Published December 1992 | Version v1
Journal article

Protection in radiolysis of n-hexadecane: Pt. 2

  • 1. Tokyo Univ. (Japan). Faculty of Engineering
  • 2. Nippon Oil Company, Yokohama (Japan). Central Technical Research Lab.

Description

Protection effect of aromatic (naphthalene, phenanthrene) and hydroaromatic (tetralin, octahydrophenanthrene) compounds in irradiated liquid alkane has been investigated as a model experiment for the radiolysis of polymers. Liquid n-hexadecane has been selected as the model linear amorphous polymer and the protection effect has been studied by analyzing the radiolysis products. In the presence of additives, degradation of n-hexadecane, reduction of radiolysis products, including H2 evolution, and selective degradation of the additive have been observed. Energy transfer (excitation and charge) to the additive reduces the solvent excitation which is the precursor or the radiolysis products. The additive reacts with the solvent molecules according to its reactivity to form adduct compounds. Mass analysis shows that these adduct compounds have a smaller number of double bonds in their aromatic rings due to hydrogenation. Aromatic compounds are more reactive than hydroaromatic compounds towards n-hexadecane and their adducts consume more hydrogen than those of the hydroaromatic compounds, and therefore aromatic compounds reduce gas formation more effectively than hydroaromatic compounds. From the effect of aromatic compounds, it is concluded that hexadecene is produced neither by H2 elimination from the lowest excited state of n-hexadecane nor by disproportionation of n-hexadexyl radicals, but is mainly produced directly from the decomposition of the excited cations of n-hexadecane. (Author)

Additional details

Additional titles

Subtitle (English)
Radiolysis of n-hexadecane in the presence of additives

Publishing Information

Journal Title
Radiation Physics and Chemistry
Journal Volume
40
Journal Issue
6
Journal Page Range
p. 451-459.
ISSN
0146-5724
CODEN
RPCHDM