Urea-SCR Technology for deNOx After Treatment of Diesel Exhausts / Fundamental and Applied Catalysis (PDF)
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Urea-SCR Technology for deNOx After Treatment of Diesel Exhausts presents a complete overview of the selective catalytic reduction of NOx by ammonia/urea. The book starts with an illustration of the technology in the framework of the current context (legislation, market, system configurations), covers the fundamental aspects of the SCR process (catalysts, chemistry, mechanism, kinetics) and analyzes its application to useful topics such as modeling of full scale monolith catalysts, control aspects, ammonia injections systems and integration with other devices for combined removal of pollutants.
Enrico Tronconi is Full Professor of Chemical Engineering at Politecnico di Milano, Italy. His main research interests are in the area of Catalytic Reaction Engineering, with emphasis on industrial chemical processes for energy conversion and for environmental protection. His most recent work is focused on DeNOx after treatment technologies for vehicles, as well as on fundamental and engineering aspects concerning the development of novel structured catalysts and reactors. Tronconi has authored or co-authored over 180 scientific publications in international journals and is the inventor of 10 patents.
- 2014, 2014, 716 Seiten, Englisch
- Herausgegeben: Isabella Nova, Enrico Tronconi
- Verlag: Springer-Verlag GmbH
- ISBN-10: 1489980717
- ISBN-13: 9781489980717
- Erscheinungsdatum: 14.03.2014
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- Größe: 26 MB
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“An important up-to-date survey of the state of SCR science and technology that over recent years has undergone tremendous advances. … will be of value to researchers working in the SCR area as well as a reference for students in chemistry, catalysis and chemical engineering. The editors are to be congratulated for bringing together so many eminent contributors and completing such a major endeavour. This book should therefore be made available in academic and industrial research libraries … .” (Martyn V. Twigg, Johnson Matthey Technology Review, Vol. 59 (3), 2015)
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