1 |
Modeling intraphase and interphase mass transfer limitations for NH3-SCR over Cu-ZSM-5 Zhong C, Gong JK, Tan LG, Liu WQ, Liu GL, Zhang ZQ Chemical Engineering Science, 207, 479, 2019 |
2 |
The ammonia selective catalytic reduction activity of copper-exchanged small-pore zeolites Fickel DW, D'Addio E, Lauterbach JA, Lobo RF Applied Catalysis B: Environmental, 102(3-4), 441, 2011 |
3 |
Antimicrobial mortar surfaces for the improvement of hygienic conditions De Muynck W, De Belie N, Verstraete W Journal of Applied Microbiology, 108(1), 62, 2010 |
4 |
Direct NO and N2O decomposition and NO-assisted N2O decomposition over Cu-zeolites: Elucidating the influence of the Cu-Cu distance on oxygen migration Smeets PJ, Groothaert MH, van Teeffelen RM, Leeman H, Hensen EJM, Schoonheydt RA Journal of Catalysis, 245(2), 358, 2007 |
5 |
Investigation of the effect of carbon monoxide on the oxidative carbonylation of methanol to dimethyl carbonate over Cu+X and Cu(+)ZSM-5 zeolites Anderson SA, Root TW Journal of Molecular Catalysis A-Chemical, 220(2), 247, 2004 |
6 |
Conversion and in situ FTIR studies of direct NO decomposition over Cu-ZSM5 Ganemi B, Bjornbom E, Paul J Applied Catalysis B: Environmental, 17(4), 293, 1998 |
7 |
Desorption study of NO and O-2 on Cu-ZSM-5 Gervasini A Applied Catalysis B: Environmental, 14(3-4), 147, 1997 |
8 |
Mechanism of the Selective Catalytic Reduction of No by NH3 over Mnox/Al2O3 .1. Adsorption and Desorption of the Single Reaction Components Kijlstra WS, Brands DS, Poels EK, Bliek A Journal of Catalysis, 171(1), 208, 1997 |
9 |
Intermediates in the Reaction of NOx Reduction with Propane over Cu/ZSM-5 Catalysts (by ESR, TPD, and Ir-Spectroscopy in-Situ) Matyshak VA, Ilichev AN, Ukharsky AA, Korchak VN Journal of Catalysis, 171(1), 245, 1997 |