
Reduction of Nitrogen Oxide Emissions
by Ozkan, Umit S.; Agarwal, Sanjay K.; Marcelin, GeorgeBuy New
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Summary
Table of Contents
NO x Control from Stationary Sources | |
Overview of Regulations, Technology, and Research Frontiers | |
Clean Air Act Requirements | |
Effect on Emissions of NO x from Stationary Sources | |
Selective Catalytic Reduction of NO by NH3 over Aerogels of Titania, Silica, and Vanadia | |
Deactivation Behavior of Selective Catalytic Reduction DeNO x Catalysts | |
Basis for the Development of a New Generation of Catalysts | |
Zeolite Selective Catalytic Reduction Catalysts for NO x Removal from Nuclear Waste Processing PlantsX | |
Kinetic Studies of NO Reduction by CH4 over Nonmetallic Catalysts | |
Low-Temperature Selective Catalytic Reduction of NO by Hydrocarbons in the Presence of O2 and H2O | |
Catalytic Reduction of NO with Propene over Coprecipitated CuZrO2 and CuGa2O3H | |
IR Study of Catalytic Reduction of NO x by Propene in the Presence of O2 over CeZSM-5 ZeoliteK | |
Mechanism of Selective Catalytic Reduction of NO by Propene on Fe Silicate in Oxygen-Rich Atmosphere | |
A Transient Response StudyY | |
Decomposition of NO over Metal-Modified Cu-ZSM-5 Catalysts | |
X-ray Absorption Spectroscopic Study of Cu in Cu-ZSM-5 During NO Catalytic Decomposition | |
X-ray Photoelectron Spectroscopy of Metal-Exchanged Na-ZSM-5 Zeolites | |
NO+CO Reaction on Rh and CeRh-SiO2 Catalyst | |
In Situ IR and Temperature-Programmed Reaction Study | |
NO Reduction by CO and H2 over a Pt-CoO x-SiO2 Catalyst | |
Effect of CoO x on Activity and Selectivity | |
The Influence of Activated Carbon Type on NOx Adsorptive Capacity | |
Applications of Urea-Based Selective Noncatalytic Reduction in Hydrocarbon Processing Industry | |
Table of Contents provided by Publisher. All Rights Reserved. |
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