E-Book, Englisch, 716 Seiten, eBook
Nova / Tronconi Urea-SCR Technology for deNOx After Treatment of Diesel Exhausts
1. Auflage 2014
ISBN: 978-1-4899-8071-7
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark
E-Book, Englisch, 716 Seiten, eBook
Reihe: Fundamental and Applied Catalysis
ISBN: 978-1-4899-8071-7
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark
Zielgruppe
Professional/practitioner
Autoren/Hrsg.
Weitere Infos & Material
Selective Catalytic Reduction and Related Technologies for Mobile Applications.- Selective Catalytic Reduction Technology for Off-Highway (Large Diesel Engine) Applications.- Vanadia-based Catalysts for Mobile Selective Catalytic Reduction.- Fe-zeolite Catalysts for NH3-SCR of NOx: Functionality, Durability and Deactivation Mechanisms.- Cu/zeolite SCR Catalysts for Automotive Diesel NOx Emission Control.- Low-temperature NH3-SCR of NOx over Zeolites and Metal Oxides Based Catalysts and Recent Developments of H2 SCR.- Active Sites for Selective Catalytic Reduction.- Mechanistic Aspects of the NO-NH3-O2 Reacting System.- The Role of NO2 in the NH3-SCR Catalytic Chemistry.- Kinetics of NH3-SCR Reactions over V2O5 – WO3/TiO2 Catalysts.- Lean NOx Reduction by NH3 on Fe-Exchanged Zeolite and Layered Fe/Cu Zeolite Catalysts.- Kinetic Modeling of Ammonia Selective Catalytic Reduction for Cu-Zeolite Catalysts.- Reactor Models for Flow-through and Wall-flow Converters.- Diesel Engine SCR Systems: Modeling, Measurements and Control.- DEF Systems and After treatment Architecture Considerations.- Ammonia storage and release in SCR systems for mobile applications.- Modelling the gas flow process inside exhaust systems: one-dimensional and multi-dimensional approaches.- Dual-layer Ammonia Slip Catalysts for automotive SCR exhaust gas after treatment: an experimental and modelling study.- NSR-SCR combined systems: production and use of ammonia.- Integration of SCR Functionality into Diesel Particulate Filters.- Development of the 2010 Ford Diesel Truck Catalyst System.- Model-based approaches to exhaust after treatment system development.