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首页> 外文期刊>Food analytical methods >Magnetic graphene oxide-based solid-phase extraction combined with dispersive liquid-liquid microextraction for the simultaneous preconcentration of four typical pesticide residues in fruit juice and pulp
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Magnetic graphene oxide-based solid-phase extraction combined with dispersive liquid-liquid microextraction for the simultaneous preconcentration of four typical pesticide residues in fruit juice and pulp

机译:基于磁性石墨烯氧化物的固相萃取与分散液 - 液微萃取结合用于果汁和纸浆中四种典型农药残留的同时浓缩

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摘要

In the present work, magnetic graphene oxide-based solid-phase extraction combined with dispersive liquid-liquid microextraction has been developed for the extraction and preconcentration of some widely used pesticide residues in juice and pulp of fruits before their determination with gas chromatography-flame ionization detection. In this method, an appropriate weight of a synthetic magnetic graphene oxide is added into fruit pulp and homogenized for a specified time. Then, the magnetic graphene oxide containing the adsorbed pesticides is separated from pulp using a magnet and the pesticides are desorbed using an appropriate volume of a water-miscible organic solvent. In the following, the eluent is mixed with a low water-soluble extraction solvent (at a microliter level) and rapidly dispersed into the fruit juice. The optimum conditions were found to be 150 mg of magnetic graphene oxide, 4.0 min for extraction time, 1.0 mL of acetonitrile as the eluent, 4.0 min for adsorption time, and 105 mu L of chloroform as an extraction solvent. An excellent linearity was achieved in the range of 3.5-10,000 mu g kg(-1) (r(2) >= 0.997). The limits of detection and quantification ranged from 1.0-6.0 mu g kg(-1) and 3.5-20 mu g kg(-1), respectively. A good repeatability was obtained with the relative standard deviation = 9%. Furthermore, extraction recoveries and enrichment factors were in the range of 69-81% and 340-399, respectively.
机译:在本作工作中,已经开发出与分散液 - 液体微萃取结合分散液 - 液体微萃取的磁性石墨烯基固相萃取,以便在果实中的一些广泛使用的农药残留物中的萃取和前浓缩,并在其气相色谱 - 火焰离子的测定之前检测。在该方法中,将合成磁性石墨烯的适当重量加入果实纸浆中并均化为特定时间。然后,使用磁体将含有吸附农药的磁性石墨烯与纸浆分离,并且使用适当体积的水混溶有机溶剂去吸收农药。在下文中,将洗脱液与低水溶性萃取溶剂(在微升水平)中混合并迅速分散到果汁中。发现最佳条件为150mg磁性石墨烯氧化物,4.0分钟用于提取时间,1.0ml乙腈作为洗脱液,吸附时间4.0分钟,氯仿作为萃取溶剂。在3.5-10,000μmgkg(-1)(R(2)> = 0.997)的范围内实现了优异的线性度。检测和定量的限制分别为1.0-6.0μgkg(-1)和3.5-20μgkg(-1)。使用相对标准偏差获得良好的重复性。= 9%。此外,提取回收率和富集因子分别为69-81%和340-399。

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