFILTRATION
GALLERIES 169 6.5.7 DESIGN OF CONTAINMENT SYSTEMS 171 6.5.8 ABOVE-GROUND
UNITS 174 6.6 INTRINSIC BIOREMEDIATION 174 6.6.1 CONCEPT OF INTRINSIC
BIOREMEDIATION 175 6.6.1.1 DOCUMENT LOSS OF CONTAMINANTS 175 6.6.1.2
DOCUMENT LOSS OF ELECTRON ACCEPTORS 178 6.6.1.3 DOCUMENT INCREASING
BY-PRODUCTS OF METABOLISM.... 179 6.6.2 WILL INTRINSIC BIOREMEDIATION BE
SUFFICIENT? 179 6.6.3 IMPLEMENTING INTRINSIC BIOREMEDIATION: PROTOCOLS
AND PROCEDURES 182 6.6.3.1 PRELIMINARY ASSESSMENT 182 6.6.3.2 ADDITIONAL
SITE CHARACTERIZATION 183 6.6.4 INTRINSIC BIOREMEDIATION MODELING 184
6.6.5 EXPOSURE ASSESSMENT 184 6.6.6 LONG-TERM MONITORING 184 6.7 DESIGN
EXAMPLES 185 6.7.1 EXAMPLE 1 185 6.7.2 SCENARIO 185 6.7.3 PREVIOUS
FINDINGS AND CONCLUSIONS 185 6.7.4 DESIGN OBJECTIVES 187 6.7.5
CONCEPTUAL DESIGN 187 CHAPTER 7 DESIGN OF PUMP AND TREAT SYSTEMS 191 7.1
INTRODUCTION 191 7.2 SITE CHARACTERIZATION AND DATA REQUIREMENTS 192
7.2.1 AQUIFER CHARACTERIZATION 193 7.2.1.1 HYDRAULIC CONDUCTIVITY AND
TRANSMISSIVITY 193 7.2.1.2 AQUIFER THICKNESS AND PLUME DEPTH 193 7.2.1.3
GROUNDWATER FLOW DIRECTION AND HYDRAULIC GRADIENT 193 7.2.1.4 WATER
TABLE FLUCTUATIONS 194 7.2.2 GEOLOGICAL CHARACTERIZATION 194 7.2.3
EXTENT OF CONTAMINATION 195 7.2.4 GROUNDWATER ANALYSES 195 7.2.5 OTHER
SITE-SPECIFIC CHARACTERISTICS 197 7.3 AQUIFER TESTING 198 7.3.1 PUMP
TESTS 199 7.3.2 BAIL DOWN AND SLUG TESTS 200 7.3.3 HYDRAULIC
CONDUCTIVITY ESTIMATES BASED ON GRAIN SIZE ANALYSIS 200 7.4 SYSTEM
DESIGN.... 201 7.4.1 CAPTURE ZONE 202 7.4.2 GROUNDWATER MODELING 205
7.4.3 GROUNDWATER RECOVERY WELL DESIGN AND CONSTRUCTION 206 7.4.3.1 WELL
DIAMETER 206 7.4.3.2 WELL DEPTH AND WELL SCREEN LENGTH 207 7.4.3.3 WELL
CASING AND SCREEN MATERIALS 207 7.4.3.4 WELL SCREEN TYPE 208 7.4.3.5
JOINT TYPES 208 7.4.3.6 FILTER PACK 208 7.4.3.7 WELL SCREEN SLOT SIZE
209 7.4.3.8 GROUTING MATERIALS 209 7.4.3.9 DRILLING METHODS 209 HOLLOW
STEM AUGER METHOD 210 SOLID STEM AUGER METHOD 210 MUD ROTARY METHOD 210
AIR ROTARY METHOD 210 CABLE TOOL METHOD 211 7:4.3.10 WELL DEVELOPMENT
211 7.4.4 TRENCH SYSTEM 211 7.4.5 HYDRAULICS AND PUMP SELECTION 212
7.4.5.1 GROUNDWATER RECOVERY PUMPS 212 CAPACITY 213 TOTAL DYNAMIC HEAD
213 NET POSITIVE SUCTION HEAD 213 SYSTEM HEAD CURVE 214 HORSEPOWER
CHARACTERISTICS 216 VALVES 217 DRIVES 217 COST OF PUMPING 217 7.4.5.2
FREE-FLOATING PRODUCT AND DNAPL PUMPING SYSTEMS 217 7.4.5.3 TOTAL FLUIDS
PUMPS 218 7.4.7 AIR STRIPPING TOWER DESIGN 219 7.4.7.1 DESIGN EQUATIONS
220 7.4.7.2 COLUMN COMPONENTS 224 7.4.8 ACTIVATED CARBON UNIT DESIGN 225
7.4.8.1 ACTIVATED CARBON 225 7.4.8.2 MASS TRANSFER ZONE (MTZ) 226
7.4.8.3 FACTORS AFFECTING PERFORMANCE 228 WATER QUALITY 228 SHORT
CIRCUITING 230 AIR BINDING 230 7.4.8.4 CARBON ADSORBER PROCESS DESIGN
230 ADSORBER SELECTION 230 7.5 DESIGN EXAMPLE 235 7.5.1 EXAMPLE 1 235
7.5.1.1 BACKGROUND 235 7.5.1.2 PREVIOUS FINDINGS AND CONCLUSIONS 235
7.5.1.3 CONCEPTUAL DESIGN 240 CHAPTER 8 SUMMARY OF OTHER REMEDIATION
SYSTEMS 247 8.1 INTRODUCTION 247 8.2 IN SITU METHODS... 247 8.2.1
SOLIDIFICATION/STABILIZATION 247 8.2.2 IN SITU VITRIFICATION 248 8.2.3
CONTAINMENT CUTOFF WALLS 248 8.3.4 SOIL FLUSHING 249 8.2.5
PHYTOREMEDIATION 250 8.3 NON-IN SITU METHODS 250 8.3.1 EXCAVATION AND
DISPOSAL 251 8.3.2 THERMAL TREATMENT TECHNOLOGIES (INCINERATION) 251
8.3.3 ASPHALT INCORPORATION 252 8.3.4 SOIL WASHING 252 REFERENCES 253
INDEX 255
|
any_adam_object | 1 |
author | Wong, Jimmy H. C. Lim, Chin Hong Nolen, Greg L. |
author_facet | Wong, Jimmy H. C. Lim, Chin Hong Nolen, Greg L. |
author_role | aut aut aut |
author_sort | Wong, Jimmy H. C. |
author_variant | j h c w jhc jhcw c h l ch chl g l n gl gln |
building | Verbundindex |
bvnumber | BV011956972 |
callnumber-first | T - Technology |
callnumber-label | TD879 |
callnumber-raw | TD879.P4 |
callnumber-search | TD879.P4 |
callnumber-sort | TD 3879 P4 |
callnumber-subject | TD - Environmental Technology |
classification_rvk | WK 3800 |
ctrlnum | (OCoLC)35599851 (DE-599)BVBBV011956972 |
dewey-full | 628.5/2 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 628 - Sanitary engineering |
dewey-raw | 628.5/2 |
dewey-search | 628.5/2 |
dewey-sort | 3628.5 12 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Biologie Bauingenieurwesen |
format | Book |
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id | DE-604.BV011956972 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:19:09Z |
institution | BVB |
isbn | 1566702178 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-008084768 |
oclc_num | 35599851 |
open_access_boolean | |
owner | DE-703 |
owner_facet | DE-703 |
physical | 263 S. Ill., graph. Darst. |
publishDate | 1997 |
publishDateSearch | 1997 |
publishDateSort | 1997 |
publisher | CRC, Lewis |
record_format | marc |
spelling | Wong, Jimmy H. C. Verfasser aut Design of remediation systems Jimmy H. C. Wong ; Chin Hong Lim ; Greg L. Nolen Boca Raton [u.a.] CRC, Lewis 1997 263 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Contaminación de suelos Contaminación del agua por petróleo Poluição da água (remediação) larpcal Poluição do solo (remediação) larpcal Química ambiental larpcal Hazardous waste site remediation Oil pollution of soils Oil pollution of water Erdöl (DE-588)4015179-7 gnd rswk-swf Bodensanierung (DE-588)4137352-2 gnd rswk-swf Umweltverschmutzung (DE-588)4186812-2 gnd rswk-swf Gewässersanierung (DE-588)4201602-2 gnd rswk-swf Umweltverschmutzung (DE-588)4186812-2 s Erdöl (DE-588)4015179-7 s Gewässersanierung (DE-588)4201602-2 s DE-604 Bodensanierung (DE-588)4137352-2 s Lim, Chin Hong Verfasser aut Nolen, Greg L. Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008084768&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Wong, Jimmy H. C. Lim, Chin Hong Nolen, Greg L. Design of remediation systems Contaminación de suelos Contaminación del agua por petróleo Poluição da água (remediação) larpcal Poluição do solo (remediação) larpcal Química ambiental larpcal Hazardous waste site remediation Oil pollution of soils Oil pollution of water Erdöl (DE-588)4015179-7 gnd Bodensanierung (DE-588)4137352-2 gnd Umweltverschmutzung (DE-588)4186812-2 gnd Gewässersanierung (DE-588)4201602-2 gnd |
subject_GND | (DE-588)4015179-7 (DE-588)4137352-2 (DE-588)4186812-2 (DE-588)4201602-2 |
title | Design of remediation systems |
title_auth | Design of remediation systems |
title_exact_search | Design of remediation systems |
title_full | Design of remediation systems Jimmy H. C. Wong ; Chin Hong Lim ; Greg L. Nolen |
title_fullStr | Design of remediation systems Jimmy H. C. Wong ; Chin Hong Lim ; Greg L. Nolen |
title_full_unstemmed | Design of remediation systems Jimmy H. C. Wong ; Chin Hong Lim ; Greg L. Nolen |
title_short | Design of remediation systems |
title_sort | design of remediation systems |
topic | Contaminación de suelos Contaminación del agua por petróleo Poluição da água (remediação) larpcal Poluição do solo (remediação) larpcal Química ambiental larpcal Hazardous waste site remediation Oil pollution of soils Oil pollution of water Erdöl (DE-588)4015179-7 gnd Bodensanierung (DE-588)4137352-2 gnd Umweltverschmutzung (DE-588)4186812-2 gnd Gewässersanierung (DE-588)4201602-2 gnd |
topic_facet | Contaminación de suelos Contaminación del agua por petróleo Poluição da água (remediação) Poluição do solo (remediação) Química ambiental Hazardous waste site remediation Oil pollution of soils Oil pollution of water Erdöl Bodensanierung Umweltverschmutzung Gewässersanierung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008084768&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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