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Physical Chemistry Chemical Physics : PCCP|August 22, 2024
Reactions of the ˙NO3 radical with nuclear extraction ligands in alkane solutionAnh N Dang, Maya H Rogalski, Dean R Peterman, et al.Environmental Science & Technology|June 14, 2011
Temperature dependence of the reaction between the hydroxyl radical and organic matterGarrett McKay, Mei Mei Dong, Jonathan L Kleinman, et al.The Journal of Physical Chemistry. A|August 21, 2012
Reaction kinetics and efficiencies for the hydroxyl and sulfate radical based oxidation of artificial sweeteners in waterJanie E Toth, Kimberly A Rickman, Andre R Venter, et al.Water Research|November 20, 2013
Identifying the factors that influence the reactivity of effluent organic matter with hydroxyl radicalsOlya S Keen, Garrett McKay, Stephen P Mezyk, et al.Chemosphere|September 28, 2023
Methyl nitrate as a byproduct in advanced water treatment systems: Liquid chromatographic determination method and cause of formationHitoshi Kodamatani, Kenta Sugihara, Stephen P Mezyk, et al.Data in Brief|September 28, 2020
Dataset and kinetic model reaction compilation for the radical-induced degradation of formic acid and formate in aqueous solutionGregory P Horne, Peter R Zalupski, Dayna L Daubaras, et al.Chemosphere|October 27, 2009
Advanced oxidation and reduction process chemistry of methyl tert-butyl ether (MTBE) reaction intermediates in aqueous solution: 2-methoxy-2-methyl-propanal, 2-methoxy-2-methyl-propanol, and 2-methoxy-2-methyl-propanoic acidStephen P Mezyk, D Rance Hardison, Weihua Song, et al.The Journal of Physical Chemistry. A|June 25, 2026
Experimental and Multiscale Modeling Insights for Radiation-Driven Neptunium Redox Processes at Elevated TemperaturesAmy E Kynman, Travis S Grimes, Stephen P Mezyk, et al.Water Research|August 28, 2020
Radiolytic degradation of formic acid and formate in aqueous solution: modeling the final stages of organic mineralization under advanced oxidation process conditionsGregory P Horne, Peter R Zalupski, Dayna L Daubaras, et al.Water Research|December 5, 2008
Free-radical-induced oxidative and reductive degradation of N,N'-diethyl-m-toluamide (DEET): Kinetic studies and degradation pathwayWeihua Song, William J Cooper, Barrie M Peake, et al.Pageof 9