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Gas/wall collision efficiencies in very low pressure pyrolysis experiments

✍ Scribed by Paul G. Dick; Robert G. Gilbert; Keith D. King


Publisher
John Wiley and Sons
Year
1984
Tongue
English
Weight
434 KB
Volume
16
Category
Article
ISSN
0538-8066

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✦ Synopsis


A readily applicable empirical formula is obtained for the collisional efficiency for energy transfer between a highly vibrationally excited reactant and a seasoned (usually quartz) wall, in terms of the molecular weight, potential well depth and dipole moment of the reactant. This expression is used to examine corrections due to nonunit wall collision efficiency in the high-pressure rate parameters obtained from very low-pressure pyrolysis experiments. It is found that these corrections are up to ca. 2 5 kJ/mol in the high-pressure activation energy and a factor of ca. 2 in the high-pressure frequency factor, for molecules with molecular weight less than ca. 100 and where experiments are carried out at temperatures exceeding 1000 K.


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