Amazon cover image
Image from Amazon.com

Catalysis and automotive pollution control IV : proceedings of the Fourth International Symposium (CAPoC4), Brussels, Belgium, April 9-11, 1997 / editors, N. Kruse, A. Frennet, and J.-M. Bastin.

By: Contributor(s): Series: Studies in surface science and catalysis ; 116.1998Description: 1 online resource (xviii, 699 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780444827951
  • 0444827951
  • 9780080528618
  • 0080528619
Subject(s): Genre/Form: Additional physical formats: Print version:: Catalysis and automotive pollution control IV.LOC classification:
  • TL214.P6 C368 1997eb
Online resources:
Contents:
Foreword. Introductory remarks and outlook. Acknowledgments. Financial support. Organizing committee. Scientific advisory board. General Lectures. Global trends in motor vehicle pollution control: A 1997 update (M.P. Walsh). Contribution of fossil fuels and air pollutants emissions in Belgium since 1980. The role traffic (W. Hecq). Auto emissions after 2000: The challenge for the catalyst industry (R.A. Searles). Diesel engine development routes towards very low emissions (P.L. Herzog). Three Way Catalysts (7 papers). Catalyst Ageing -- Poisoning (7 papers). DeNO<INF>x</INF> Noble Catalysts (9 papers). DeNO<INF>x</INF> Base Catalysts (8 papers). Kinetics -- Mechanisms (5 papers). Model Systems/Studies (2 papers). Miscellaneous (7 papers). Storage: NO<INF>x</INF> and Oxygen (9 papers). Diesel (6 papers). Author Index. List of Participants.
Summary: In spite of the energy crises and the recession, there has been a global, explosive growth in the amount of motor vehicles. In the past 50 years, the amount has increased from 50 to 700 million vehicles. For economical reasons they will probably continue to be used for a considerable number of years, despite the poor yield of internal combustion engines resulting in the inevitable production of some gaseous pollutants. The subsequent increase of gaseous pollutants in our atmosphere caused by exhaust gas from automobiles has enhanced the problem of the elimination of these pollutants produced by internal combustion engines. Catalysis has proven to be the best solution to lower the content of exhaust gas in pollutants. As its predecessors, CAPoC4 proved to be a suitable platform for discussing technological improvements and developments along with future perspectives and challenges. In the light of new results and further legislative regulations, the following topics were intensely discussed: & bull; low light-off behaviour based on improved catalysts and substrate formulations & bull; efficient adsorber systems for storage of hydrocarbon emissions & bull; electrically heated catalyst systems ahead the main catalyst or, alternatively, close coupled catalysts (at the manifold of the engine) & bull; lean DeNO<INF>x</INF> catalysts allowing for decomposition of NO<INF>x</INF> in the oxygen-rich exhaust of direct injection gasoline engines and high speed injection diesel engines or, alternatively, NO<INF>x</INF> trapping/reduction in a hybrid approach & bull; collection and destruction of dry particulates or soot. There is no doubt that clean vehicle technology is a vital part of improving air quality. Challenges remain and call for technological answers. Catalytic air pollution control is still an area providing a considerable incentive for innovative work.
Item type: eBooks
Star ratings
    Average rating: 0.0 (0 votes)
No physical items for this record

In spite of the energy crises and the recession, there has been a global, explosive growth in the amount of motor vehicles. In the past 50 years, the amount has increased from 50 to 700 million vehicles. For economical reasons they will probably continue to be used for a considerable number of years, despite the poor yield of internal combustion engines resulting in the inevitable production of some gaseous pollutants. The subsequent increase of gaseous pollutants in our atmosphere caused by exhaust gas from automobiles has enhanced the problem of the elimination of these pollutants produced by internal combustion engines. Catalysis has proven to be the best solution to lower the content of exhaust gas in pollutants. As its predecessors, CAPoC4 proved to be a suitable platform for discussing technological improvements and developments along with future perspectives and challenges. In the light of new results and further legislative regulations, the following topics were intensely discussed: & bull; low light-off behaviour based on improved catalysts and substrate formulations & bull; efficient adsorber systems for storage of hydrocarbon emissions & bull; electrically heated catalyst systems ahead the main catalyst or, alternatively, close coupled catalysts (at the manifold of the engine) & bull; lean DeNO<INF>x</INF> catalysts allowing for decomposition of NO<INF>x</INF> in the oxygen-rich exhaust of direct injection gasoline engines and high speed injection diesel engines or, alternatively, NO<INF>x</INF> trapping/reduction in a hybrid approach & bull; collection and destruction of dry particulates or soot. There is no doubt that clean vehicle technology is a vital part of improving air quality. Challenges remain and call for technological answers. Catalytic air pollution control is still an area providing a considerable incentive for innovative work.

Foreword. Introductory remarks and outlook. Acknowledgments. Financial support. Organizing committee. Scientific advisory board. General Lectures. Global trends in motor vehicle pollution control: A 1997 update (M.P. Walsh). Contribution of fossil fuels and air pollutants emissions in Belgium since 1980. The role traffic (W. Hecq). Auto emissions after 2000: The challenge for the catalyst industry (R.A. Searles). Diesel engine development routes towards very low emissions (P.L. Herzog). Three Way Catalysts (7 papers). Catalyst Ageing -- Poisoning (7 papers). DeNO<INF>x</INF> Noble Catalysts (9 papers). DeNO<INF>x</INF> Base Catalysts (8 papers). Kinetics -- Mechanisms (5 papers). Model Systems/Studies (2 papers). Miscellaneous (7 papers). Storage: NO<INF>x</INF> and Oxygen (9 papers). Diesel (6 papers). Author Index. List of Participants.

Includes bibliographical references and index.

Print version record.

Elsevier ScienceDirect All Books

Copyright © 2020 Alfaisal University Library. All Rights Reserved.
Tel: +966 11 2158948 Fax: +966 11 2157910 Email:
librarian@alfaisal.edu