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Low temperature SPME device: A convenient and effective tool for investigating photodegradation of volatile analytes

机译:低温SPME装置:一种方便有效的工具,用于研究挥发性分析物的光降解

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摘要

Hexachlorobenzene (HCB), a model volatile compound, was exposed to UV irradiation (16W, 254nm) after being sorbed in an internally cooled or low temperature solid-phase microextraction (LT-SPME) fibre. Photolysis took place directly on the polydimethylsiloxane coating of the LT-SPME fibre, yielding an "in situ" generation of photoproducts. Maintaining the temperature of the cold fibre at 0°C eliminated, for the first time, problems of analyte losses due to volatilisation, inherent to the conventional room temperature photo-SPME studies. During the present studies, nearly complete photorerhoval of HCB could be achieved within 20min of irradiation. Photoreduction through photodechlorination was shown to be the main decay pathway in which lesser chlorinated congeners were sequentially formed as intermediates. Accordingly, initial generation of pentachlorobenzene was followed in order from 1,2,3,5-tetrachlorobenzene, 1,2,4,5-tetrachlorobenzene and 1,3,5-trichlorobenzene. The present findings were in agreement with previously reported results. Overall, the use of the LT-SPME device as a photpreaction support not only eliminated analyte losses but also greatly facilitated photochemical investigations of volatile compounds in general.
机译:六氯苯(HCB)是一种挥发性模型化合物,在被内部冷却或低温固相微萃取(LT-SPME)纤维吸附后,暴露于UV辐射(16W,254nm)中。光解直接发生在LT-SPME纤维的聚二甲基硅氧烷涂层上,产生“原位”生成的光产物。将冷纤维的温度保持在0°C,首次消除了常规室温光SPME研究固有的由于挥发引起的分析物损失问题。在目前的研究中,可以在照射后20min内完成HCB的几乎完全光化学循环。通过光脱氯进行的光还原被证明是主要的衰变途径,其中较少的氯化同类物依次形成为中间体。因此,按照1,2,3,5-四氯苯,1,2,4,5-四氯苯和1,3,5-三氯苯的顺序依次产生五氯苯。目前的发现与先前报道的结果一致。总体而言,将LT-SPME装置用作光热支持剂不仅可以消除分析物损失,而且总体上可以极大地促进对挥发性化合物的光化学研究。

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