Analytical Steady State Solution Using The Laplace Transform

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  • Homogeneous And Heterogeneous Reactions Of N-C5H11O, N-C5H10OH And OOCsHioOH Radicals In Oxygen: Analytical Steady State Solution Using The Laplace Transform
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Homogeneous And Heterogeneous Reactions Of N-C5H11O, N-C5H10OH And OOCsHioOH Radicals In Oxygen: Analytical Steady State Solution Using The Laplace Transform

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Price

Free (open access)

Transaction

WIT Transactions on Ecology and the Environment

Volume

35

Pages

5

Published

1999

Size

393 kb

Paper DOI

10.2495/EURO990361

Copyright

WIT Press

Author(s)

Olivier Perrin, Adolphe Heiss, Frederic Doumenc and Krikor Sahetchian

Abstract

Homogeneous and Heterogeneous Reactions of /f-CsHnO, /i-CsHioOH and OOCsHioOH Radicals in Oxygen: Analytical Steady State Solution using the Laplace Transform A contribution to subproject CMD Olivier Perrin, Adolphe Heiss, Frederic Doumenc and Krikor Sahetchian Laboratoire de Mecanique Physique, CNRS URA 879, UniversiteP. &M. Curie, Paris 6, 2, Place de la Gare de Ceinture, 78210 Saint-Cyr I'Ecole, France Introduction The formation of photochemical tropospheric ozone, and other pollutants, is for the most part due to reactions in which VOCs and tropospheric NO% are involved. Those VOCs, emitted into the troposphere, originate from ever- growing road traffic, industrial use of solvents etc., and among them (> €4) species predominate. However, the corresponding chemical mechanisms are uncertain ; some questions relevant to the formation of ozone are misunderstood an

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Other papers in this volume

Science And Support Of Policy Development Opening Address By The Chairman Of The DEC

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The Contribution Of The German Tropospheric Research Programme

Tropospheric Trace Gas Observations From Space

Heterogeneous Processes To Be Included In Chemical Mechanisms: Knowns And Unknowns

Peroxy Radicals As Intermediates In The Tropospheric Oxidation Of Volatile Organic Compounds

The Schauinsland Ozone Precursor Experiment: SLOPE

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