Selective catalytic reduction of NOx with NH3 over Cu-ZSM-5—The effect of changing the gas composition H Sjövall, L Olsson, E Fridell, RJ Blint Applied Catalysis B: Environmental 64 (3-4), 180-188, 2006 | 325 | 2006 |
A kinetic model for ammonia selective catalytic reduction over Cu-ZSM-5 L Olsson, H Sjövall, RJ Blint Applied Catalysis B: Environmental 81 (3-4), 203-217, 2008 | 281 | 2008 |
Numerical simulation of turbulent propane–air combustion with nonhomogeneous reactants DC Haworth, RJ Blint, B Cuenot, TJ Poinsot Combustion and Flame 121 (3), 395-417, 2000 | 222 | 2000 |
The potential energy surface of the HO2 molecular system CF Melius, RJ Blint Chemical Physics Letters 64 (1), 183-189, 1979 | 203 | 1979 |
Formation of small aromatic molecules in a sooting ethylene flame SJ Harris, AM Weiner, RJ Blint Combustion and flame 72 (1), 91-109, 1988 | 195 | 1988 |
Detailed kinetic modeling of NH3 SCR over Cu-ZSM-5 H Sjövall, RJ Blint, L Olsson Applied Catalysis B: Environmental 92 (1-2), 138-153, 2009 | 170 | 2009 |
Relative importance of nitric oxide formation mechanisms in laminar opposed-flow diffusion flames MC Drake, RJ Blint Combustion and Flame 83 (1-2), 185-203, 1991 | 164 | 1991 |
Calculations of NOx formation pathways in propagating laminar, high pressure premixed CH4/air flames MC Drake, RJ Blint Combustion science and technology 75 (4-6), 261-285, 1991 | 159 | 1991 |
The relationship of the laminar flame width to flame speed RJ Blint Combustion Science and Technology 49 (1-2), 79-92, 1986 | 152 | 1986 |
Thermal NOx in stretched laminar opposed-flow diffusion flames with CO/H2/N2 fuel MC Drake, RJ Blint Combustion and Flame 76 (2), 151-167, 1989 | 147 | 1989 |
Global kinetic model for lean NO x traps L Olsson, RJ Blint, E Fridell Industrial & engineering chemistry research 44 (9), 3021-3032, 2005 | 137 | 2005 |
Detailed Kinetic Modeling of NH3 and H2O Adsorption, and NH3 Oxidation over Cu-ZSM-5 H Sjövall, RJ Blint, L Olsson The Journal of Physical Chemistry C 113 (4), 1393-1405, 2009 | 131 | 2009 |
Detailed kinetic modeling of NOx adsorption and NO oxidation over Cu-ZSM-5 L Olsson, H Sjövall, RJ Blint Applied Catalysis B: Environmental 87 (3-4), 200-210, 2009 | 130 | 2009 |
The importance of time-dependent flame structures in stretched laminar flamelet models for turbulent jet diffusion flames DC Haworth, MC Drake, SB Pope, RJ Blint Symposium (International) on Combustion 22 (1), 589-597, 1989 | 130 | 1989 |
A Kinetic Model for the Selective Catalytic Reduction of NOx with NH3 over an Fe−zeolite Catalyst H Sjovall, RJ Blint, A Gopinath, L Olsson Industrial & Engineering Chemistry Research 49 (1), 39-52, 2010 | 114 | 2010 |
Structure of Laminar Opposed-flow Diffusion Flames With CO/H2/N2 Fuel MC Drake, RJ Blint Combustion science and technology 61 (4-6), 187-224, 1988 | 110 | 1988 |
Atmospheric pressure premixed hydrocarbon-air flames: Theory and experiment JH Bechtel, RJ Blint, CJ Dasch, DA Weinberger Combustion and Flame 42, 197-213, 1981 | 107 | 1981 |
Binding of ether and carbonyl oxygens to lithium ion RJ Blint Journal of the Electrochemical Society 142 (3), 696, 1995 | 106 | 1995 |
Ab initio studies of interoxygen bonding in O2, HO2, H2O2, O3, HO3, and H2O3 RJ Blint, MD Newton The Journal of Chemical Physics 59 (12), 6220-6228, 1973 | 100 | 1973 |
Identification of adsorbed species on Cu-ZSM-5 under NH3 SCR conditions H Sjövall, E Fridell, RJ Blint, L Olsson Topics in Catalysis 42, 113-117, 2007 | 90 | 2007 |