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Potential of atmospheric pressure chemical ionization source in GC-QTOF MS for pesticide residue analysis

机译:GC-QTOF ms中用于农药残留分析的大气压化学电离源的潜力

摘要

The potential applications of a new atmospheric pressure source for GC-MS analysis have been investigated in this work. A list of around 100 GC-amenable pesticides, which includes organochlorine, organophosphorus and organonitrogenated compounds, has been used to evaluate their behavior in the new source. Favoring the major formation of the molecular ion in the source has been the main goal due to the wide-scope screening possibilities that this fact brings in comparison with the traditional, highly fragmented electron ionization spectra. Thus, the addition of water as modifier has been tested as a way to promote the generation of protonated molecules. Pesticides investigated have been classified into six groups according to their ionization/fragmentation behavior. Four of them are characterized by the abundant formation of the protonated molecule in the atmospheric pressure source, mostly being the base peak of the spectrum. These results show that wide-scope screening could be easily performed with this source by investigating the presence of the protonated molecule ion, MH+. The developed procedure has been applied to pesticide screening in different food samples (nectarine, orange and spinach) and it has allowed the presence of several pesticides to be confirmed such as chlorpyriphos ethyl, deltamethrin and endosulfan sulfate. The availability of a quadrupole time-of-flight instrument made it feasible to perform additional MS/MS experiments for both standards and samples to go further in the confirmation of the identity of the detected compounds. Results shown in this paper have been obtained using a prototype source which exhibits promising features that could be applied to other analytical problems apart from those illustrated in this wo
机译:在这项工作中,已经研究了用于GC-MS分析的新型大气压源的潜在应用。大约有100种适合GC的农药清单,包括有机氯,有机磷和有机氮化化合物,已被用来评估其在新来源中的行为。由于与传统的高度碎片化的电子电离光谱相比,这种事实带来了宽范围的筛选可能性,因此主要目的是促进离子源中分子离子的主要形成。因此,已经测试了添加水作为改性剂作为促进质子化分子生成的方式。根据农药的电离/碎片化行为将其分为六类。其中四个的特征是在大气压源中大量形成质子化分子,主要是光谱的基峰。这些结果表明,通过研究质子化分子离子MH +的存在,可以很容易地使用此源进行宽范围筛选。所开发的程序已应用于不同食品样品(油桃,橙子和菠菜)中的农药筛查,并且可以确认多种杀虫剂的存在,例如毒死pho,乙基溴氰菊酯和硫酸硫丹。四极杆飞行时间仪器的可用性使对标准品和样品进行额外的MS / MS实验变得可行,以进一步确认所检测化合物的身份。本文显示的结果是使用原型源获得的,该原型源显示了有希望的功能,除了本文中说明的那些功能外,这些功能还可以应用于其他分析问题。

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