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Development of combined salt- and air-assisted liquid–liquid microextraction as a novel sample preparation technique

机译:盐和空气辅助液-液联合微萃取技术的开发作为一种新的样品制备技术

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A new, simple and sensitive method based on a combination of salt-assisted liquida€“liquid microextraction (SALLME) with an aeration process, namely, salt- and air-assisted liquida€“liquid microextraction (SAALLME), coupled with high-performance liquid chromatography (HPLC), has been developed for the quantitative analysis of ?2-naphthol, naphthalene and anthracene as model analytes. In this new technique, the centrifugation step has been replaced with an aeration process. In the proposed technique, the extraction solvent and salt are added into the aqueous sample solution and dissolved using a vortex. Phase separation is performed via motion of air bubbles from the bottom to the top of extraction tube, which promotes the transfer of analytes into the supernatant organic phase. Various parameters that affect the extraction efficiency, such as the extraction solvent and its volume, salt and its concentration, the volume of injected air, vortex time and sample pH, were evaluated and optimized. The calibration curves showed good linearity (r2 0.9959) and precision (RSD 7.2%) in the working concentration ranges. The limit of detection (LOD) for ?2-naphthol, naphthalene and anthracene were 4.25, 8.34 and 0.22 ng mLa?’1, respectively. The recoveries were in the range of 92.0a€“99.0% with RSD values ranging from 4.8% to 7.2%.
机译:一种新的,简单而灵敏的方法,它结合了盐辅助液体微液体萃取(SALLME)和曝气工艺,即盐和空气辅助液体微液体萃取(SAALLME)以及高性能液相色谱法(HPLC)已开发用于定量分析作为模型分析物的α2-萘酚,萘和蒽。在这项新技术中,离心步骤已被曝气工艺所取代。在提出的技术中,将萃取溶剂和盐添加到样品水溶液中并使用涡旋溶解。相分离是通过气泡从萃取管底部到顶部的运动进行的,这促进了分析物向上清液有机相的转移。评估和优化了影响萃取效率的各种参数,例如萃取溶剂及其体积,盐及其浓度,注入空气的体积,涡旋时间和样品pH值。校准曲线在工作浓度范围内显示出良好的线性(r2> 0.9959)和精度(RSD <7.2%)。 α2-萘酚,萘和蒽的检出限(LOD)分别为4.25、8.34和0.22 ng mLa?-1。回收率在92.0%至99.0%之间,RSD值在4.8%至7.2%之间。

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