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Water Research|July 1, 2019
In-situ chemical oxidation of chlorendic acid by persulfate: Elucidation of the roles of adsorption and oxidation on chlorendic acid removalAlannah Taylor, Nick Zrinyi, Stephen P Mezyk, et al.Environmental Science & Technology|September 19, 2007
Free radical chemistry of advanced oxidation process removal of nitrosamines in waterNicholas A Landsman, Katy L Swancutt, Christine N Bradford, et al.The Journal of Physical Chemistry. A|January 9, 2010
Free-radical chemistry of disinfection byproducts. 3. Degradation mechanisms of chloronitromethane, bromonitromethane, and dichloronitromethaneBruce J Mincher, Stephen P Mezyk, William J Cooper, et al.Inorganic Chemistry|June 30, 2017
Kinetics of the Autoreduction of Hexavalent Americium in Aqueous Nitric AcidTravis S Grimes, Gregory P Horne, Christopher J Dares, et al.ACS ES&T Water|June 19, 2025
Radical Treatment of Haloacetonitriles in Aqueous Systems: A Kinetic StudyStephen P Mezyk, Maya H Rogalski, Anh N Dang, et al.Physical Chemistry Chemical Physics : PCCP|October 28, 2021
Influence of uranyl complexation on the reaction kinetics of the dodecane radical cation with used nuclear fuel extraction ligands (TBP, DEHBA, and DEHiBA)Cristian Celis Barros, Corey D Pilgrim, Andrew R Cook, et al.The Review of Scientific Instruments|January 1, 2008
An apparatus for the study of high temperature water radiolysis in a nuclear reactor: calibration of dose in a mixed neutron/gamma radiation fieldEric J Edwards, Paul P H Wilson, Mark H Anderson, et al.Dalton Transactions (Cambridge, England : 2003)|May 22, 2024
Generation and study of Am(IV) by temperature-controlled electron pulse radiolysisAmy E Kynman, Travis S Grimes, Stephen P Mezyk, et al.Dalton Transactions (Cambridge, England : 2003)|November 7, 2019
Gamma radiolysis of hydrophilic diglycolamide ligands in concentrated aqueous nitrate solutionGregory P Horne, Andreas Wilden, Stephen P Mezyk, et al.Journal of Hazardous Materials|June 9, 2016
Decomposition of Iodinated Pharmaceuticals by UV-254 nm-assisted Advanced Oxidation ProcessesXiaodi Duan, Xuexiang He, Dong Wang, et al.Pageof 9