Reductive dehalogenation of chlorinated methanes by iron metal LJ Matheson, PG Tratnyek Environmental science & technology 28 (12), 2045-2053, 1994 | 2006 | 1994 |
Characterization and properties of metallic iron nanoparticles: spectroscopy, electrochemistry, and kinetics JT Nurmi, PG Tratnyek, V Sarathy, DR Baer, JE Amonette, K Pecher, ... Environmental science & technology 39 (5), 1221-1230, 2005 | 1202 | 2005 |
Reduction of nitro aromatic compounds by zero-valent iron metal A Agrawal, PG Tratnyek Environmental science & technology 30 (1), 153-160, 1995 | 1079 | 1995 |
Kinetics of halogenated organic compound degradation by iron metal TL Johnson, MM Scherer, PG Tratnyek Environmental science & technology 30 (8), 2634-2640, 1996 | 1050 | 1996 |
Nanotechnologies for environmental cleanup PG Tratnyek, RL Johnson Nano today 1 (2), 44-48, 2006 | 1018 | 2006 |
Oxidation of chlorinated ethenes by heat-activated persulfate: kinetics and products RH Waldemer, PG Tratnyek, RL Johnson, JT Nurmi Environmental Science & Technology 41 (3), 1010-1015, 2007 | 866 | 2007 |
Reduction of azo dyes with zero-valent iron S Nam, PG Tratnyek Water Research 34 (6), 1837-1845, 2000 | 581 | 2000 |
Persulfate persistence under thermal activation conditions RL Johnson, PG Tratnyek, ROB Johnson Environmental science & technology 42 (24), 9350-9356, 2008 | 487 | 2008 |
Kinetics of contaminant degradation by permanganate RH Waldemer, PG Tratnyek Environmental Science & Technology 40 (3), 1055-1061, 2006 | 393 | 2006 |
Oxidation of substituted phenols in the environment: a QSAR analysis of rate constants for reaction with singlet oxygen PG Tratnyek, J Hoigne Environmental science & technology 25 (9), 1596-1604, 1991 | 363 | 1991 |
Sulfidation of iron-based materials: a review of processes and implications for water treatment and remediation D Fan, Y Lan, PG Tratnyek, RL Johnson, J Filip, DM O’Carroll, ... Environmental science & technology 51 (22), 13070-13085, 2017 | 353 | 2017 |
Natural organic matter enhanced mobility of nano zerovalent iron RL Johnson, GOB Johnson, JT Nurmi, PG Tratnyek Environmental Science & Technology 43 (14), 5455-5460, 2009 | 304 | 2009 |
Aging of iron nanoparticles in aqueous solution: effects on structure and reactivity V Sarathy, PG Tratnyek, JT Nurmi, DR Baer, JE Amonette, CL Chun, ... The Journal of Physical Chemistry C 112 (7), 2286-2293, 2008 | 297 | 2008 |
Mechanochemically sulfidated microscale zero valent iron: pathways, kinetics, mechanism, and efficiency of trichloroethylene dechlorination Y Gu, B Wang, F He, MJ Bradley, PG Tratnyek Environmental science & technology 51 (21), 12653-12662, 2017 | 283 | 2017 |
Sulfidation of nano zerovalent iron (nZVI) for improved selectivity during in-situ chemical reduction (ISCR) D Fan, G O’Brien Johnson, PG Tratnyek, RL Johnson Environmental Science & Technology 50 (17), 9558-9565, 2016 | 280 | 2016 |
Effects of natural organic matter, anthropogenic surfactants, and model quinones on the reduction of contaminants by zero-valent iron PG Tratnyek, MM Scherer, B Deng, S Hu Water Research 35 (18), 4435-4443, 2001 | 279 | 2001 |
Electrochemical properties of natural organic matter (NOM), fractions of NOM, and model biogeochemical electron shuttles JT Nurmi, PG Tratnyek Environmental science & technology 36 (4), 617-624, 2002 | 278 | 2002 |
Degradation of carbon tetrachloride by iron metal: Complexation effects on the oxide surface TL Johnson, W Fish, YA Gorby, PG Tratnyek Journal of Contaminant Hydrology 29 (4), 379-398, 1998 | 275 | 1998 |
Fe(II) redox chemistry in the environment J Huang, A Jones, TD Waite, Y Chen, X Huang, KM Rosso, A Kappler, ... Chemical Reviews 121 (13), 8161-8233, 2021 | 272 | 2021 |
Activation of manganese oxidants with bisulfite for enhanced oxidation of organic contaminants: the involvement of Mn (III) B Sun, X Guan, J Fang, PG Tratnyek Environmental science & technology 49 (20), 12414-12421, 2015 | 265 | 2015 |