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Determination of 16 polycyclic aromatic hydrocarbons in environmental water samples by solid-phase extraction using multi-walled carbon nanotubes as adsorbent coupled with gas chromatography-mass spectrometry

机译:固相萃取-多壁碳纳米管作为吸附剂-气相色谱-质谱法测定环境水样中的16种多环芳烃

摘要

A solid-phase extraction (SPE) using multi-walled carbon nanotubes (MWCNTs) as adsorbent coupled with gas chromatography-mass spectrometry (GC-MS) method was developed for the determination of 16 polycyclic aromatic hydrocarbons (PAHs) in environmental water samples. Several condition parameters, such as extraction adsorbents, elution solvents and volumes, and sample loading flow rate and volume were optimized to obtain high SPE recoveries and extraction efficiency. 150 mg MWCNTs as sorbent presented high extraction efficiency of 16 PAHs due to the large specific surface area and high adsorption capacity of MWCNTs compared with the commercial C18 column (250 mg/2 mL). The calibration curves of 16 PAHs extracted were linear in the range of 20-5000 ng L-1, with the correlation coefficients (r(2)) between 0.9848 and 0.9991. The method attained good precisions (relative standard deviation, RSD) from 1.2% to 12.1% for standard PAHs aqueous solutions; method recoveries ranged in 76.0-125.5%, 74.5-127.0%, and 70.0-122.0% for real spiked samples from river water, tap water and seawater, respectively. Limits of detection (LODs, S/N = 3) of the method were determined from 2.0 to 8.5 ng L-1. The optimized method was successfully applied to the determination of 16 PAHs in real environmental water samples. (C) 2010 Elsevier B.V. All rights reserved.
机译:建立了以多壁碳纳米管(MWCNTs)为吸附剂和气相色谱-质谱(GC-MS)方法固相萃取(SPE)的方法,用于测定环境水样中的16种多环芳烃(PAH)。优化了几个条件参数,例如萃取吸附剂,洗脱溶剂和体积以及样品上样的流速和体积,以获得高的SPE回收率和萃取效率。与商用C18色谱柱(250 mg / 2 mL)相比,作为吸附剂的150 mg MWCNTs具有16 PAHs的高萃取效率,因为MWCNTs的比表面积大且吸附能力高。提取的16种PAH的校准曲线在20-5000 ng L-1范围内呈线性,相关系数(r(2))在0.9848和0.9991之间。对于标准PAHs水溶液,该方法的精密度(相对标准偏差,RSD)为1.2%至12.1%。对于来自河水,自来水和海水的真实加标样品,该方法的回收率分别为76.0-125.5%,74.5-127.0%和70.0-122.0%。该方法的检出限(LOD,S / N = 3)从2.0到8.5 ng L-1确定。该优化方法已成功应用于实际环境水样中16种多环芳烃的测定。 (C)2010 Elsevier B.V.保留所有权利。

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