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Superhydrophobic magnetic nanoparticle-free fatty acid regenerated from waste cooking oil for the enrichment of carcinogenic polycyclic aromatic hydrocarbons in sewage sludges and landfill leachates

机译:从废料烹饪油中再生的超疏水磁性纳米粒子脂肪酸,用于富集污水污泥和垃圾填埋液中的致癌多环芳烃

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摘要

In this study, Fe3O4 nanoparticles grafted with superhydrophobic free fatty acids from waste cooking oil (FFA@MNP) were successfully fabricated as an adsorbent for the magnetic solid phase extraction (MSPE) technique. The synthesized nanomaterial (FFA@MNP) was analyzed using Fourier transform infrared spectroscopy, transmission electron microscopy, X-ray diffraction, energy dispersive X-ray spectroscopy, water contact angle analysis and vibrating sample magnetometry, which confirmed the successful functionalization of free fatty acids onto the surface of Fe3O4 nanoparticles. The adsorption efficiency of the synthesised FFA@MNP in MSPE was evaluated by the extraction of five selected polycyclic aromatic hydrocarbons (PAHs), namely, fluorene (Flu), fluoranthene (FLT), pyrene (Pyr), chrysene (Cry), and benzo(a) pyrene (BaP), from environmental samples prior to HPLC-DAD analysis. The MSPE method was optimized for various parameters such as adsorbent dosage, type of organic eluent, volume of organic eluent, extraction time, desorption time, pH of the solution and sample volume. The low detection limit for the proposed MSPE was found to be 0.001 to 0.05 ng mL(-1). Under optimized conditions, the newly synthesized material was applied as an adsorbent for environmental leachate and sludge samples for enrichment of the selected PAHs from these complex matrices. The stability and reusability studies demonstrated that FFA@MNP could be used for up to five cycles. Due to hydrophobic interactions between the long alkyl chains of FFA@MNP and PAHs, good recoveries (82.8-116.6%) with low relative standard deviations ranging from 5.2% to 11.0% were obtained for the spiked leachate samples. For the spiked sludge samples, the recovery range was found to be from 72.3% to 119.9%, with a satisfactory % RSD (4.8-11.8%).
机译:在该研究中,成功​​地用废烹饪油(FFA / / MNP)接枝的Fe3O4纳米颗粒以废料烹饪油(FFA / / MNP)成功制造成磁性固相萃取(MSPE)技术的吸附剂。使用傅里叶变换红外光谱,透射电子显微镜,X射线衍射,能量分散X射线光谱,水接触角分析和振动样品磁体进行分析合成的纳米材料(FFA @ MNP),这证实了游离脂肪酸的成功功能化在Fe3O4纳米颗粒表面上。通过萃取五种选定的多环芳烃(PAH),即芴(流感),氟蒽(FLT),芘(PYR),Chrysene(Cry)和Benzo来评估MSPE中合成的FFA @ MNP的吸附效率。 (a)从HPLC-DAD分析之前的环境样品中芘(BAP)。针对各种参数进行了优化了MSPE方法,例如吸附剂剂量,有机洗脱液类型,有机洗脱液体积,提取时间,解吸时间,溶液的pH和样品体积。发现所提出的MSPE的低检测限为0.001至0.05 ng ml(-1)。在优化条件下,将新合成的材料用作环境渗滤液和污泥样品的吸附剂,用于从这些复合基质中富集所选的PAH。稳定性和可重用性研究表明,FFA @ MNP可用于最多五个周期。由于FFA @ MNP和PAHS的长烷基链之间的疏水相互作用,获得较低的相对标准偏差的良好回收率(82.8-116.6%),得到尖刺的渗滤液样品的5.2%至11.0%。对于尖刺污泥样品,发现恢复范围为72.3%至119.9%,令人满意的%RSD(4.8-11.8%)。

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