Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes:
The fast detection of explosives from the vapor phase would be one way to enhance the protection of society against terrorist attacks. Up to now the problem of detection of explosives, especially the location of explosives whether at large areas e. g. station halls, theaters or hidden in cars, aircr...
Gespeichert in:
Weitere Verfasser: | , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Dordrecht
Springer Netherlands
2004
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Schriftenreihe: | NATO Science Series, Series II: Mathematics, Physics and Chemistry
167 |
Schlagworte: | |
Online-Zugang: | UBT01 Volltext |
Zusammenfassung: | The fast detection of explosives from the vapor phase would be one way to enhance the protection of society against terrorist attacks. Up to now the problem of detection of explosives, especially the location of explosives whether at large areas e. g. station halls, theaters or hidden in cars, aircraft cargo, baggage or explosives hidden in crowds e. g. suicide bombers or bombs in bags has not been solved. Smelling of explosives like dogs do seems to be a valuable tool for a security chain. In general different strategies can be adopt to the basic problem of explosive detection: • bulk detection • vapor detection Normally meetings cover both aspects and applications of the detection. Even though both methods might fulfill special aspects of a general security chain the underlying scientific questions differ strongly. Because of that the discussions of the scientists and practitioners from the different main directions are sometimes only less specific. Therefore the NATO Advisory Panel in Security-Related Civil Science and Technology proposed a small series of NATO ARW's which focuses on the different scientific aspects of explosives detection methods. This book is based on material presented at the first NATO ARW of this series in Moscow which covered the topic: Vapor and trace detection of explosives. The second ARW was held in St. Petersburg and treated the topic Bulk detection methods. The third workshop was held in Warwick and focused on electronic noses which cover a somewhat different aspect of vapor detection |
Beschreibung: | 1 Online-Ressource (IX, 152 p. 124 illus) |
ISBN: | 9781402027161 |
DOI: | 10.1007/978-1-4020-2716-1 |
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dewey-ones | 543 - Analytical chemistry |
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discipline | Chemie / Pharmazie |
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indexdate | 2024-07-10T08:10:06Z |
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language | English |
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series2 | NATO Science Series, Series II: Mathematics, Physics and Chemistry |
spelling | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes edited by Michael Krausa, Aleksey Alekseyvitch Reznev Dordrecht Springer Netherlands 2004 1 Online-Ressource (IX, 152 p. 124 illus) txt rdacontent c rdamedia cr rdacarrier NATO Science Series, Series II: Mathematics, Physics and Chemistry 167 The fast detection of explosives from the vapor phase would be one way to enhance the protection of society against terrorist attacks. Up to now the problem of detection of explosives, especially the location of explosives whether at large areas e. g. station halls, theaters or hidden in cars, aircraft cargo, baggage or explosives hidden in crowds e. g. suicide bombers or bombs in bags has not been solved. Smelling of explosives like dogs do seems to be a valuable tool for a security chain. In general different strategies can be adopt to the basic problem of explosive detection: • bulk detection • vapor detection Normally meetings cover both aspects and applications of the detection. Even though both methods might fulfill special aspects of a general security chain the underlying scientific questions differ strongly. Because of that the discussions of the scientists and practitioners from the different main directions are sometimes only less specific. Therefore the NATO Advisory Panel in Security-Related Civil Science and Technology proposed a small series of NATO ARW's which focuses on the different scientific aspects of explosives detection methods. This book is based on material presented at the first NATO ARW of this series in Moscow which covered the topic: Vapor and trace detection of explosives. The second ARW was held in St. Petersburg and treated the topic Bulk detection methods. The third workshop was held in Warwick and focused on electronic noses which cover a somewhat different aspect of vapor detection Chemistry Analytical Chemistry Physical Chemistry Safety in Chemistry, Dangerous Goods Industrial Chemistry/Chemical Engineering Analytical chemistry Physical chemistry Chemical engineering Krausa, Michael edt Reznev, Aleksey Alekseyvitch edt Erscheint auch als Druck-Ausgabe 9781402027154 https://doi.org/10.1007/978-1-4020-2716-1 Verlag URL des Erstveröffentlichers Volltext |
spellingShingle | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes Chemistry Analytical Chemistry Physical Chemistry Safety in Chemistry, Dangerous Goods Industrial Chemistry/Chemical Engineering Analytical chemistry Physical chemistry Chemical engineering |
title | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes |
title_auth | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes |
title_exact_search | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes |
title_full | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes edited by Michael Krausa, Aleksey Alekseyvitch Reznev |
title_fullStr | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes edited by Michael Krausa, Aleksey Alekseyvitch Reznev |
title_full_unstemmed | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes edited by Michael Krausa, Aleksey Alekseyvitch Reznev |
title_short | Vapour and Trace Detection of Explosives for Anti-Terrorism Purposes |
title_sort | vapour and trace detection of explosives for anti terrorism purposes |
topic | Chemistry Analytical Chemistry Physical Chemistry Safety in Chemistry, Dangerous Goods Industrial Chemistry/Chemical Engineering Analytical chemistry Physical chemistry Chemical engineering |
topic_facet | Chemistry Analytical Chemistry Physical Chemistry Safety in Chemistry, Dangerous Goods Industrial Chemistry/Chemical Engineering Analytical chemistry Physical chemistry Chemical engineering |
url | https://doi.org/10.1007/978-1-4020-2716-1 |
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