首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Method development and optimization for the determination of benzene, toluene, ethylbenzene and xylenes in water at trace levels by static headspace extraction coupled to gas chromatography-barrier ionization discharge detection
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Method development and optimization for the determination of benzene, toluene, ethylbenzene and xylenes in water at trace levels by static headspace extraction coupled to gas chromatography-barrier ionization discharge detection

机译:通过静态顶空萃取耦合到气相色谱 - 阻挡电离放电检测的痕量水平的水中血液中苯,甲苯,乙苯和二甲苯的方法的开发和优化

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Benzene, toluene, ethylbenzene, and xylenes, more commonly named BTEX, represent one of the most ubiquitous and hazardous groups of atmospheric pollutants. The goal of our research was the trace quantification of BTEX in water by using a new simple, low-cost, and accurate method, based on headspace (HS) extraction and gas chromatography (GC) coupled to barrier ionization discharge detector (BID). This water application dealt with simple matrices without protein, fat, or humic material that adsorb target analytes, thus the external standard calibration was suitable to quantify each compound. The validation steps included the study of linearity, detection and quantification limits, and accuracy. LODs and LOQs varied from 0.159 to 1.845 mu g/L and from 0.202 to 2.452 mu g/L, respectively. The recovery was between 0.74 +/- 0.13 and 1.15 +/- 0.09; relative standard deviations (% RDSs) were less than 12.81% (n = 5) and 14.84% (n = 10). Also, GC performance was evaluated in term of efficiency, peak tailing and resolution. Preliminary results from practical applications to analyses of real samples are presented. The results indicate that static HS coupled to GC-BID is a successful method for BTEX analysis in water samples at the mu g/L levels, provided that hydrocarbons interference occur at similar concentration levels. GC-BID may become a routine reference method alongside the official analytical techniques for quality control purposes of contaminated waters. Moreover, the new method is amenable to automation by using commercial HS units. (C) 2018 Published by Elsevier B.V.
机译:苯,甲苯,乙苯和二甲苯,更通常称为苯系物,代表了大气污染物的最普遍和危险的群体之一。我们的研究的目的是BTEX在水中的微量定量通过使用一个新的简单的,低成本的,并且精确的方法的基础上,顶部空间(HS)萃取和气相色谱耦合到屏障电离放电检测器(BID)(GC)。这种水应用处理简单矩阵无蛋白质,脂肪,或腐殖酸材料吸附目标分析物,因此外部标准校准是合适的量化的每种化合物。所述验证步骤包括线性,检测和定量的极限,以及精度的研究。检测限和定量限从0.159至1.845微米g / L和从0.202至2.452微米克/升,分别改变。回收率为0.74 +/- 0.13和1.15 +/- 0.09之间;相对标准偏差(%RDS中)小于12.81%(N = 5)和14.84%(N = 10)。此外,GC的性能效率,峰拖尾和解决的长期评价。从实际应用到实际样品的分析,初步结果。结果表明,静态HS耦合到GC-BID是用于在微克/升水平的水样中BTEX分析一种成功的方法,前提条件是烃干扰发生在相似的浓度水平。 GC-BID可能成为一起受污染水域的质量控制目的的官方分析技术常规的参考方法。此外,新的方法是通过使用商用HS单位易于自动化。 (c)2018由elestvier b.v出版。

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