Published 1988 | Version v1
Journal article

Radiation effects of paraffins as polymer model compounds. Pt. 1:

  • 1. Japan Atomic Energy Research Inst., Takasaki, Gunma. Takasaki Radiation Chemistry Research Establishment
  • 2. Tokyo Univ. (Japan). Faculty of Engineering

Description

Radiation yields of gases from n-paraffins of n-C20H42 to n-C24H50 and squalane (C30H62) as polymer model compounds, in the liquid and solid phases were analyzed by gas chromatography. G(H2) in the liquid phase was 3.2-3.3 for all samples and found to be almost independent of the chemical structure and molecular weight; G(H2) in the crystalline state of n-paraffins was 2.2-2.5 at -77 to 250C. G(CH4) was about 1% of G(H2) for n-paraffins and increased with the methyl content of the branched chain for squalane. G(C2H6) in the liquid phase was about 0.05 for n-paraffins, but G(C2H6) in the crystalline state was found to depend on the crystal structure; that is, nearly zero for triclinic of an even number of carbons and about 0.02 for orthorhombic of an odd number. C3H8 and C2H4(C3H6 in squalane) were observed only in the liquid phase of n-paraffins and in glass and the liquid phase of squalane; G(C3H8)=0.03-0.05 and G(C2H4 or C3H6)= 0.01-0.03. But the C4-compounds were not detected in any phase of any of the samples. Chain scission by radiation is supposed to proceed mainly at chain end carbons until the third carbon in the liquid phase of n-paraffins, only at the chain end carbon of the crystalline surface in triclinic crystals and at chain end carbons until the second carbon in orthorhombic crystals. These chain scission phenomena in the liquid phase and crystalline state of n-paraffins and in the liquid phase of squalane would be analogous to those in the amorphous and crystalline states of polyethylene, and in amorphous ethylene-propylene copolymer, respectively. (author)

Additional details

Additional titles

Subtitle (English)
Evolved gas analysis

Publishing Information

Journal Title
Radiation Physics and Chemistry
Journal Volume
32
Journal Issue
6
Series
Radiat. Phys. Chem.
Journal Page Range
753-760
ISSN
0146-5724
CODEN
RPCHD