首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A magnetic sorbent for the efficient and rapid extraction of organic micropollutants from large-volume environmental water samples
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A magnetic sorbent for the efficient and rapid extraction of organic micropollutants from large-volume environmental water samples

机译:一种磁性吸附剂,用于从大量环境水样中快速有效地提取有机微量污染物

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摘要

A magnetic solid-phase extraction (MSPE) method based on a novel magnetic sorbent was proposed for the extraction of target compounds from large-volume water samples. First, magnetic hypercrosslinked microspheres (NAND-1) were prepared via membrane emulsification-suspension polymerization and post crosslinking reaction. To ensure that the Fe_3O_4 nanoparticles could completely pass through the membrane without blocking the pores, oleic acid was used to modify the Fe_3O_4 nanoparticles, which enhanced lipophilicity and monodispersity of the magnetite nanoparticles. The obtained NAND-1 microspheres exhibited super paramagnetic characteristics and excellent magnetic responsiveness with a saturation magnetization of 2.53emu/g. In addition, a uniform particle size (~8μm) and a large average surface area (1303.59m~2/g) were also observed, which were both beneficial for the extraction of the target compounds. Thus, NAND-1 has the potential to simultaneously exhibit good extraction efficiencies toward different types of organic micropollutants (OMPs), including triazines, carbamazepine and diethyl phthalate. The conditions of the MSPE based on NAND-1 were optimized by single factor and orthogonal design experiments. This MSPE method needed only a small amount of sorbent (50mg/L) for the extraction of OMPs from a large-volume aquatic sample (5L) and reached equilibrium in a short amount of time (30min). Moreover, the solution volume, the pH, and the salinity had insignificant influences on the extraction of the eight target OMPs. Under the optimum conditions, the recoveries of the eight OMPs calculated by analyzing the spiked samples were from 91.7% to 99.4%. The NAND-1 could be recycled ten times and still achieve recoveries of the eight OMPs higher than 86%. The limits of detection of the eight OMPs ranged from 1.76 to 27.56ng/L, and the limits of quantification were from 5.71 to 92.05ng/L. These results indicated that the proposed method, based on the use of NAND-1 as a magnetic sorbent, has the advantages of convenience and high efficiency and can be successfully applied to analyze the OMPs in real water samples.
机译:提出了一种基于新型磁性吸附剂的磁性固相萃取方法,用于从大体积水样中提取目标化合物。首先,通过膜乳化-悬浮聚合和后交联反应制备磁性超交联微球(NAND-1)。为了确保Fe_3O_4纳米粒子可以完全穿过膜而不会阻塞孔,使用油酸修饰Fe_3O_4纳米粒子,从而增强了磁铁矿纳米粒子的亲脂性和单分散性。获得的NAND-1微球表现出超顺磁特性和优异的磁响应性,饱和磁化强度为2.53emu / g。此外,还观察到了均匀的粒径(〜8μm)和大的平均表面积(1303.59m〜2 / g),这都有利于目标化合物的提取。因此,NAND-1可能同时展现出对不同类型的有机微污染物(OMP)的良好提取效率,这些有机微污染物包括三嗪,卡马西平和邻苯二甲酸二乙酯。通过单因素和正交设计实验优化了基于NAND-1的MSPE的条件。这种MSPE方法仅需少量吸附剂(50mg / L)即可从大量水生样品(5L)中萃取OMP,并在短时间内(30min)达到平衡。此外,溶液体积,pH和盐度对八种目标OMP的提取影响不显着。在最佳条件下,通过分析加标样品计算出的8种OMP的回收率为91.7%至99.4%。 NAND-1可以循环使用十次,但仍可以实现8个OMP的回收率高于86%。八种OMPs的检出限为1.76至27.56ng / L,定量限为5.71至92.05ng / L。这些结果表明,基于NAND-1作为磁性吸附剂,该方法具有方便,高效的优点,可成功用于实际水样中OMPs的分析。

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