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Quantitative Analysis of Mixed Halogen Dioxins and Furans in Fire Debris Utilizing Atmospheric Pressure Ionization Gas Chromatography-Triple Quadrupole Mass Spectrometry

机译:大气压电离气相色谱-三重四极杆质谱法定量分析火屑中卤素二恶英和呋喃的含量

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Residential and commercial fires generate a complex mixture of volatile, semivolatile, and nonvolatile compounds. This study focused on the semionvolatile components of fire debris to better understand firefighter exposure risks. Using the enhanced sensitivity of gas chromatography coupled to atmospheric pressure ionization-tandem mass spectrometry (APGC-MS/MS), complex fire debris samples collected from simulation fires were analyzed for the presence of potentially toxic polyhalogenated dibenzo-p-dioxins and dibenzofurans (PXDD/Fs and PBDD/Fs). Extensive method development was performed to create multiple reaction monitoring (MRM) methods for a wide range of PXDD/Fs from dihalogenated through hexa-halogenated homologue groups. Higher halogenated compounds were not observed due to difficulty eluting them off the long column used for analysis. This methodology was able to identify both polyhalogenated (mixed bromo-/chloro- and polybromo-) dibenzo-p-dioxins and dibenzofurans in the simulated burn study samples collected, with the dibenzofuran species being the dominant compounds in the samples. Levels of these compounds were quantified as total homologue groups due to the limitations of commercial congener availability. Concentration ranges in household simulation debris were observed at 0.01-5.32 ppb (PXDFs) and 0.18-82.11 ppb (PBDFs). Concentration ranges in electronics simulation debris were observed at 0.10-175.26 ppb (PXDFs) and 0.33-9254.41 ppb (PBDFs). Samples taken from the particulate matter coating the firefighters' helmets contained some of the highest levels of dibenzofurans, ranging from 4.10 ppb to 2.35 ppm. The data suggest that firefighters and first responders at fire scenes are exposed to a complex mixture of potentially hundreds to thousands of different polyhalogenated dibenzo-p-dioxins and dibenzofurans that could negatively impact their health.
机译:住宅和商业火灾会产生挥发性,半挥发性和非挥发性化合物的复杂混合物。这项研究的重点是火灾碎片的半/不挥发成分,以更好地了解消防员的暴露风险。使用增强的气相色谱法结合大气压电离串联质谱法(APGC-MS / MS),分析了从模拟火灾中收集的复杂火屑样品,以分析是否存在潜在毒性的多卤代二苯并-对-二恶英和二苯并呋喃(PXDD) / Fs和PBDD / Fs)。进行了广泛的方法开发,以创建多种反应监测(MRM)方法,用于从二卤代到六卤代同源基团的多种PXDD / F。由于难以从用于分析的长色谱柱上洗脱出较高的卤代化合物,因此未观察到。该方法能够在收集的模拟燃烧研究样品中鉴定出多卤代(混合的溴/氯和多溴-和多溴-二溴对二恶英)和二苯并呋喃,其中二苯并呋喃是样品中的主要化合物。由于商业同类物的可用性的限制,将这些化合物的水平量化为总的同源基团。观察到的家庭模拟碎片中的浓度范围为0.01-5.32 ppb(PXDFs)和0.18-82.11 ppb(PBDFs)。电子仿真碎片中的浓度范围为0.10-175.26 ppb(PXDFs)和0.33-9254.41 ppb(PBDFs)。从覆盖在消防员头盔上的颗粒物中抽取的样品中,苯并呋喃的含量最高,为4.10 ppb至2.35 ppm。数据表明,消防人员和消防现场的急救人员接触了可能数百至数千种不同的多卤代二苯并-对-二恶英和二苯并呋喃的复杂混合物,这些物质可能对其健康产生负面影响。

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