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6. The Link Between Mineral Dissolution/Precipitation Kinetics and Solution Chemistry
-
Jacques Schott
, Oleg S. Pokrovsky und Eric H. Oelkers
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Kapitel in diesem Buch
- Frontmatter I
- SHORT COURSE SERIES DEDICATION II
- PREFACE III
- TABLE OF CONTENTS IX
- 1. Thermodynamic Databases for Water-Rock Interaction 1
- 2. Thermodynamics of Solid Solution- Aqueous Solution Systems 47
- 3. Mineral Replacement Reactions 87
- 4. Thermodynamic Concepts in Modeling Sorption at the Mineral-Water Interface 125
- 5. Surface Complexation Modeling: Mineral Fluid Equilbria at the Molecular Scale 181
- 6. The Link Between Mineral Dissolution/Precipitation Kinetics and Solution Chemistry 207
- 7. Organics in Water-Rock Interactions 259
- 8. Mineral Precipitation Kinetics 371
- 9. Towards an Integrated Model of Weathering, Climate, and Biospheric Processes 411
- 10. Approaches to Modeling Weathered Regolith 435
- 11. Fluid-Rock Interaction: A Reactive Transport Approach 485
- 12. Geochemical Modeling of Reaction Paths and Geochemical Reaction Networks 533
Kapitel in diesem Buch
- Frontmatter I
- SHORT COURSE SERIES DEDICATION II
- PREFACE III
- TABLE OF CONTENTS IX
- 1. Thermodynamic Databases for Water-Rock Interaction 1
- 2. Thermodynamics of Solid Solution- Aqueous Solution Systems 47
- 3. Mineral Replacement Reactions 87
- 4. Thermodynamic Concepts in Modeling Sorption at the Mineral-Water Interface 125
- 5. Surface Complexation Modeling: Mineral Fluid Equilbria at the Molecular Scale 181
- 6. The Link Between Mineral Dissolution/Precipitation Kinetics and Solution Chemistry 207
- 7. Organics in Water-Rock Interactions 259
- 8. Mineral Precipitation Kinetics 371
- 9. Towards an Integrated Model of Weathering, Climate, and Biospheric Processes 411
- 10. Approaches to Modeling Weathered Regolith 435
- 11. Fluid-Rock Interaction: A Reactive Transport Approach 485
- 12. Geochemical Modeling of Reaction Paths and Geochemical Reaction Networks 533