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Formation of bisphenol A by thermal degradation of poly(bisphenol A carbonate).

Chemosphere (2010-07-16)
Yuki Kitahara, Seiji Takahashi, Masamichi Tsukagoshi, Toshihiro Fujii
RESUMEN

The thermal decomposition of poly(bisphenol A carbonate) (PoC) results in the formation of the endocrine disruptor bisphenol A (BPA). In the present work, we investigated the kinetics of the thermal decomposition of PoC, and the subsequent decomposition of BPA, under pyrolysis conditions and in the presence of oxygen by using infrared image furnace-ion attachment mass spectrometry. The decomposition of PoC obeyed Arrhenius kinetics, which allowed us to determine the activation energy (E(a)) for thermal decomposition to BPA from Arrhenius plots. From the selected ion monitoring curves for BPA, E(a) for thermal decomposition in a nitrogen atmosphere was calculated to be 133.2 kcal mol(-1), whereas E(a) for oxidative thermal decomposition was calculated to be approximately 35% lower (86.5 kcal mol(-1)).

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Sigma-Aldrich
Poly(Bisphenol A carbonate), average Mw ~45,000 by GPC
Sigma-Aldrich
Poly(Bisphenol A carbonate), melt index 10-12 g/10 min (300°C/1.2kg)
Supelco
Poly(Bisphenol A carbonate), analytical standard
Supelco
Poly(Bisphenol A carbonate), analytical standard, molecular weight series