Surface Complexation Modeling: Hydrous Ferric Oxide

Front Cover
John Wiley & Sons, Jan 16, 1991 - Science - 416 pages
Provides a description of the thermodynamic model, data treatment procedures and the thermodynamic constants for hydrous ferric oxide. Includes detailed coverage of the model and the parameter extraction procedure.
 

Contents

Experimental Data
43
Data Compilation and Treatment Methods
65
Properties of Hydrous Ferric Oxide
89
Cation Sorption on Hydrous Ferric Oxide
103
Anion Sorption on Hydrous Ferric Oxide
191
89
217
Use of the Model and Data Base
239
103
Coherence and Extrapolation of Results
13
References
11
191
9
Appendix A Summary of Experimental Details 333
13
Appendix B Solution Techniques for Chemical Equilibrium
11
Computer Program for Estimation of Best Overall
17
Subject Index 387
27
Copyright

The Coulombic Effect
7

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About the author (1991)

DAVID A. DZOMBAK is the Walter J. Blenko Sr. Professor of Environmental Engineering in the Department of Civil and Environmental Engineering at Carnegie Mellon University. He is also Faculty Director of the Steinbrenner Institute for Environmental Education and Research. He has published numerous articles in leading environmental engineering and science journals, book chapters, articles for the popular press, and has authored two books.

François M. M. Morel, the Albert G. Blanke Professor of Geosciences, is a world leader in the chemistry of natural waters and one of the founders of the field of biogeochemistry. His research demonstrated that aquatic chemistry, biochemistry, genetics, and microbiology are critical for understanding the oceans, in the process helping to establish the field of marine biogeochemistry.

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