Ghiasvand Ali Reza, Hosseinzadeh Shokouh, Pawliszyn Janusz
University of Waterloo, Waterloo, Ont., Canada N2L 3G1.
J Chromatogr A. 2006 Aug 18;1124(1-2):35-42. doi: 10.1016/j.chroma.2006.04.088. Epub 2006 May 19.
A new automated headspace solid-phase microextraction (HS-SPME) sampling device was developed, with the capability of heating the sample matrix and simultaneously cooling the fiber coating. The device was evaluated for the quantitative extraction of polycyclic aromatic hydrocarbons (PAHs) from solid matrices. The proposed device improves the efficiency of the release of analytes from the matrix, facilitates the mass transfer into the headspace and significantly increases the partition coefficients of the analytes, by creating a temperature gap between the cold-fiber (CF) coating and the hot headspace. The reliability and applicability of previously reported cold-fiber devices are significantly enhanced by this improvement. In addition, it can be easily adopted for full automation of extraction, enrichment and introduction of different samples using commercially available autosampling devices. Sand samples spiked with PAHs were used as solid matrices and the effect of different experimental parameters were studied, including the extraction temperature, extraction time, moisture content, and the effect of sonication and modifier under optimal experimental conditions, linear calibration curves were obtained in the range of 0.0009-1000 ng/g, with regression coefficients higher than 0.99 and detection limits that ranged from 0.3 to 3 pg/g. Reproducible, precise and high throughput extraction, monitoring and quantification of PAHs were achieved with the automated cold-fiber headspace solid-phase microextraction (CF-HS-SPME) device coupled to GC-flame ionization detection. Determination of PAHs in certified reference sediments using the proposed approach exhibited acceptable agreement with the standard values.
开发了一种新型自动顶空固相微萃取(HS-SPME)采样装置,该装置能够加热样品基质并同时冷却纤维涂层。对该装置用于从固体基质中定量萃取多环芳烃(PAHs)进行了评估。所提出的装置通过在冷纤维(CF)涂层和热顶空之间形成温度差,提高了分析物从基质中的释放效率,促进了向顶空的传质,并显著增加了分析物的分配系数。这一改进显著提高了先前报道的冷纤维装置的可靠性和适用性。此外,使用市售自动进样装置,它可以很容易地用于不同样品萃取、富集和进样的全自动化。用加标PAHs的砂样作为固体基质,研究了不同实验参数的影响,包括萃取温度、萃取时间、含水量,以及在最佳实验条件下超声处理和改性剂的影响,在0.0009 - 1000 ng/g范围内获得了线性校准曲线,回归系数高于0.99,检测限为0.3至3 pg/g。通过与气相色谱 - 火焰离子化检测联用的自动冷纤维顶空固相微萃取(CF-HS-SPME)装置,实现了PAHs的可重现、精确和高通量萃取、监测和定量。使用所提出的方法测定标准参考沉积物中的PAHs,结果与标准值具有可接受的一致性。