首页> 外文期刊>Journal of environmental monitoring: JEM >Evaluation of river pollution of neonicotinoids in Osaka City (Japan) by LC/MS with dopant-assisted photoionisation
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Evaluation of river pollution of neonicotinoids in Osaka City (Japan) by LC/MS with dopant-assisted photoionisation

机译:LC / MS和掺杂物辅助光电离法评价日本大阪市新烟碱的河流污染

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摘要

An atmospheric pressure photoionisation (APPI) source for liquid chromatography/mass spectrometry (LC/MS) was applied to determine neonicotinoid pesticides in the aquatic environment. Dopant-assisted APPI was very effective in the ionisation of neonicotinoids. Neonicotinoids generated protonated molecules in APPI with high sensitivity, while adduct ions, such as sodiated molecules, were predominantly generated in conventional electrospray ionisation. The ionisation of neonicotinoids was confirmed by ultra-high-resolution MS. An analytical method coupled with solid phase extraction was developed for acetamiprid, clothianidin, dinotefuran, imidacloprid, nitenpyram, and thiamethoxam. Method detection limits were 0.47 to 2.1 ng L ~(-1) for six neonicotinoids. Dinotefuran was the most frequent and highest among the neonicotinoids examined in the aquatic environment in Osaka, Japan. The maximum concentration of dinotefuran was 220 ng L ~(-1). Given the toxicity of neonicotinoids for aquatic creatures, the concentrations observed here were substantially low. The change in concentrations was temporally coincident with the period of the neonicotinoid application. Although rapid photodegradation and some degradation products have been elucidated, the degradation products in the aquatic environment were not identified in the present study.
机译:应用液相色谱/质谱(LC / MS)的大气压光电离(APPI)源确定水生环境中的新烟碱类农药。掺杂物辅助的APPI在新烟碱的离子化中非常有效。新烟碱类化合物在APPI中以高灵敏度生成质子化分子,而在常规电喷雾电离中主要生成加合物离子(如固体分子)。新烟碱类物质的电离已通过超高分辨率质谱仪确认。开发了一种结合固相萃取的分析方法,用于扑热息痛,可比尼丁,地诺呋喃,吡虫啉,乙炔吡喃和噻虫嗪。六个新烟碱的方法检出限为0.47至2.1 ng L〜(-1)。在日本大阪市的水生环境中,二甲呋喃是新烟碱中最常见和最高的。 Dinotefuran的最大浓度为220 ng L〜(-1)。考虑到新烟碱对水生生物的毒性,此处观察到的浓度非常低。浓度的变化在时间上与新烟碱施用时期一致。尽管已经阐明了快速的光降解作用和一些降解产物,但在本研究中未鉴定出水生环境中的降解产物。

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