van Bavel Bert, Geng Dawei, Cherta Laura, Nácher-Mestre Jaime, Portolés Tania, Ábalos Manuela, Sauló Jordi, Abad Esteban, Dunstan Jody, Jones Rhys, Kotz Alexander, Winterhalter Helmut, Malisch Rainer, Traag Wim, Hagberg Jessika, Ericson Jogsten Ingrid, Beltran Joaquim, Hernández Félix
MTM Research Centre, School of Science and Technology, Örebro University , 701 82 Örebro, Sweden.
Research Institute for Pesticides and Water (IUPA), Avda. Sos Baynat s/n, University Jaume I , 12071 Castellón, Spain.
Anal Chem. 2015 Sep 1;87(17):9047-53. doi: 10.1021/acs.analchem.5b02264. Epub 2015 Aug 21.
The use of a new atmospheric-pressure chemical ionization source for gas chromatography (APGC) coupled with a tandem quadrupole mass spectrometry (MS/MS) system, as an alternative to high-resolution mass spectrometry (HRMS), for the determination of PCDDs/PCDFs is described. The potential of using atmospheric-pressure chemical ionization (APCI) coupled to a tandem quadrupole analyzer has been validated for the identification and quantification of dioxins and furans in different complex matrices. The main advantage of using the APCI source is the soft ionization at atmospheric pressure, which results in very limited fragmentation. APCI mass spectra are dominated by the molecular ion cluster, in contrast with the high energy ionization process under electron ionization (EI). The use of the molecular ion as the precursor ion in MS/MS enhances selectivity and, consequently, sensitivity by increasing the signal-to-noise ratios (S/N). For standard solutions of 2,3,7,8-TCDD, injections of 10 fg in the splitless mode on 30- or 60-m-length, 0.25 mm inner diameter (id), and 25 μm film thickness low-polarity capillary columns (DB5MS type), signal-to-noise (S/N) ratios of >10:1 were routinely obtained. Linearity was achieved in the region (correlation coefficient of r(2) > 0.998) for calibration curves ranging from 100 fg/μL to 1000 pg/μL. The results from a wide variety of complex samples, including certified and standard reference materials and samples from several QA/QC studies, which were previously analyzed by EI HRGC/HRMS, were compared with the results from the APGC/MS/MS system. Results between instruments showed good agreement both in individual congeners and toxic equivalence factors (TEQs). The data show that the use of APGC in combination with MS/MS for the analysis of dioxins has the same potential, in terms of sensitivity and selectivity, as the traditional HRMS instrumentation used for this analysis. However, the APCI/MS/MS system, as a benchtop system, is much easier to use.
描述了使用一种用于气相色谱(APGC)的新型大气压化学电离源与串联四极杆质谱(MS/MS)系统联用,作为高分辨率质谱(HRMS)的替代方法来测定多氯二苯并二恶英/多氯二苯并呋喃(PCDDs/PCDFs)。大气压化学电离(APCI)与串联四极杆分析仪联用在不同复杂基质中对二恶英和呋喃进行鉴定和定量的潜力已经得到验证。使用APCI源的主要优点是在大气压下进行软电离,这导致碎片非常有限。与电子电离(EI)下的高能电离过程相反,APCI质谱以分子离子簇为主。在MS/MS中使用分子离子作为前体离子可提高选择性,从而通过增加信噪比(S/N)来提高灵敏度。对于2,3,7,8-四氯二苯并二恶英(2,3,7,8-TCDD)的标准溶液,在30米或60米长、内径0.25毫米(id)、膜厚25微米的低极性毛细管柱(DB5MS型)上以不分流模式进样10飞克,常规获得的信噪比(S/N)大于10:1。对于100飞克/微升至1000皮克/微升的校准曲线,在该区域实现了线性(相关系数r(2)>0.998)。将来自各种复杂样品(包括认证和标准参考物质以及来自多个质量保证/质量控制研究的样品)的结果与APGC/MS/MS系统的结果进行了比较,这些样品之前通过EI HRGC/HRMS进行了分析。仪器之间的结果在单个同系物和毒性当量因子(TEQs)方面都显示出良好的一致性。数据表明,就灵敏度和选择性而言,使用APGC与MS/MS联用分析二恶英与用于该分析的传统HRMS仪器具有相同的潜力。然而,APCI/MS/MS系统作为台式系统,使用起来要容易得多。