Larroque Virginie, Desauziers Valérie, Mocho Pierre
Laboratoire Génie de l'Environnement Industriel, Ecole des Mines d'Alès, Hélioparc - 2 avenue Pierre Angot, 64053, Pau Cedex 9, France.
J Environ Monit. 2006 Jan;8(1):106-11. doi: 10.1039/b511201j. Epub 2005 Nov 30.
Solid-phase microextraction (SPME) was studied for the measurement of volatile organic compounds (VOCs) in indoor air. An adsorptive PDMS/Carboxen fibre was used and an analytical methodology was developed in order to overcome competitive adsorption. Kinetics and adsorption isotherms were investigated for different sample volumes and model compounds. In order to evaluate competitive adsorption on the fibre, these compounds were studied alone and in mixture. From the results obtained, the operating conditions allowing co-adsorption of the target compounds were determined: the air sample is enclosed in a 250 mL glass bulb where the SPME fibre is exposed until adsorption equilibrium. This procedure was combined with GC/MS analysis for the identification and quantification of VOCs in indoor air. The performances were determined by using a standard gas containing 10 VOCs representative of indoor environments (acetaldehyde, acetone, BTX, alpha-pinene, trichloroethylene, alkanes). The detection limits were determined in single ion monitoring mode and for a signal to noise ratio of 3. Except acetaldehyde (6 microg m(-3)), they are all below 0.5 microg m(-3). Calibration curves are linear up to 10 micromol m(-3) for all the compounds with good correlation coefficients (above 0.99). The reproducibility ranges from 6 to 12% according to the compound. The methodology was then applied to the comparison of the VOCs content in classrooms of two different schools.
研究了固相微萃取(SPME)用于测定室内空气中挥发性有机化合物(VOCs)的方法。使用了吸附性的聚二甲基硅氧烷/碳分子筛纤维,并开发了一种分析方法以克服竞争性吸附。针对不同的样品体积和模型化合物研究了动力学和吸附等温线。为了评估纤维上的竞争性吸附,分别对这些化合物及其混合物进行了研究。根据所得结果,确定了允许目标化合物共吸附的操作条件:将空气样品封闭在一个250 mL的玻璃灯泡中,使SPME纤维暴露其中直至吸附平衡。该方法与气相色谱/质谱联用分析相结合,用于室内空气中VOCs的鉴定和定量。通过使用含有10种代表室内环境的VOCs(乙醛、丙酮、苯系物(BTX)、α-蒎烯、三氯乙烯、烷烃)的标准气体来确定其性能。在单离子监测模式下,对于信噪比为3的情况测定了检测限。除乙醛(6 μg m⁻³)外,其他检测限均低于0.5 μg m⁻³。所有化合物的校准曲线在高达10 μmol m⁻³时呈线性,具有良好的相关系数(高于0.99)。根据化合物的不同,重现性范围为6%至12%。然后将该方法应用于比较两所不同学校教室中的VOCs含量。