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磁性柿叶复合材料的制备及其在水样中农药的磁固相萃取中的应用。

Magnetic Persimmon Leaf Composite: Preparation and Application in Magnetic Solid-Phase Extraction of Pesticides in Water Samples.

机构信息

Beijing Key Laboratory for Forest Pest Control, College of Forestry, Beijing Forestry University, No. 35 Qinghua East Road, Beijing 100083, China.

出版信息

Molecules. 2023 Dec 20;29(1):45. doi: 10.3390/molecules29010045.

Abstract

In recent years, the utilization of biomass materials for the removal and detection of water pollutants has garnered considerable attention. This study introduces, for the first time, the preparation of FeO/persimmon leaf magnetic biomass composites. The magnetic composites were employed in a magnetic solid-phase extraction method, coupled with gas chromatography-electron capture detection (GC-ECD), for the analysis of four pesticides (trifluralin, triadimefon, permethrin, and fenvalerate) in environmental water samples. The innovative magnetic persimmon leaf composites were synthesized by in situ generation of FeO nanoparticles through coprecipitation and loaded onto persimmon leaves. These composites exhibit superparamagnetism with a saturation magnetization of 12.8 emu g, facilitating rapid phase separation using a magnetic field and reducing the extraction time to 10 min. Desorption can be achieved within 30 s by aspirating 20 times, eliminating the need for time-consuming and labor-intensive experimental steps like filtration and centrifugation. The specific surface area of the magnetic composite adsorbent increased from 1.3279 m g for the original persimmon leaf to 5.4688 m g. The abundant hydroxyl and carboxyl groups on the composites provide ample adsorption sites, resulting in adsorption capacities ranging from 55.056 mg g to 73.095 mg g for the studied pesticides. The composites exhibited extraction recoveries ranging from 80% to 90% for the studied pesticides. Compared to certain previously reported MSPE methods, this approach achieves equivalent or higher extraction recoveries in a shorter operation time, demonstrating enhanced efficiency and convenience. Good linearity of the target analytes was obtained within the range of 0.75-1500 μg L, with a determination of coefficient () greater than 0.999. These findings contribute to the use of magnetic persimmon leaf biomass materials as effective and environmentally friendly adsorbents for pollutant determination in water samples.

摘要

近年来,利用生物质材料去除和检测水中污染物引起了相当大的关注。本研究首次介绍了 FeO/柿子叶磁性生物复合材料的制备。将磁性复合材料用于磁性固相萃取方法,并与气相色谱-电子捕获检测(GC-ECD)结合,用于分析环境水样中的四种农药(氟乐灵、三唑酮、氯菊酯和氰戊菊酯)。通过共沉淀原位生成 FeO 纳米粒子,并将其负载到柿子叶上,合成了具有超顺磁性的新型磁性柿子叶复合材料,其饱和磁化强度为 12.8 emu g,可通过磁场快速实现固液分离,将萃取时间缩短至 10 min。通过 20 次抽吸,可在 30 s 内实现解吸,无需过滤和离心等耗时且费力的实验步骤。磁性复合吸附剂的比表面积从原始柿子叶的 1.3279 m g增加到 5.4688 m g。复合材料上丰富的羟基和羧基提供了充足的吸附位点,导致研究的四种农药的吸附容量在 55.056 mg g 到 73.095 mg g 之间。复合材料对研究的四种农药的萃取回收率在 80%到 90%之间。与某些先前报道的 MSPE 方法相比,该方法在更短的操作时间内实现了等效或更高的萃取回收率,表现出更高的效率和便利性。目标分析物在 0.75-1500 μg L 的范围内具有良好的线性关系,相关系数()大于 0.999。这些发现为磁性柿子叶生物质材料作为水样中污染物测定的有效和环保吸附剂的应用提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9410/10780136/0b7e1b0c45e3/molecules-29-00045-g001.jpg

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