Groundwater geochemistry: a practical guide to modeling of natural and contaminated aquatic systems
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Format: | Medienkombination Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2008
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Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Hier auch später erschienene, unveränderte Nachdrucke Softcover reprint of the hardcover 2nd edition 2008 ohne CD-ROM |
Beschreibung: | XI, 230 S. Ill., graph. Darst. 1 CD-ROM |
ISBN: | 9783540746676 3540746676 9783662517505 |
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Datensatz im Suchindex
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adam_text | BRODER J. MERKEL * BRITTA PLANER-FRIEDRICH AUTHORS GROUNDWATER
GEOCHEMISTRY A PRACTICAL GUIDE TO MODELING OF NATURAL AND CONTAMINATED
AQUATIC SYSTEMS EDITED BY DARRELL KIRK NORDSTROM 2ND EDITION WITH CD-ROM
4Y SPRINGER TABLE OF CONTENTS 1 THEORETICAL BACKGROUND 1 1.1 EQUILIBRIUM
REACTIONS 1 1.1.1 INTRODUCTION 1 1.1.2 THERMODYNAMIC FUNDAMENTALS 5
1.1.2.1 MASS-ACTION LAW 5 1.1.2.2 GIBBS FREE ENERGY 7 1.1.2.3 GIBBS
PHASE RULE 8 1.1.2.4 ACTIVITY 8 1.1.2.5 IONIC STRENGTH 10 1.1.2.6
CALCULATION OF ACTIVITY COEFFICIENT 10 1.1.2.6.1. THEORY OF
ION-ASSOCIATION 10 1.1.2.6.2. THEORY OF ION-INTERACTION 13 1.1.2.7
COMPARISON ION-ASSOCIATION VERSUS ION-INTERACTION THEORY 14 1.1.3
INTERACTIONS AT THE LIQUID-GASEOUS PHASE BOUNDARY 17 1.1.3.1 HENRY LAW
17 1.1.4 INTERACTIONS AT THE LIQUID-SOLID PHASE BOUNDARY 19 1.1.4.1
DISSOLUTION AND PRECIPITATION 19 1.1.4.1.1. SOLUBILITY-PRODUCT 19
1.1.4.1.2. SATURATION INDEX 22 1.1.4.1.3. LIMITING MINERAL PHASES 22
1.1.4.2 SORPTION 25 1.1.4.2.1. HYDROPHOBIC/HYDROPHILIC SUBSTANCES 25
1.1.4.2.2. ION EXCHANGE 25 1.1.4.2.3. MATHEMATICAL DESCRIPTION OF THE
SORPTION 30 1.1.5 INTERACTIONS IN THE LIQUID PHASE 35 1.1.5.1
COMPLEXATION 35 1.1.5.2 REDOX PROCESSES 37 1.1.5.2.1. MEASUREMENT OF THE
REDOX POTENTIAL 37 1.1.5.2.2. CALCULATION OF THE REDOX POTENTIAL 38
1.1.5.2.3. PRESENTATION IN PREDOMINANCE DIAGRAMS 43 1.1.5.2.4. REDOX
BUFFER 47 1.1.5.2.5. SIGNIFICANCE OF REDOX REACTIONS 47 1.2 KINETICS 50
1.2.1 KINETICS OF VARIOUS CHEMICAL PROCESSES 50 1.2.1.1 HALF-LIFE 50
1.2.1.2 KINETICS OF MINERAL DISSOLUTION 51 1.2.2 CALCULATION OF THE
REACTION RATE 52 1.2.2.1 SUBSEQUENT REACTIONS 53 VIII TABLE OF CONTENTS
1.2.2.2 PARALLEL REACTIONS 54 1.2.3 CONTROLLING FACTORS ON THE REACTION
RATE 54 1.2.4 EMPIRICAL APPROACHES FOR KINETICALLY CONTROLLED REACTIONS
55 1.3 REACTIVE MASS TRANSPORT 58 1.3.1 INTRODUCTION 58 1.3.2 FLOW
MODELS 58 1.3.3 TRANSPORT MODELS 59 1.3.3.1 DEFINITION 59 1.3.3.2
IDEALIZED TRANSPORT CONDITIONS 61 1.3.3.3 REAL TRANSPORT CONDITIONS 61
1.3.3.3.1. EXCHANGE WITHIN DOUBLE-POROSITY AQUIFERS 62 1.3.3.4 NUMERICAL
METHODS OF TRANSPORT MODELING 63 1.3.3.4.1.
FINITE-DIFFERENCE/FINITE-ELEMENT METHOD 65 1.3.3.4.2. COUPLED METHODS 66
2 HYDROGEOCHEMICAL MODELING PROGRAMS 69 2.1 GENERAL 69 2.1.1 GEOCHEMICAL
ALGORITHMS 69 2.1.2 PROGRAMS BASED ON MINIMIZING FREE ENERGY 71 2.1.3
PROGRAMS BASED ON EQUILIBRIUM CONSTANTS 72 2.1.3.1 PHREEQC 72 2.1.3.2 EQ
3/6 74 2.1.4 THERMODYNAMIC DATABASES 76 2.1.4.1 GENERAL 76 2.1.4.2
STRUCTURE OF THERMODYNAMIC DATABASES 78 2.1.5 PROBLEMS AND SOURCES OF
ERROR IN GEOCHEMICAL MODELING 81 2.2 USE OF PHREEQC 85 2.2.1 THE
STRUCTURE OF PHREEQC AND ITS GRAPHICAL USER INTERFACES 85 2.2.1.1 INPUT
88 2.2.1.2 DATABASE 95 2.2.1.3 OUTPUT 96 2.2.1.4 GRID 97 2.2.1.5 CHART
97 2.2.2 INTRODUCTORY EXAMPLES FOR PHREEQC MODELING 97 2.2.2.1
EQUILIBRIUM REACTIONS 97 2.2.2.1.1. EXAMPLE 1 A STANDARD OUTPUT-SEAWATER
ANALYSIS 98 2.2.2.1.2. EXAMPLE LB EQUILIBRIUM-SOLUTION OF GYPSUM 100
2.2.2.1.3. EXAMPLE LC EQUILIBRIUM-SOLUTION OF CALCITE WITH CO 2 .. 101
2.2.2.1.4. EXAMPLE ID: MODELING UNCERTAINTIES - LJUNGSKILE... 103
2.2.2.2 INTRODUCTORY EXAMPLE FOR SORPTION 107 2.2.2.3 INTRODUCTORY
EXAMPLES FOR KINETICS 114 2.2.2.3.1. DEFINING REACTION RATES 115
2.2.2.3.2. BASIC WITHIN PHREEQC 117 2.2.2.4 INTRODUCTORY EXAMPLE FOR
ISOTOPE FRACTIONATION 122 2.2.2.5 INTRODUCTORY EXAMPLES FOR REACTIVE
MASS TRANSPORT 126 TABLE OF CONTENTS IX 2.2.2.5.1. SIMPLE ID TRANSPORT:
COLUMN EXPERIMENT 126 2.2.2.5.2. ID TRANSPORT, DILUTION, AND SURFACE
COMPLEXATION IN AN ABANDONED URANIUM MINE 130 2.2.2.5.3. 3D TRANSPORT
WITH PHAST 134 3 EXERCISES 141 3.1 EQUILIBRIUM REACTIONS 143 3.1.1
GROUNDWATER - LITHOSPHERE : 143 3.1.1.1 STANDARD OUTPUT WELL ANALYSIS
143 3.1.1.2 EQUILIBRIUM REACTION - SOLUBILITY OF GYPSUM 144 3.1.1.3
DISEQUILIBRIUM REACTION - SOLUBILITY OF GYPSUM 144 3.1.1.4 TEMPERATURE
DEPENDENCY OF GYPSUM SOLUBILITY IN WELL WATER... 144 3.1.1.5 TEMPERATURE
DEPENDENCY OF GYPSUM SOLUBILITY IN PURE WATER...144 3.1.1.6 TEMPERATURE-
AND P(CO 2 )-DEPENDENT CALCITE SOLUBILITY 144 3.1.1.7 CALCITE
PRECIPITATION AND DOLOMITE DISSOLUTION 145 3.1.1.8 CALCITE SOLUBILITY IN
AN OPEN AND A CLOSED SYSTEM. 145 3.1.1.9 PYRITE WEATHERING 145 3.1.2
ATMOSPHERE-GROUNDWATER-LITHOSPHERE 146 3.1.2.1 PRECIPITATION UNDER THE
INFLUENCE OF SOILCO 2 146 3.1.2.2 BUFFERING SYSTEMS IN THE SOIL 147
3.1.2.3 MINERAL PRECIPITATES AT HOT SULFUR SPRINGS 147 3. 3. 3.1.3 3. 3.
3. .2.4 FORMATION OF STALACTITES INKARST CAVES 148 .2.5 EVAPORATION 149
GROUNDWATER 150 .3.1 THE PE-PH DIAGRAM FOR THE SYSTEM IRON 150 .3.2 THE
FE PE-PH DIAGRAM CONSIDERING CARBON AND SULFUR 152 .3.3 THE PH
DEPENDENCY OF URANIUM SPECIES 152 3.1.4 ORIGIN OF GROUNDWATER *. 153
3.1.4.1 PUMPING OF FOSSIL GROUNDWATER IN ARID REGIONS 155 3.1.4.2 SALT
WATER/FRESH WATER INTERFACE 156 3.1.5 ANTHROPOGENIC USE OF GROUNDWATER
157 3.1.5.1 SAMPLING: CA TITRATION WITH EDTA 157 3.1.5.2 CARBONIC ACID
AGGRESSIVENESS 157 3.1.5.3 WATER TREATMENT BY AERATION - WELL WATER 158
3.1.5.4 WATER TREATMENT BY AERATION* SULFUR SPRING 158 3.1.5.5 MIXING OF
WATERS . 159 3.1.6 REHABILITATION OF GROUNDWATER 159 3.1.6.1 REDUCTION
OF NITRATE WITH METHANOL 159 3.1.6.2 FE(0) BARRIERS 160 3.1.6.3 INCREASE
IN PH THROUGH A CALCITE BARRIER 160 3.2 REACTION KINETICS 160 3.2.1
PYRITE WEATHERING 160 3.2.2 QUARTZ-FELDSPAR-DISSOLUTION 161 3.2.3
DEGRADATION OF ORGANIC MATTER WITHIN THE AQUIFER ON REDUCTION OF
REDOX-SENSITIVE ELEMENTS (FE, AS, U, CU, MN, S) 162 X TABLE OF CONTENTS
3.2.4 DEGRADATION OF TRITIUM IN THE UNSATURATED ZONE... 163 3.3 REACTIVE
TRANSPORT 166 3.3.1 LYSIMETER 166 3.3.2 KARST SPRING DISCHARGE 167 3.3.3
KARSTIFICATION (CORROSION ALONG A KARST FRACTURE) 168 3.3.4 THEPH
INCREASE OF AN ACID MINE WATER 169 3.3.5 IN-SITU LEACHING 170 3.3.6 3D
TRANSPORT - URANIUM AND ARSENIC CONTAMINATION PLUME 171 4 SOLUTIONS 173
4.1 EQUILIBRIUM REACTIONS 173 4.1.1 GROUNDWATER - LITHOSPHERE 173
4.1.1.1 STANDARD OUTPUT WELL ANALYSIS 173 4.1.1.2 EQUILIBRIUM REACTION *
SOLUBILITY OF GYPSUM 175 4.1.1.3 DISEQUILIBRIUM REACTION * SOLUBILITY OF
GYPSUM 175 4.1.1.4 TEMPERATURE DEPENDENCY OF GYPSUM SOLUBILITY IN WELL
WATER....176 4.1.1.5 TEMPERATURE DEPENDENCY OF GYPSUM SOLUBILITY IN PURE
WATER...177 4.1.1.6 TEMPERATURE- AND P(CO 2 )-DEPENDENT CALCITE
SOLUBILITY 177 4.1.1.7 CALCITE PRECIPITATION AND DOLOMITE DISSOLUTION
178 4.1.1.8 COMPARISON OF THE CALCITE SOLUBILITY IN AN OPEN AND A CLOSED
SYSTEM 179 4.1.1.9 PYRITE WEATHERING 179 4.1.2 ATMOSPHERE - GROUNDWATER
- LITHOSPHERE 18.1 4.1.2.1 PRECIPITATION UNDER THE INFLUENCE OF SOIL CO
2 181 4.1.2.2 BUFFERING SYSTEMS IN THE SOIL 181 4.1.2.3 MINERAL
PRECIPITATIONS AT HOT SULFUR SPRINGS 182 4.1.2.4 FORMATION OF
STALACTITES IN KARST CAVES 183 4.1.2.5 EVAPORATION 183 4.1.3 GROUNDWATER
184 4.1.3.1 THE PE-PH DIAGRAM FOR THE SYSTEM IRON 184 4.1.3.2 THE FE
PE-PH DIAGRAM CONSIDERING CARBON AND SULFUR 186 4.1.3.3 THEPH DEPENDENCY
OF URANIUM SPECIES 187 4.1.4 ORIGIN OF GROUNDWATER 188 4.1.4.1 PUMPING
OF FOSSIL GROUNDWATER IN ARID REGIONS 188 4.1.4.2 SALT WATER/FRESH WATER
INTERFACE 189 4.1.5 ANTHROPOGENIC USE OF GROUNDWATER 190 4.1.5.1
SAMPLING: CA TITRATION WITH EDTA 190 4.1.5.2 CARBONIC ACID
AGGRESSIVENESS 191 4.1.5.3 WATER TREATMENT BY AERATION - WELL WATER 191
4.1.5.4 WATER TREATMENT BY AERATION - SULFUR SPRING 191 4.1.5.5 MIXING
OF WATERS 193 4.1.6 REHABILITATION OF GROUNDWATER 194 4.1.6.1 REDUCTION
OF NITRATE WITH METHANOL 194 4. 1.6.2FE(0) BARRIERS 195 4.1.6.3 INCREASE
IN PH THROUGH A CALCITE BARRIER 196 TABLE OF CONTENTS XI 4.2 REACTION
KINETICS 197 4.2.1 PYRITE WEATHERING 197 4.2.2
QUARTZ-FELDSPAR-DISSOLUTION 199 4.2.3 DEGRADATION OF ORGANIC MATTER
WITHIN THE AQUIFER ON REDUCTION OF REDOX-SENSITIVE ELEMENTS (FE, AS, U,
CU, MN, S) 201 4.2.4 DEGRADATION OF TRITIUM IN THE UNSATURATED ZONE 203
4.3 REACTIVE TRANSPORT 205 4.3.1 LYSIMETER 205 4.3.2 KARST SPRING
DISCHARGE 205 4.3.3 KARSTIFICATION (CORROSION ALONG A KARST FRACTURE)
207 4.3.4 THE PH INCREASE OF AN ACID MINE WATER 208 4.3.5 IN-SITU
LEACHING 210 4.3.6 3D TRANSPORT - URANIUM AND ARSENIC CONTAMINATION
PLUME 212 REFERENCES 215 INDEX ...- 221
|
adam_txt |
BRODER J. MERKEL * BRITTA PLANER-FRIEDRICH AUTHORS GROUNDWATER
GEOCHEMISTRY A PRACTICAL GUIDE TO MODELING OF NATURAL AND CONTAMINATED
AQUATIC SYSTEMS EDITED BY DARRELL KIRK NORDSTROM 2ND EDITION WITH CD-ROM
4Y SPRINGER TABLE OF CONTENTS 1 THEORETICAL BACKGROUND 1 1.1 EQUILIBRIUM
REACTIONS 1 1.1.1 INTRODUCTION 1 1.1.2 THERMODYNAMIC FUNDAMENTALS 5
1.1.2.1 MASS-ACTION LAW 5 1.1.2.2 GIBBS FREE ENERGY 7 1.1.2.3 GIBBS
PHASE RULE 8 1.1.2.4 ACTIVITY 8 1.1.2.5 IONIC STRENGTH 10 1.1.2.6
CALCULATION OF ACTIVITY COEFFICIENT 10 1.1.2.6.1. THEORY OF
ION-ASSOCIATION 10 1.1.2.6.2. THEORY OF ION-INTERACTION 13 1.1.2.7
COMPARISON ION-ASSOCIATION VERSUS ION-INTERACTION THEORY 14 1.1.3
INTERACTIONS AT THE LIQUID-GASEOUS PHASE BOUNDARY 17 1.1.3.1 HENRY LAW
17 1.1.4 INTERACTIONS AT THE LIQUID-SOLID PHASE BOUNDARY 19 1.1.4.1
DISSOLUTION AND PRECIPITATION 19 1.1.4.1.1. SOLUBILITY-PRODUCT 19
1.1.4.1.2. SATURATION INDEX 22 1.1.4.1.3. LIMITING MINERAL PHASES 22
1.1.4.2 SORPTION 25 1.1.4.2.1. HYDROPHOBIC/HYDROPHILIC SUBSTANCES 25
1.1.4.2.2. ION EXCHANGE 25 1.1.4.2.3. MATHEMATICAL DESCRIPTION OF THE
SORPTION 30 1.1.5 INTERACTIONS IN THE LIQUID PHASE 35 1.1.5.1
COMPLEXATION 35 1.1.5.2 REDOX PROCESSES 37 1.1.5.2.1. MEASUREMENT OF THE
REDOX POTENTIAL 37 1.1.5.2.2. CALCULATION OF THE REDOX POTENTIAL 38
1.1.5.2.3. PRESENTATION IN PREDOMINANCE DIAGRAMS 43 1.1.5.2.4. REDOX
BUFFER 47 1.1.5.2.5. SIGNIFICANCE OF REDOX REACTIONS 47 1.2 KINETICS 50
1.2.1 KINETICS OF VARIOUS CHEMICAL PROCESSES 50 1.2.1.1 HALF-LIFE 50
1.2.1.2 KINETICS OF MINERAL DISSOLUTION 51 1.2.2 CALCULATION OF THE
REACTION RATE 52 1.2.2.1 SUBSEQUENT REACTIONS 53 VIII TABLE OF CONTENTS
1.2.2.2 PARALLEL REACTIONS 54 1.2.3 CONTROLLING FACTORS ON THE REACTION
RATE 54 1.2.4 EMPIRICAL APPROACHES FOR KINETICALLY CONTROLLED REACTIONS
55 1.3 REACTIVE MASS TRANSPORT 58 1.3.1 INTRODUCTION 58 1.3.2 FLOW
MODELS 58 1.3.3 TRANSPORT MODELS 59 1.3.3.1 DEFINITION 59 1.3.3.2
IDEALIZED TRANSPORT CONDITIONS 61 1.3.3.3 REAL TRANSPORT CONDITIONS 61
1.3.3.3.1. EXCHANGE WITHIN DOUBLE-POROSITY AQUIFERS 62 1.3.3.4 NUMERICAL
METHODS OF TRANSPORT MODELING 63 1.3.3.4.1.
FINITE-DIFFERENCE/FINITE-ELEMENT METHOD 65 1.3.3.4.2. COUPLED METHODS 66
2 HYDROGEOCHEMICAL MODELING PROGRAMS 69 2.1 GENERAL 69 2.1.1 GEOCHEMICAL
ALGORITHMS 69 2.1.2 PROGRAMS BASED ON MINIMIZING FREE ENERGY 71 2.1.3
PROGRAMS BASED ON EQUILIBRIUM CONSTANTS 72 2.1.3.1 PHREEQC 72 2.1.3.2 EQ
3/6 74 2.1.4 THERMODYNAMIC DATABASES 76 2.1.4.1 GENERAL 76 2.1.4.2
STRUCTURE OF THERMODYNAMIC DATABASES 78 2.1.5 PROBLEMS AND SOURCES OF
ERROR IN GEOCHEMICAL MODELING 81 2.2 USE OF PHREEQC 85 2.2.1 THE
STRUCTURE OF PHREEQC AND ITS GRAPHICAL USER INTERFACES 85 2.2.1.1 INPUT
' 88 2.2.1.2 DATABASE 95 2.2.1.3 OUTPUT 96 2.2.1.4 GRID 97 2.2.1.5 CHART
97 2.2.2 INTRODUCTORY EXAMPLES FOR PHREEQC MODELING 97 2.2.2.1
EQUILIBRIUM REACTIONS 97 2.2.2.1.1. EXAMPLE 1 A STANDARD OUTPUT-SEAWATER
ANALYSIS 98 2.2.2.1.2. EXAMPLE LB EQUILIBRIUM-SOLUTION OF GYPSUM 100
2.2.2.1.3. EXAMPLE LC EQUILIBRIUM-SOLUTION OF CALCITE WITH CO 2 . 101
2.2.2.1.4. EXAMPLE ID: MODELING UNCERTAINTIES - LJUNGSKILE. 103
2.2.2.2 INTRODUCTORY EXAMPLE FOR SORPTION 107 2.2.2.3 INTRODUCTORY
EXAMPLES FOR KINETICS 114 2.2.2.3.1. DEFINING REACTION RATES 115
2.2.2.3.2. BASIC WITHIN PHREEQC 117 2.2.2.4 INTRODUCTORY EXAMPLE FOR
ISOTOPE FRACTIONATION 122 2.2.2.5 INTRODUCTORY EXAMPLES FOR REACTIVE
MASS TRANSPORT 126 TABLE OF CONTENTS IX 2.2.2.5.1. SIMPLE ID TRANSPORT:
COLUMN EXPERIMENT 126 2.2.2.5.2. ID TRANSPORT, DILUTION, AND SURFACE
COMPLEXATION IN AN ABANDONED URANIUM MINE 130 2.2.2.5.3. 3D TRANSPORT
WITH PHAST 134 3 EXERCISES 141 3.1 EQUILIBRIUM REACTIONS 143 3.1.1
GROUNDWATER - LITHOSPHERE : 143 3.1.1.1 STANDARD OUTPUT WELL ANALYSIS
143 3.1.1.2 EQUILIBRIUM REACTION - SOLUBILITY OF GYPSUM 144 3.1.1.3
DISEQUILIBRIUM REACTION - SOLUBILITY OF GYPSUM 144 3.1.1.4 TEMPERATURE
DEPENDENCY OF GYPSUM SOLUBILITY IN WELL WATER. 144 3.1.1.5 TEMPERATURE
DEPENDENCY OF GYPSUM SOLUBILITY IN PURE WATER.144 3.1.1.6 TEMPERATURE-
AND P(CO 2 )-DEPENDENT CALCITE SOLUBILITY 144 3.1.1.7 CALCITE
PRECIPITATION AND DOLOMITE DISSOLUTION 145 3.1.1.8 CALCITE SOLUBILITY IN
AN OPEN AND A CLOSED SYSTEM. 145 3.1.1.9 PYRITE WEATHERING 145 3.1.2
ATMOSPHERE-GROUNDWATER-LITHOSPHERE 146 3.1.2.1 PRECIPITATION UNDER THE
INFLUENCE OF SOILCO 2 146 3.1.2.2 BUFFERING SYSTEMS IN THE SOIL 147
3.1.2.3 MINERAL PRECIPITATES AT HOT SULFUR SPRINGS 147 3. 3. 3.1.3 3. 3.
3. .2.4 FORMATION OF STALACTITES INKARST CAVES 148 .2.5 EVAPORATION 149
GROUNDWATER 150 .3.1 THE PE-PH DIAGRAM FOR THE SYSTEM IRON 150 .3.2 THE
FE PE-PH DIAGRAM CONSIDERING CARBON AND SULFUR 152 .3.3 THE PH
DEPENDENCY OF URANIUM SPECIES 152 3.1.4 ORIGIN OF GROUNDWATER *. 153
3.1.4.1 PUMPING OF FOSSIL GROUNDWATER IN ARID REGIONS 155 3.1.4.2 SALT
WATER/FRESH WATER INTERFACE 156 3.1.5 ANTHROPOGENIC USE OF GROUNDWATER
157 3.1.5.1 SAMPLING: CA TITRATION WITH EDTA 157 3.1.5.2 CARBONIC ACID
AGGRESSIVENESS 157 3.1.5.3 WATER TREATMENT BY AERATION - WELL WATER 158
3.1.5.4 WATER TREATMENT BY AERATION* SULFUR SPRING 158 3.1.5.5 MIXING OF
WATERS '. 159 3.1.6 REHABILITATION OF GROUNDWATER 159 3.1.6.1 REDUCTION
OF NITRATE WITH METHANOL 159 3.1.6.2 FE(0) BARRIERS 160 3.1.6.3 INCREASE
IN PH THROUGH A CALCITE BARRIER 160 3.2 REACTION KINETICS 160 3.2.1
PYRITE WEATHERING 160 3.2.2 QUARTZ-FELDSPAR-DISSOLUTION 161 3.2.3
DEGRADATION OF ORGANIC MATTER WITHIN THE AQUIFER ON REDUCTION OF
REDOX-SENSITIVE ELEMENTS (FE, AS, U, CU, MN, S) 162 X TABLE OF CONTENTS
3.2.4 DEGRADATION OF TRITIUM IN THE UNSATURATED ZONE. 163 3.3 REACTIVE
TRANSPORT 166 3.3.1 LYSIMETER 166 3.3.2 KARST SPRING DISCHARGE 167 3.3.3
KARSTIFICATION (CORROSION ALONG A KARST FRACTURE) 168 3.3.4 THEPH
INCREASE OF AN ACID MINE WATER 169 3.3.5 IN-SITU LEACHING 170 3.3.6 3D
TRANSPORT - URANIUM AND ARSENIC CONTAMINATION PLUME 171 4 SOLUTIONS 173
4.1 EQUILIBRIUM REACTIONS 173 4.1.1 GROUNDWATER - LITHOSPHERE 173
4.1.1.1 STANDARD OUTPUT WELL ANALYSIS 173 4.1.1.2 EQUILIBRIUM REACTION *
SOLUBILITY OF GYPSUM 175 4.1.1.3 DISEQUILIBRIUM REACTION * SOLUBILITY OF
GYPSUM 175 4.1.1.4 TEMPERATURE DEPENDENCY OF GYPSUM SOLUBILITY IN WELL
WATER.176 4.1.1.5 TEMPERATURE DEPENDENCY OF GYPSUM SOLUBILITY IN PURE
WATER.177 4.1.1.6 TEMPERATURE- AND P(CO 2 )-DEPENDENT CALCITE
SOLUBILITY 177 4.1.1.7 CALCITE PRECIPITATION AND DOLOMITE DISSOLUTION
178 4.1.1.8 COMPARISON OF THE CALCITE SOLUBILITY IN AN OPEN AND A CLOSED
SYSTEM 179 4.1.1.9 PYRITE WEATHERING 179 4.1.2 ATMOSPHERE - GROUNDWATER
- LITHOSPHERE 18.1 4.1.2.1 PRECIPITATION UNDER THE INFLUENCE OF SOIL CO
2 181 4.1.2.2 BUFFERING SYSTEMS IN THE SOIL 181 4.1.2.3 MINERAL
PRECIPITATIONS AT HOT SULFUR SPRINGS 182 4.1.2.4 FORMATION OF
STALACTITES IN KARST CAVES 183 4.1.2.5 EVAPORATION 183 4.1.3 GROUNDWATER
184 4.1.3.1 THE PE-PH DIAGRAM FOR THE SYSTEM IRON 184 4.1.3.2 THE FE
PE-PH DIAGRAM CONSIDERING CARBON AND SULFUR 186 4.1.3.3 THEPH DEPENDENCY
OF URANIUM SPECIES 187 4.1.4 ORIGIN OF GROUNDWATER 188 4.1.4.1 PUMPING
OF FOSSIL GROUNDWATER IN ARID REGIONS 188 4.1.4.2 SALT WATER/FRESH WATER
INTERFACE 189 4.1.5 ANTHROPOGENIC USE OF GROUNDWATER 190 4.1.5.1
SAMPLING: CA TITRATION WITH EDTA 190 4.1.5.2 CARBONIC ACID
AGGRESSIVENESS 191 4.1.5.3 WATER TREATMENT BY AERATION - WELL WATER 191
4.1.5.4 WATER TREATMENT BY AERATION - SULFUR SPRING 191 4.1.5.5 MIXING
OF WATERS 193 4.1.6 REHABILITATION OF GROUNDWATER 194 4.1.6.1 REDUCTION
OF NITRATE WITH METHANOL 194 4. 1.6.2FE(0) BARRIERS 195 4.1.6.3 INCREASE
IN PH THROUGH A CALCITE BARRIER 196 TABLE OF CONTENTS XI 4.2 REACTION
KINETICS 197 4.2.1 PYRITE WEATHERING 197 4.2.2
QUARTZ-FELDSPAR-DISSOLUTION 199 4.2.3 DEGRADATION OF ORGANIC MATTER
WITHIN THE AQUIFER ON REDUCTION OF REDOX-SENSITIVE ELEMENTS (FE, AS, U,
CU, MN, S) 201 4.2.4 DEGRADATION OF TRITIUM IN THE UNSATURATED ZONE 203
4.3 REACTIVE TRANSPORT 205 4.3.1 LYSIMETER 205 4.3.2 KARST SPRING
DISCHARGE 205 4.3.3 KARSTIFICATION (CORROSION ALONG A KARST FRACTURE)
207 4.3.4 THE PH INCREASE OF AN ACID MINE WATER 208 4.3.5 IN-SITU
LEACHING 210 4.3.6 3D TRANSPORT - URANIUM AND ARSENIC CONTAMINATION
PLUME 212 REFERENCES 215 INDEX .- 221 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Merkel, Broder 1949- Planer-Friedrich, Britta 1975- |
author_GND | (DE-588)172255775 (DE-588)114635035X |
author_facet | Merkel, Broder 1949- Planer-Friedrich, Britta 1975- |
author_role | aut aut |
author_sort | Merkel, Broder 1949- |
author_variant | b m bm b p f bpf |
building | Verbundindex |
bvnumber | BV023302433 |
classification_rvk | RB 10354 TI 8100 |
ctrlnum | (OCoLC)633289893 (DE-599)DNB98781656X |
dewey-full | 551.49 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 551 - Geology, hydrology, meteorology |
dewey-raw | 551.49 |
dewey-search | 551.49 |
dewey-sort | 3551.49 |
dewey-tens | 550 - Earth sciences |
discipline | Geologie / Paläontologie Geographie |
discipline_str_mv | Geologie / Paläontologie Geographie |
edition | 2. ed. |
format | Kit Book |
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id | DE-604.BV023302433 |
illustrated | Illustrated |
index_date | 2024-07-02T20:47:12Z |
indexdate | 2024-07-09T21:15:22Z |
institution | BVB |
isbn | 9783540746676 3540746676 9783662517505 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016486868 |
oclc_num | 633289893 |
open_access_boolean | |
owner | DE-29 DE-703 DE-706 DE-83 |
owner_facet | DE-29 DE-703 DE-706 DE-83 |
physical | XI, 230 S. Ill., graph. Darst. 1 CD-ROM |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Springer |
record_format | marc |
spelling | Merkel, Broder 1949- Verfasser (DE-588)172255775 aut Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems Broder J. Merkel ; Britta Planer-Friedrich. Ed. by Darrell Kirk Nordstrom 2. ed. Berlin [u.a.] Springer 2008 XI, 230 S. Ill., graph. Darst. 1 CD-ROM txt rdacontent n rdamedia nc rdacarrier Hier auch später erschienene, unveränderte Nachdrucke Softcover reprint of the hardcover 2nd edition 2008 ohne CD-ROM Numerisches Modell (DE-588)4338132-7 gnd rswk-swf Grundwasser (DE-588)4022369-3 gnd rswk-swf Hydrogeochemie (DE-588)4225478-4 gnd rswk-swf Mathematisches Modell (DE-588)4114528-8 gnd rswk-swf Hydrochemie (DE-588)4072678-2 gnd rswk-swf Grundwasser (DE-588)4022369-3 s Hydrogeochemie (DE-588)4225478-4 s Numerisches Modell (DE-588)4338132-7 s 1\p DE-604 Hydrochemie (DE-588)4072678-2 s 2\p DE-604 Mathematisches Modell (DE-588)4114528-8 s 3\p DE-604 Planer-Friedrich, Britta 1975- Verfasser (DE-588)114635035X aut Erscheint auch als Online-Ausgabe 978-3-540-74668-3 HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016486868&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Merkel, Broder 1949- Planer-Friedrich, Britta 1975- Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems Numerisches Modell (DE-588)4338132-7 gnd Grundwasser (DE-588)4022369-3 gnd Hydrogeochemie (DE-588)4225478-4 gnd Mathematisches Modell (DE-588)4114528-8 gnd Hydrochemie (DE-588)4072678-2 gnd |
subject_GND | (DE-588)4338132-7 (DE-588)4022369-3 (DE-588)4225478-4 (DE-588)4114528-8 (DE-588)4072678-2 |
title | Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems |
title_auth | Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems |
title_exact_search | Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems |
title_exact_search_txtP | Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems |
title_full | Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems Broder J. Merkel ; Britta Planer-Friedrich. Ed. by Darrell Kirk Nordstrom |
title_fullStr | Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems Broder J. Merkel ; Britta Planer-Friedrich. Ed. by Darrell Kirk Nordstrom |
title_full_unstemmed | Groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems Broder J. Merkel ; Britta Planer-Friedrich. Ed. by Darrell Kirk Nordstrom |
title_short | Groundwater geochemistry |
title_sort | groundwater geochemistry a practical guide to modeling of natural and contaminated aquatic systems |
title_sub | a practical guide to modeling of natural and contaminated aquatic systems |
topic | Numerisches Modell (DE-588)4338132-7 gnd Grundwasser (DE-588)4022369-3 gnd Hydrogeochemie (DE-588)4225478-4 gnd Mathematisches Modell (DE-588)4114528-8 gnd Hydrochemie (DE-588)4072678-2 gnd |
topic_facet | Numerisches Modell Grundwasser Hydrogeochemie Mathematisches Modell Hydrochemie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016486868&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT merkelbroder groundwatergeochemistryapracticalguidetomodelingofnaturalandcontaminatedaquaticsystems AT planerfriedrichbritta groundwatergeochemistryapracticalguidetomodelingofnaturalandcontaminatedaquaticsystems |