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Manganese oxidation induced by water table fluctuations in a sand column
Farnsworth, C. E., Voegelin, A., & Hering, J. G. (2012). Manganese oxidation induced by water table fluctuations in a sand column. Environmental Science and Technology, 46(1), 277-284. https://doi.org/10.1021/es2027828
Inorganic geochemistry and redox dynamics in bank filtration settings
Farnsworth, C. E., & Hering, J. G. (2011). Inorganic geochemistry and redox dynamics in bank filtration settings. Environmental Science and Technology, 45(12), 5079-5087. https://doi.org/10.1021/es2001612
Role of coupled redox transformations in the mobilization and sequestration of arsenic
Hering, J. G., Hug, S. J., Farnsworth, C., & O'Day, P. A. (2011). Role of coupled redox transformations in the mobilization and sequestration of arsenic. In P. G. Tratnyek, T. J. Grundl, & S. B. Haderlein (Eds.), ACS Symposium Series: Vol. 1071. Aquatic redox chemistry (pp. 463-476). https://doi.org/10.1021/bk-2011-1071.ch021
Hydrous manganese oxide doped gel probe sampler for measuring in situ reductive dissolution rates. 1. Laboratory development
Farnsworth, C. E., & Hering, J. G. (2010). Hydrous manganese oxide doped gel probe sampler for measuring in situ reductive dissolution rates. 1. Laboratory development. Environmental Science and Technology, 44(1), 34-40. https://doi.org/10.1021/es901577q
Hydrous manganese oxide doped gel probe sampler for measuring in situ reductive dissolution rates. 2. Field deployment
Farnsworth, C. E., Griffis, S. D., Wildman Jr., R. A., & Hering, J. G. (2010). Hydrous manganese oxide doped gel probe sampler for measuring in situ reductive dissolution rates. 2. Field deployment. Environmental Science and Technology, 44(1), 41-46. https://doi.org/10.1021/es901572h