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自动质谱退卷积定性系统(AMDIS)用于重叠农药峰的GC/MS质谱图退卷积处理 被引量:19

Deconvolution Overlapping Pesticides Gas Chromatography-Mass Spectrometry Using Auto Mass Deconvolution & Identification System(AMDIS)
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摘要 采用自动质谱退卷积定性系统(AMDIS)分别对4组具有不同重叠程度的农药质谱图进行了退卷积拆分处理,并调用拆分前后的谱图在NIST谱库中进行检索。通过对检索结果的分析,初步研究了AMDIS对不同重叠程度的农药质谱图的拆分能力,同时对拆分后新建质谱图中错误或丢失离子进行了分析。结果发现,AMDIS对于扫描数差距大于1的重叠农药峰有较好的拆分结果,可有效地排除重叠峰质谱图互相干扰,增加对目标农药定性的准确性,但同时也存在漏筛共存离子、灵敏度低等缺点。 Auto Mass Spectral Deconvolution & Identification System (AMDIS) was used to deconvolute four examples of overlapped pesticides. The shortcoming and advantage of AMDIS were analyzed. The results show there isagood result when the scan number difference of overlapped pesticide exceeded 1. This advantage will help to remove the interference through overlapping components each other, and confirm results more correctly. On the other hand, there are shortcomings such as missing non-characteristic ions and low detect ability.
出处 《质谱学报》 EI CAS CSCD 2005年第3期155-159,共5页 Journal of Chinese Mass Spectrometry Society
关键词 农药残留 气相色谱质谱(GC/MS) 重叠农药峰 自动质谱退卷积定性系统(AMDIS) pesticides residue gas chromatography-mass spectrometry (GC/MS) overlapping peticides auto mass spectral deconvolution & identification system (AMDIS)
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  • 1Dromey RG, Stefik MJ, Rindfleisch TC, et al.Extraction of Mass Spectra Free of Background and Neighboring Component Contributions from Gas Chromatography/Mass Spectrometry Data[J]. Anal Chem, 1976, 48(9):1368-1375.
  • 2张伟国,陶传江,李重九.GC/MS/AMDIS技术用于韭菜中残留农药的确证[J].质谱学报,2004,25(3):141-144. 被引量:26
  • 3Shai Dagan. Comparison of Gas Chromatographypulsed Flame Photometric Detection-Mass Spectrometry, Automated Mass Spectral Deconvolution and Identification System and Gas Chromatography-Tandem Mass Spectrometry as Tools for Trace Level Detection and Identification[J].J Chromatogr A, 2000, 868: 229-247.

二级参考文献3

  • 1Ma Xiaodong, Li Chongjiu, Tao Chuanjiang, et al. Multi-residue Determination of 41 Insecticides in Garlic by Gas Chromatography and Ion Trap Mass Spectrometry Using the Selective Ion Storage Technique [J]. Rapid Commun Mass Spectrom, 2001,(15): 15~19.
  • 2Halket JM, Przyborowska A, Stein SE, et al. Deconvolution Gas Chromatography/Mass Spectrometry of Urinary Organic Acids-potential for Pattern Recognition and Automated Identification of Metabolic Disorders[J]. Rapid Commun Mass Spectrom, 1999, (13): 279~
  • 3Shai Dagan. Comparison of Gas Chromatographypulsed Flame Photometric Detection-Mass Spectrometry, Automated Mass Spectral Deconvolution and Identification System and Gas Chromatography-Tandem Mass Spectrometry as Tools for Trace Level Detection and Identi

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