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Long-term performance of poly(vinyl chloride) cables, Part 2 : Migration of plasticizer

Ekelund, Maria (author)
KTH,Fiber- och polymerteknologi
Azhdar, Bruska (author)
KTH,Fiber- och polymerteknologi
Hedenqvist, Mikael S. (author)
KTH,Fiber- och polymerteknologi
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Gedde, Ulf W (author)
KTH,Fiber- och polymerteknologi
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 (creator_code:org_t)
Elsevier BV, 2008
2008
English.
In: Polymer degradation and stability. - : Elsevier BV. - 0141-3910 .- 1873-2321. ; 93:9, s. 1704-1710
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Cable samples with plasticized poly(vinyl chloride) insulations were aged in air at temperatures between 80 and 155 degrees C. The concentrations of the plasticizer (di-(2-ethylhexyl) phthalate, DEHP) in the insulations of the aged cables were determined by extraction of samples in tetrahydrofuran followed by analysis of the extract by liquid chromatography. The plasticizer concentration data for different ageing times were analysed by numerical methods, fitting Fick's second law with a concentration-dependent diffusivity. The analysis showed that the transport of the plasticizer to the surrounding air phase was controlled by diffusion at 120 and 155 degrees C with an activation energy of 89 kJ mol(-1). The evaporation of the plasticizer from the outer boundary was rate controlling at lower temperatures (<= 100 degrees C), The rate of evaporation was initially constant and independent of the plasticizer concentration at both 80 and 100 degrees C. The activation energy for the initial DEHP loss rate from PVC at these temperatures was the same as that obtained for evaporation of pure DEHP on a glass plate at 60-100 degrees C measured by thermogravimetry, 98 2 kJ mol-1. Furthermore, the evaporation rate of pure DEHP on a glass plate was also of the same order of magnitude as the rate of plasticizer loss from the cable insulation. Extrapolation of the plasticizer loss rate data (from the cable at 80 degrees C and from pure liquid DEHP at temperatures between 60 and 100 IQ to 25 degrees C predicted a maximum loss of plasticizer of 1% over 25 years. This is in accordance with earlier presented data and with the data presented in this report.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Kemiteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Chemical Engineering (hsv//eng)

Keyword

long-term prediction
evaporation
plasticizer migration
poly(vinyl chloride)
BRANCHED POLYETHYLENE
PHTHALATE
POLYMERS
PVC
PARAMETERS
TRANSPORT
PRESSURE
KINETICS
HPLC
Chemical engineering
Kemiteknik

Publication and Content Type

ref (subject category)
art (subject category)

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By the author/editor
Ekelund, Maria
Azhdar, Bruska
Hedenqvist, Mika ...
Gedde, Ulf W
About the subject
ENGINEERING AND TECHNOLOGY
ENGINEERING AND ...
and Chemical Enginee ...
Articles in the publication
Polymer degradat ...
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Royal Institute of Technology

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