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Barium alginate caged Fe3O4@C-18 magnetic nanoparticles for the pre-concentration of polycyclic aromatic hydrocarbons and phthalate esters from environmental water samples

机译:海藻酸钡笼蔽的Fe3O4 @ C-18磁性纳米粒子,用于从环境水样品中预浓缩多环芳烃和邻苯二甲酸酯

摘要

The hydrophobic octaclecyl (C-18) functionalized Fe3O4 magnetic nanoparticles (Fe3O4@C-18) were caged into hydrophilic barium alginate (Ba2+-ALG) polymers to obtain a novel type of solid-phase extraction (SPE) sorbents, and the sorbents were applied to the pre-concentration of polycyclic aromatic hydrocarbons (PAHs) and phthalate esters (PAEs) pollutants from environmental water samples. The hydrophilicity of the Ba2+-ALG cage enhances the dispersibility of sorbents in water samples, and the superparamagnetism of the Fe3O4 core facilitates magnetic separation. With the magnetic SPE technique based on the Fe3O4@C-18@Ba2+-ALG sorbents, it requires only 30 min to extract trace levels of analytes from 500 mL water samples. After the eluate is condensed to 0.5 mL, concentration factors for both phenanthrene and di-n-propyl-phthalate are over 500, while for other analytes are about 1000. The recoveries of target compounds are independent of salinity and solution pH under testing conditions. Under optimized conditions, the detection limits for phenanthrene, pyrene, benzo[a]anthracene, and benzo[a]pyrene are 5, 5, 3, and 2 ng L-1, and for di-n-propyl-phthalate, di-n-butyl-phthalate, di-cyclohexyl-phthalate, and din-octyl-phthalate are 36, 59, 19, and 36 ng L-1, respectively. The spiked recoveries of several real water samples for PAHs and PAEs are in the range of 72-108% with relative standard deviations varying from 1% to 9%, showing good accuracy of the method. The advantages of the new SPE method include high extraction efficiency, short analysis time and convenient extraction procedure. To the best of our knowledge, it is unprecedented that hydrophilic Ba2+-ALG polymer caged Fe3O4@C-18 magnetic nanomaterial is used to extract organic pollutants from large volumes of water samples. (C) 2010 Elsevier B.V. All rights reserved.
机译:将疏水性八烷基(C-18)功能化的Fe3O4磁性纳米颗粒(Fe3O4 @ C-18)笼罩在亲水性藻酸钡(Ba2 + -ALG)聚合物中,以获得新型的固相萃取(SPE)吸附剂,吸附剂为用于对环境水样中的多环芳烃(PAH)和邻苯二甲酸酯(PAE)污染物进行预浓缩。 Ba2 + -ALG笼的亲水性增强了水样品中吸附剂的分散性,Fe3O4核的超顺磁性促进了磁分离。使用基于Fe3O4 @ C-18 @ Ba2 + -ALG吸附剂的磁性SPE技术,仅需30分钟即可从500 mL水样品中提取痕量分析物。洗脱液浓缩至0.5 mL后,菲和邻苯二甲酸二正丙酯的浓缩系数均超过500,而其他分析物的浓缩系数均超过1000。在测试条件下,目标化合物的回收率与盐度和溶液pH无关。在最佳条件下,菲,pyr,苯并[a]蒽和苯并[a] py的检测限为5、5、3和2 ng L-1,邻苯二甲酸二正丙酯,邻苯二甲酸邻苯二甲酸正丁酯,邻苯二甲酸二环己酯和邻苯二甲酸二辛酯分别为36、59、19和36 ng L-1。几种实际的多环芳烃和多环芳烃样品的加标回收率在72-108%范围内,相对标准偏差在1%至9%之间,显示了该方法的准确性。新的固相萃取方法的优点是萃取效率高,分析时间短,萃取过程方便。据我们所知,使用亲水性的Ba2 + -ALG聚合物笼蔽的Fe3O4 @ C-18磁性纳米材料来从大量水样中提取有机污染物是前所未有的。 (C)2010 Elsevier B.V.保留所有权利。

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