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Quantification of hydrogen peroxide during the low-temperature oxidation of alkanes

Identifieur interne : 000155 ( Pmc/Corpus ); précédent : 000154; suivant : 000156

Quantification of hydrogen peroxide during the low-temperature oxidation of alkanes

Auteurs : Chiheb Bahrini ; Olivier Herbinet ; Pierre-Alexandre Glaude ; Coralie Schoemaecker ; Christa Fittschen ; Frédérique Battin-Leclerc

Source :

RBID : PMC:3586669

Abstract

The first reliable quantification of hydrogen peroxide (H2O2) formed during the low temperature oxidation of an organic compound has been achieved thanks to a new system that couples a jet stirred reactor to a detection by continuous wave cavity ring-down spectroscopy (cw-CRDS) in the near infrared. The quantification of this key compound for hydrocarbon low-temperature oxidation regime has been obtained under conditions close to those actually observed before the autoignition. The studied hydrocarbon was n-butane, the smallest alkane which has an oxidation behaviour close to that of the species present in gasoline and diesel fuels.


Url:
DOI: 10.1021/ja305200h
PubMed: 22746212
PubMed Central: 3586669

Links to Exploration step

PMC:3586669

Le document en format XML

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<name sortKey="Battin Leclerc, Frederique" sort="Battin Leclerc, Frederique" uniqKey="Battin Leclerc F" first="Frédérique" last="Battin-Leclerc">Frédérique Battin-Leclerc</name>
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<name sortKey="Battin Leclerc, Frederique" sort="Battin Leclerc, Frederique" uniqKey="Battin Leclerc F" first="Frédérique" last="Battin-Leclerc">Frédérique Battin-Leclerc</name>
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<p id="P1">The first reliable quantification of hydrogen peroxide (H
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O
<sub>2</sub>
) formed during the low temperature oxidation of an organic compound has been achieved thanks to a new system that couples a jet stirred reactor to a detection by continuous wave cavity ring-down spectroscopy (cw-CRDS) in the near infrared. The quantification of this key compound for hydrocarbon low-temperature oxidation regime has been obtained under conditions close to those actually observed before the autoignition. The studied hydrocarbon was
<italic>n</italic>
-butane, the smallest alkane which has an oxidation behaviour close to that of the species present in gasoline and diesel fuels.</p>
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LRGP, Université de Lorraine, CNRS, ENSIC, BP 20451, 1 rue Grandville, 54001 Nancy, France</aff>
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PC2A, University Lille 1, CNRS, Cité Scientifique, Bât. C11, 59655 Villeneuve d’Ascq, France</aff>
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<abstract>
<p id="P1">The first reliable quantification of hydrogen peroxide (H
<sub>2</sub>
O
<sub>2</sub>
) formed during the low temperature oxidation of an organic compound has been achieved thanks to a new system that couples a jet stirred reactor to a detection by continuous wave cavity ring-down spectroscopy (cw-CRDS) in the near infrared. The quantification of this key compound for hydrocarbon low-temperature oxidation regime has been obtained under conditions close to those actually observed before the autoignition. The studied hydrocarbon was
<italic>n</italic>
-butane, the smallest alkane which has an oxidation behaviour close to that of the species present in gasoline and diesel fuels.</p>
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<kwd-group>
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