Department of Environmental Engineering, Technical University of Crete, GR-73100 Chania, Greece.
Anal Chim Acta. 2012 Sep 12;742:90-6. doi: 10.1016/j.aca.2012.06.012. Epub 2012 Jun 17.
Here, we report for the first time a laboratory investigation into the photochemical degradation of 2,2',4,4',6-pentabromodiphenyl ether (BDE-100) in ice solid samples using an artificial UV light source. Solid phase microextraction (SPME) was used as a sensitive extraction technique for monitoring trace amounts of the hydrophobic pollutant and its photoproducts. The results showed that ice photolysis kinetics for BDE-100 is similar to the one observed in the aqueous counterpart. The eight photoproducts identified consisted of brominated diphenyl ethers with lower bromine content and polybrominated dibenzofurans, suggesting two important photodegradation pathways for BDE-100 in ice solid samples: (i) stepwise reductive debromination and (ii) intramolecular elimination of HBr. Similarities in photochemical product arrays observed in the ice and water photolysis of BDE-100 were attributed to a similar mechanism for photochemical decomposition for both phases. Possible involvement of the water molecules in the reactions has been excluded by performing photolysis in D(2)O ice solid and water samples. Taking advantage of the high preconcentration factor obtained with SPME at low temperatures, a SPME fiber cooled with liquid carbon dioxide down to 0°C was used as a photoreaction support for BDE-100 allowing the identification of a greater number of photoproducts.
在这里,我们首次报道了利用人工紫外光源研究 2,2',4,4',6-五溴二苯醚(BDE-100)在冰固相样品中光化学降解的实验室研究。固相微萃取(SPME)被用作监测疏水性污染物及其光产物痕量的灵敏提取技术。结果表明,BDE-100 的冰光解动力学与在水相中的观察结果相似。鉴定出的 8 种光产物由含溴量较低的溴化二苯醚和多溴化二苯并呋喃组成,这表明 BDE-100 在冰固相样品中有两种重要的光降解途径:(i)逐步还原脱溴和(ii)HBr 的分子内消除。BDE-100 在冰和水中光解中观察到的光化学产物谱的相似性归因于两种相的光化学分解的相似机制。通过在 D(2)O 冰固相和水样品中进行光解,排除了水分子在反应中可能的参与。利用 SPME 在低温下获得的高浓缩因子,将冷却至 0°C 的液态二氧化碳冷却的 SPME 纤维用作 BDE-100 的光反应支持物,从而能够鉴定出更多的光产物。