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首页> 外文期刊>Food analytical methods >Detection of Organophosphorus Pesticide Residues in Leaf Lettuce and Cucumber Through Molecularly Imprinted Solid-Phase Extraction Coupled to Gas Chromatography
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Detection of Organophosphorus Pesticide Residues in Leaf Lettuce and Cucumber Through Molecularly Imprinted Solid-Phase Extraction Coupled to Gas Chromatography

机译:通过分子印迹固相萃取与气相色谱法的叶片生菜和黄瓜有机磷农药残留量

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How to determine multipesticide residues in vegetables is important for the modern society. The development of a simple, rapid, and sensitive method to determine pesticide residues is significant. Our study used common vegetables-leaf lettuce and cucumber, and a new molecularly imprinted polymer (MIP) was synthesized using O,O'-dimethylthiophosphoryl chloride, an intermediate for the manufacture of organophosphorus pesticides, as the template, methacrylic acid as the functional monomer, and ethylene glycol dimethacrylate as the cross-linker. The adsorption capacities of the prepared MIP toward five organophosphorus pesticides (trichlorfon, dichlorvos, dimethoate, imidacloprid, and methamidophos) were evaluated, and its potential as a sorbent for solid-phase extraction was investigated. A novel method for the simultaneous determination of multiple organophosphorus pesticide residues in vegetables was developed by utilizing molecularly imprinted solid-phase extraction (MISPE) coupled with gas chromatography. Under optimal solid-phase extraction conditions, with a flow rate of 3.0 mL/min for loading 100 mL, the enrichment factor was in the range of 36-452 for the five organophosphorus pesticides. The peak area precision of the five organophosphorus pesticides based on five replicates was from 1.59 to 4.07%. The leaf lettuce spiked sample was used to verify the fortified recovery for this method, and the results ranged from 87.48 to 97.85%. The MISPE-gas chromatography method could be used to detect organophosphorus pesticide residues in lettuce leaf and cucumber from the farmer's market, and the detection limit had no obvious difference from the national standards. This method can meet the requirements of the analysis of pesticides in complex matrix.
机译:如何确定蔬菜中的多灰质残留对现代社会很重要。一种简单,快速和敏感的方法来确定农药残留的敏感方法是显着的。我们的研究使用常见的蔬菜叶莴苣和黄瓜,并使用O'-二甲基磷膦酰氯,用于制造有机磷农药的中间体作为模板,作为功能性单体的甲基丙烯酸合成新的分子印迹聚合物(MIP)。和乙二醇二甲基丙烯酸酯作为交联剂。评价制备的MIP的吸附容量朝向五种有机磷农药(Trichlorfon,Dichlorvos,二甲酯,咪酰胺啉和甲基氨基酚),并研究了其作为用于固相萃取的吸附剂的潜力。通过利用与气相色谱相结合的分子印迹固相萃取(MISPE)开发了一种新的蔬菜中多种有机磷农药残留的新方法。在最佳固相萃取条件下,对于装载100mL的3.0ml / min的流速,富集因子为5个有机磷农药的36-452。基于五次重复的五种有机磷农药的峰面积精度为1.59至4.07%。叶莴苣掺入样品用于验证该方法的强化恢复,结果范围为87.48至97.85%。 MISPE-气相色谱法可用于检测生菜叶片和黄瓜的有机磷农药残留,从农民的市场中,检测极限与国家标准没有明显的差异。该方法可以满足复杂基质中农药分析的要求。

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