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首页> 外文期刊>Agricultural Research >Analysis of Synthetic Pyrethroids by Gas Chromatography-Mass Spectrometry
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Analysis of Synthetic Pyrethroids by Gas Chromatography-Mass Spectrometry

机译:气相色谱-质谱法分析合成拟除虫菊酯

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The paper explains why we get many peaks during gas-liquid chromatography (GC) and attempts to rationalize the complicated GC spectra by identifying the major fragments of synthetic pyrethroids. In the present research, gas chromatography conditions in the electronic ionization (EI) mode were established that served as a benchmark in the development of a chemical ionization (CI) protocol for the selected ester and non-ester synthetic pyrethroids. CI technique is a lower energy process than EI. The lower energy yields less fragmentation, and usually a simpler spectrum with identifiable molecular ion. Common major peak in case of cypermethrin, deltamethrin, fenvalerate, and fenpropathrin was due to meta-phenoxybenzaldehyde moiety at m/z 208 (Ci4H10NO)+ ion. Etofenprox after protonation of ether oxygen loses one molecule of water producing m/z 359 instead of m/z 377 and it further fragmented to m/z 177 (C)2 Hi70)+ and 135 (C9HnO)+ ions. Above 70 % recoveries of all the pyrethroids at 0.1 and 1 pg ml-1levels were achieved from environmental samples. Improving analytical sensitivity and selectivity is important for quantifying trace pyrethroids in matrices. In EI mode, selecting base ion for single ion monitoring or using a precursor ion for MS/MS analysis, the lower limits of quantification (less than 0.1 ppm) become possible for the analysis of synthetic pyrethroids in water.
机译:本文解释了为什么我们在气相色谱(GC)中会出现许多峰,并试图通过鉴定合成拟除虫菊酯的主要片段来合理化复杂的GC光谱。在本研究中,建立了以电子电离(EI)模式的气相色谱条件,该条件可作为开发选定酯和非酯合成拟除虫菊酯的化学电离(CI)协议的基准。与EI相比,CI技术的能耗更低。较低的能量产生较少的碎片,并且通常具有可识别的分子离子的光谱更简单。氯氰菊酯,溴氰菊酯,氰戊菊酯和联苯丙酸菊酯的共同主峰是由于m / z 208(Ci4H10NO)+离子处的间苯氧基苯甲醛部分所致。醚氧质子化后的Etofenprox失去一分子水,产生m / z 359而不是m / z 377,它进一步碎裂成m / z 177(C)2 Hi70)+和135(C9HnO)+离子。从环境样品中以0.1和1 pg ml-1的水平获得的所有拟除虫菊酯的回收率均超过70%。提高分析灵敏度和选择性对于定量分析基质中痕量拟除虫菊酯很重要。在EI模式下,选择基础离子进行单离子监测或使用前体离子进行MS / MS分析,则定量下限(小于0.1 ppm)对于分析水中的拟除虫菊酯成为可能。

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