Table of Contents:
  • 1. Introduction to aquatic redox chemistry / Timothy J. Grundl, Stefan Haderlein, James T. Nurmi, and Paul G. Tratnyek
  • 2. Thermodynamic redox calculations for one and two electron transfer steps: implications for halide oxidation and halogen environmental cycling / George W. Luther, III
  • 3. One-electron reduction potentials from chemical structure theory calculations / Eric J. Bylaska, Alexandra J. Salter-Blanc, and Paul G. Tratnyek
  • 4. Thermodynamic control on terminal electron transfer and methanogenesis / Christian Blodau
  • 5. Redox chemistry and natural organic matter (NOM): geochemists' dream, analytical chemists' nightmare / Donald L. Macalady and Katherine Walton-Day
  • 6. Electron shuttling by natural organic matter: twenty years after / Garrison Sposito
  • 7. Electrochemistry of natural organic matter / James T. Nurmi and Paul G. Tratnyek
  • 8. Pathways contributing to the formation and decay of ferrous iron in sunlit natural waters / Shikha Garg, Andrew L. Rose, and T. David Waite
  • 9. The role of iron coordination in the production of reactive oxidants from ferrous iron oxidation by oxygen and hydrogen peroxide / Christina Keenan Remucal and David L. Sedlak
  • 10. TiO2 photocatalysis for the redox conversion of aquatic pollutants / Jaesang Lee, Jungwon Kim, and Wonyong Choi
  • 11. Chlorine based oxidants for water purification and disinfection / Gregory V. Korshin
  • 12. Remediation of chemically-contaminated waters using sulfate radical reactions: kinetic studies / Stephen P. Mezyk, Kimberly A. Rickman, Garrett McKay, Charlotte M. Hirsch, Xuexiang He, and Dionysios D. Dionysiou
  • 13. Voltammetry of sulfide nanoparticles and the FeS(aq) problem / G.R. Helz, I. Ciglenecki, D. Krznaric, and E. Bura-Nakic
  • 14. Redox reactivity of organically complexed iron(II) species with aquatic contaminants / Timothy J. Strathmann
  • 15. Fe2+ sorption at the Fe oxide-water interface: a revised conceptual framework / Christopher A. Gorski and Michelle M. Scherer
  • 16. Redox driven stable isotope fractionation / Jay R. Black, Jeffrey A. Crawford, Seth John, and Abby Kavner
  • 17. Redox properties of structural Fe in smectite clay minerals / Anke Neumann, Michael Sander, and Thomas B. Hofstetter
  • 18. Reactivity of zerovalent metals in aquatic media: effects of organic surface coatings / Paul G. Tratnyek, Alexandra J. Salter-Blanc, James T. Nurmi, James E. Amonette, Juan Liu, Chongmin Wang, Alice Dohnalkova, and Donald R. Baer
  • 19. Current perspectives on the mechanisms of chlorohydrocarbon degradation in subsurface environments: insight from kinetics, product formation, probe molecules, and isotope fractionation / Martin Elsner and Thomas B. Hofstetter
  • 20. Degradation routes of RDX in various redox systems / Annamaria Halasz and Jalal Hawari
  • 21. Role of coupled redox transformations in the mobilization and sequestration of arsenic / Janet G. Hering, Stephan J. Hug, Claire Farnsworth, and Peggy A. O'Day
  • 22. Redox processes affecting the speciation of technetium, uranium, neptunium, and plutonium in aquatic and terrestrial environments / Edward J. O'Loughlin, Maxim I. Boyanov, Dionysios A. Antonopoulos, and Kenneth M. Kemner
  • 23. Rate controlling processes in the transformation of tetrachloroethylene and carbon tetrachloride under iron reducing and sulfate reducing conditions / Elizabeth C. Butler, Yiran Dong, Lee R. Krumholz, Xiaoming Liang, Hongbo Shao, and Yao Tan
  • 24. The use of chemical probes for the characterization of the predominant abiotic reductants in anaerobic sediments / Huichun (Judy) Zhang, Dalizza Colón, John F. Kenneke, and Eric J. Weber
  • 25. The Role of transport in aquatic redox chemistry / Wolfgang Kurtz and Stefan Peiffer
  • 26. Evolution of redox processes in groundwater / Peter B. McMahon, Francis H. Chapelle, and Paul M. Bradley.