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Trace level monitoring of pesticides in water samples using fatty acid coated magnetic nanoparticles prior to GC-MS

机译:在GC-MS之前使用脂肪酸涂覆的磁性纳米颗粒对水样中的农药进行痕量监测

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Palmitic acid coated magnetic nanoparticles (PA-Fe3O4 MNPs) were employed in a simple and fast solid phase extraction procedure for the preconcentration of pesticides prior to GC-MS determination. The main factors influencing extraction efficiency including surfactant amount, sample pH, extraction time, desorption conditions and concentration of nanoparticles were optimized. Under the-optimized conditions, a preconcentration factor of 1000 was achieved. Limits of detection and quantification in the range of 20-30 ng L~(-1) and 60-80 ng L~(-1), respectively, were obtained for the proposed pesticides which include diazinon, pirimiphos methyl, aldrin-R, fenthion, chlorpyrifos, dicofol, triadimefon, heptachlor-epoxide (Cis), fipronil, triadimenol, triflumizole, O.P-DDE, butachlor, pretilachlor, P.P-DDE, oxadiazon, O.P-DDD, buprofezin, P.P-DDD, 0,P-DDT, ethion, benalaxyl, endosulfan-sulfate, propiconazol I, propiconazol II, tebuconazole, bifenthrin, methoxychlor, fenpropathrin, landa cyhalothrin, fenarimol, bitertanol, permethrine I, permethrine II, prochloraz, fenbuconazole, cypermethrin-alpha and esfenvalerate. In order to investigate the matrix effect on the method efficiency, it was used to determine the mentioned pesticides in real environmental water samples including tap, bottled drinking and pool water. The results obtained were in agreement with those obtained by a classical SPE method for the determination of pesticides.
机译:棕榈酸涂覆的磁性纳米颗粒(PA-Fe3O4 MNP)用于简单快速的固相萃取程序中,用于在GC-MS测定之前对农药进行预浓缩。优化了影响萃取效率的主要因素,包括表面活性剂的量,样品的pH,萃取时间,解吸条件和纳米颗粒的浓度。在优化的条件下,实现了1000的预浓缩系数。对于拟议的农药,包括二嗪农,吡虫磷,甲基,艾氏剂-R,苯硫磷,毒死rif,三氯杀螨醇,三唑酮,七氯环氧化合物(Cis),氟虫腈,三苯二酚,三氟甲唑,OP-DDE,丁草胺,丙草胺,PP-DDE,草二酮,OP-DDD,丁丙环丙嗪,PP-DDD,0,P-DDT ,乙硫醇,苯那克西酯,硫丹硫酸盐,丙环唑I,丙环唑II,戊唑醇,联苯菊酯,甲氧氯,苯丙酸菊酯,环氯氟氰菊酯,苯那莫尔,比色林,苄氯菊酯I,苄氯菊酯II,丙草胺,苯酚芬康唑,氯氰菊酯-α。为了研究基质对方法效率的影响,该方法用于测定实际环境水样中的上述农药,包括自来水,瓶装饮用水和游泳池水。获得的结果与通过传统SPE方法测定农药的结果一致。

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