Stultz Conner, Jobst Karl J, Haimovici Liad, Jones Rhys, Besevic Sladjana, Byer Jonathan, Organtini Kari L, Kolic Terry, Reiner Eric J, Dorman Frank L
Department of Chemistry, The Pennsylvania State University, 104 Chemistry Building, University Park, PA, 16802, USA.
Ontario Ministry of the Environment, 125 Resources Road, Toronto, Ontario, Canada, M9P 3 V6.
J Mass Spectrom. 2018 Jun;53(6):504-510. doi: 10.1002/jms.4086. Epub 2018 Apr 18.
The use of gas chromatography coupled to high-resolution magnetic sector mass spectrometers (GC-HRMS) is well established for dioxin and furan analysis. However, the use of gas chromatography coupled to triple quadrupole (MS/MS) and time of flight (TOF) mass spectrometers with atmospheric pressure ionization (API) and traditional electron ionization (EI) for dioxin and furan analysis is emerging as a viable alternative to GC-HRMS screening. These instruments offer greater versatility in the lab for a wider range of compound identification and quantification as well as improved ease of operation. The instruments utilized in this study included 2 API-MS/MS, 1 traditional EI-MS/MS, an API-quadrupole time of flight mass spectrometer (API-QTOF), and a EI-high-resolution TOF (EI-HRTOF). This study compared these 5 instruments to a GC-HRMS using method detection limit (MDLs) samples for dioxin and furan analysis. Each instrument demonstrated acceptable MDL values for the 17 chlorinated dioxin and furans studied. The API-MS/MS instruments provide the greatest overall improvement in MDL value over the GC-HRMS with a 1.5 to 2-fold improvement. The API-QTOF and EI-TOF demonstrate slight increases in MDL value as compared with the GC-HRMS with a 1.5-fold increase. The 5 instruments studied all demonstrate acceptable MDL values with no MDL for a single congener greater than 5 times that for the GC-HRMS. All 5 instruments offer a viable alternative to GC-HRMS for the analysis of dioxins and furans and should be considered when developing new validated methodologies.
气相色谱联用高分辨率磁扇形质谱仪(GC-HRMS)用于二噁英和呋喃分析已得到广泛认可。然而,气相色谱联用具有大气压电离(API)和传统电子电离(EI)的三重四极杆(MS/MS)以及飞行时间(TOF)质谱仪用于二噁英和呋喃分析正逐渐成为GC-HRMS筛查的可行替代方法。这些仪器在实验室中具有更大的通用性,可用于更广泛的化合物鉴定和定量,并且操作更简便。本研究中使用的仪器包括2台API-MS/MS、1台传统EI-MS/MS、1台API-四极杆飞行时间质谱仪(API-QTOF)和1台EI-高分辨率飞行时间质谱仪(EI-HRTOF)。本研究将这5种仪器与一台GC-HRMS进行比较,使用方法检测限(MDLs)样品进行二噁英和呋喃分析。对于所研究的17种氯代二噁英和呋喃,每台仪器都显示出可接受的MDL值。与GC-HRMS相比,API-MS/MS仪器在MDL值方面总体改善最大,提高了1.5至2倍。与GC-HRMS相比,API-QTOF和EI-TOF显示MDL值略有增加,提高了1.5倍。所研究的5种仪器均显示出可接受的MDL值,单个同系物的MDL均不超过GC-HRMS的5倍。所有5种仪器都为二噁英和呋喃分析提供了GC-HRMS的可行替代方案,在开发新的经过验证的方法时应予以考虑。