首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Highly porous nanostructured copper foam fiber impregnated with an organic solvent for headspace liquid-phase microextraction
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Highly porous nanostructured copper foam fiber impregnated with an organic solvent for headspace liquid-phase microextraction

机译:有机溶剂浸渍的高孔隙度纳米结构铜泡沫纤维,用于顶空液相微萃取

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A new headspace liquid-phase microextraction technique based on using a copper foam nanostructure substrate followed by gas chromatography-flame ionization detection was developed for the determination of volatile organic compounds in water and wastewater samples. The copper foam with highly porous nanostructured walls was fabricated on the surface of a copper wire by a rapid and facile electrochemical process and used as the extractant solvent holder. Propyl benzoate was immobilized in the pores of the copper foam coating and used for the microextraction of benzene, toluene, ethylbenzene and xylenes. The experimental parameters such as the type of organic solvent, desorption temperature, desorption time, salt concentration, sample temperature, equilibrium time and extraction time, were investigated and optimized. Under the optimum conditions, the method detection limit was between 0.06 and 0.25 mu g L-1. The relative standard deviation of the method for the analytes at 4-8 mu g L-1 concentration level ranged from 7.9 to 11%. The fiber-to-fiber reproducibility for three fibers prepared under the same condition was 9.3-12%. The enrichment factor was in the range of 615-744. Different water samples were analyzed for the evaluation of the method in real sample analysis. Relative recoveries for spiked tap, river and wastewater samples were in the range of 85-94%. Finally, the extraction efficiency of the method was compared with those of headspace single drop microextraction and headspace SPME with the commercial fibers. (C) 2016 Elsevier B.V. All rights reserved.
机译:建立了一种新的顶空液相微萃取技术,该技术基于泡沫铜纳米结构基质,然后采用气相色谱-火焰电离检测技术测定水和废水样品中的挥发性有机化合物。通过快速而简便的电化学方法在铜线表面上制备了具有高度多孔纳米结构壁的泡沫铜,并用作萃取剂溶剂的载体。苯甲酸丙酯固定在泡沫铜涂层的孔中,用于微萃取苯,甲苯,乙苯和二甲苯。研究并优化了实验参数,如有机溶剂的种类,脱附温度,脱附时间,盐浓度,样品温度,平衡时间和提取时间。在最佳条件下,方法的检出限为0.06至0.25μg L-1。在4-8μg L-1浓度水平下,该方法的相对标准偏差为7.9%至11%。在相同条件下制备的三种纤维的纤维对纤维的再现性为9.3-12%。富集因子在615-744的范围内。分析了不同的水样,以评估实际样品分析中的方法。加标的水龙头,河流和废水样品的相对回收率在85-94%的范围内。最后,将该方法的提取效率与顶空单滴微萃取和顶空SPME与商业纤维的提取效率进行了比较。 (C)2016 Elsevier B.V.保留所有权利。

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