1 - 2 |
Catalytic Treatment of Diesel Emissions - Preface Farrauto RJ |
3 - 28 |
Worldwide Diesel Emission Standards, Current Experiences and Future-Needs Zelenka P, Cartellieri W, Herzog P |
29 - 51 |
Monolithic Diesel Oxidation Catalysts Farrauto RJ, Voss KE |
53 - 68 |
Effect of Support Oxide and Noble-Metal Precursor on the Activity of Automotive Diesel Catalysts Vandentillaart JA, Leyrer J, Eckhoff S, Lox ES |
69 - 82 |
Diesel Oxidation Catalysts for Commercial Vehicle Engines - Strategies on Their Application for Controlling Particulate-Emissions Stein HJ |
83 - 97 |
The Application of Diesel Oxidation Catalysts to Heavy-Duty Diesel-Engines in Japan Hosoya M, Shimoda M |
99 - 115 |
Catalytic Diesel Exhaust Aftertreatment Clerc JC |
117 - 137 |
Deposition, Diffusion and Adsorption in the Diesel Oxidation Catalyst Johnson JE, Kittelson DB |
139 - 156 |
Simultaneous Control of Particulate and NOx Emissions from Diesel-Engines Summers JC, Vanhoutte S, Psaras D |
157 - 181 |
Lean NOx Catalysis for Diesel Passenger Cars - Investigating Effects of Sulfur-Dioxide and Space Velocity Adams KM, Cavataio JV, Hammerle RH |
183 - 201 |
The Development of a Model Capable of Predicting Diesel Lean NOx Catalyst Performance Under Transient Conditions Ansell GP, Bennett PS, Cox JP, Frost JC, Gray PG, Jones AM, Rajaram RR, Walker AP, Litorell M, Smedler G |
203 - 227 |
Selective Catalytic Reduction of Nitric-Oxide by Hydrocarbons Amiridis MD, Zhang TJ, Farrauto RJ |
229 - 235 |
Wet Oxidation of Phenol by Hydrogen-Peroxide Using Heterogeneous Catalysis Fe-ZSM-5 - A Promising Catalyst Fajerwerg K, Debellefontaine H |