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Chemical kinetics / Combustion engineering / Iron compounds / Iron pentacarbonyl / Flame / Diffusion flame / Premixed flame / Reaction rate / Iron / Chemistry / Fire / Chemical engineering


NUMERICAL STUDY OF THE INHIBITION OF PREMIXED AND DIFFUSION FLAMES BY IRON PENTACARBONYL* M.D. Rumminger†, D. Reinelt‡, V. Babushok, and G.T. Linteris§ National Institute of Standards and Technology, Gaithersburg MD
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Document Date: 2011-07-01 08:41:33


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City

Ludwigshafen / /

Company

Fe and CO / BASF / /

Country

Germany / United States / /

/

Facility

National Institute of Standards and Technology / G.T. Linteris§ National Institute of Standards and Technology / /

IndustryTerm

heterogeneous chemical effects / chemical reactions / gas-phase inhibition mechanism / decomposition products / metal species / gas-phase metallic compounds / chemical mechanism / present gas-phase mechanism / pure gas-phase effect / gas temperature / gas-phase scavenging reactions / gas-phase inhibition mechanism involving catalytic removal / active gas-phase iron-containing molecules / chemical / chemical effect / chemicals / gas-kinetic rates / activation energy / homogeneous gas-phase chemistry / gas-phase model / /

Organization

National Institute of Standards and Technology / National Research Council / /

Position

Corresponding author / /

Technology

condensation / ATM / recombination / /

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