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Ultrasound-assisted dispersive-filter extraction coupled with high-performance liquid chromatography: A rapid miniaturized method for the determination of phenylurea pesticides in vegetables and fruits

机译:超声辅助分散过滤器萃取耦合,高性能液相色谱:一种快速小型化方法,用于测定蔬菜和水果中的苯脲农药

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摘要

Due to the excessive use of pesticides, which presents a threat to public health, large quantities of vegetables and fruits need to be analyzed. Herein, a rapid, low-cost, miniaturized ultrasound-assisted dispersive-filter extraction (UADFE), coupled with high-performance liquid chromatography (HPLC) was developed for the first time to determine phenylurea pesticides in vegetables and fruits. The UADFE method achieved rapid extraction through ultrasound-assisted dispersive solid-phase extraction (DSPE) mode, rapid separation through filter solid-phase extraction (FSPE) mode, and rapid elution through quickly switching between DSPE and FSPE mode. After optimization of extraction parameters of UADFE, there was only 2.0 mg adsorbent dosage, 1.0 mL sample volume, and 8-10 min operation time, which significantly reduced the adsorbent dosage and operation time, and was superior to common sample preparation methods (solid-phase extraction, DSPE, etc.). Under the optimized condition, the UADFE-HPLC method showed good linearity (0.0100-2.50 mu g/g, r >= 0.9995), accuracy (86.6-116.9%), precision (5.3-7.1%), and sensitivity (LOQs: 3.35-4.17 ng/g). Applying these advantages, the proposed method was found to be successful in determining phenylurea pesticides in various vegetables and fruits, demonstrating its ability to ensure food safety and assess potential risks of vegetables and fruits.
机译:由于杀虫剂过度使用,这提出了对公共卫生的威胁,需要分析大量的蔬菜和水果。这里,首次开发出与高性能液相色谱(HPLC)结合的快速,低成本,小型化的超声辅助分散性 - 过滤器萃取(UADFE),以确定蔬菜和水果中的苯脲农药。通过超声辅助色散固相提取(DSPE)模式,通过滤光器固相提取(FSPE)模式快速分离,通过快速切换DSPE和FSPE模式,通过超声波辅助色散固相提取(DSPE)模式进行快速提取。在优化UADFE的提取参数后,只有2.0mg吸附剂剂量,1.0ml样品体积和8-10分钟的操作时间,显着降低了吸附剂剂量和操作时间,并且优于常见的样品制备方法(固体 - 相萃取,DSPE等)。在优化条件下,UADFE-HPLC方法显示出良好的线性度(0.0100-2.50μg/ g,r> = 0.9995),精度(86.6-116.9%),精度(5.3-7.1%)和灵敏度(LOQs:3.35 -4.17 ng / g)。应用这些优点,发现该方法是成功确定各种蔬菜和水果中的苯脲农药,展示了确保食品安全和评估蔬菜和水果潜在风险的能力。

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