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激光质谱法对氯代乙烯的痕量快速检测研究
引用本文:马靖,丁蕾,顾学军,郑海洋,方黎,张为俊.激光质谱法对氯代乙烯的痕量快速检测研究[J].中国激光,2005,32(9):202-1206.
作者姓名:马靖  丁蕾  顾学军  郑海洋  方黎  张为俊
作者单位:中国科学院安徽光学精密机械研究所环境光谱学研究室,安徽,合肥,230031
基金项目:中国科学院创新方向性项目(KJCX2-SW-H08)资助课题.
摘    要:获得了在超声分子束条件下,305.0~325.0nm波长范围内三氯乙烯及四氯乙烯的(2+1)共振增强多光子电离/飞行时间质谱(REMPI-TOFMS)。在此波段,三氯乙烯分子通过双光子跃迁至3d里德堡态再吸收一个光子电离而后解离成CCl^-等碎片离子,四氯乙烯分子则经历了π到3p德堡态的(2+1)多光子过程。实验分别获得两种氯代乙烯分子电离解离后产生的碎片离子CCl^-的分质量光谱及光强指数。研究表明,该波长范围内三氯乙烯的最佳检测波长为310.8nm,四氯乙烯的最佳检测波长为322.5nm。根据CCl^-信号强度与样品浓度的线性关系,实现了这两种环境污染物的低浓度探测,探测限可达到μg/L量级。

关 键 词:测量  激光质谱法  共振增强多光子电离  飞行时间质谱  氯代乙烯
文章编号:0258-7025(2005)09-1202-05
收稿时间:2005-01-24
修稿时间:2005-05-08

Rapid Detection of Chloroethylenes Using Laser Mass Spectrometry
MA Jing,DING Lei,GU Xue-jun,ZHENG Hai-yang,FANG Li,ZHANG Wei-jun.Rapid Detection of Chloroethylenes Using Laser Mass Spectrometry[J].Chinese Journal of Lasers,2005,32(9):202-1206.
Authors:MA Jing  DING Lei  GU Xue-jun  ZHENG Hai-yang  FANG Li  ZHANG Wei-jun
Affiliation:Laboratory of Environmental Spectroscopy, Anhui Institute of Optics and Fine Mechanics. The Chinese Academy of Sciences, Hefei , Anhui 230031, China
Abstract:The (2+1) resonance-enhanced multiphoton ionization/time of flight mass spectra (REMPI-TOFMS) of trichloroethylene and tetrachloroethylene are obtained in the range 305.0~325.0 nm. In this wavelength range, trichloroethylene molecules firstly absorb two-photons to their 3d Redberg state and tetrachloroethylene molecules firstly absorb two-photons to their 3p Redberg state, then the excited molecules further absorb additional photon energy and get ionized. The mass-resolved excited spectra and laser power index of fragment ions CCl+ are obtained. The measurement shows that 310.8 nm is the suitable wavelength for detection of trichloroethylene and 322.5 nm is the suitable wavelength for detection of tetrachloroethylene in this wavelength range. The detection limits of chloroethylenes at μg/L concentration range are presented.
Keywords:measurement  laser mass spectrometry  resonance-enhanced multiphoton ionization  time of flight mass spectrum  chloroethylenes
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