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首页> 外文期刊>Journal of separation science. >Determination of organic pollutants in coking wastewater by dispersive liquid-liquid microextraction/GC/MS
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Determination of organic pollutants in coking wastewater by dispersive liquid-liquid microextraction/GC/MS

机译:分散液-液微萃取/ GC / MS测定焦化废水中的有机污染物

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摘要

A method based on dispersive liquid-liquid microextraction coupled with GC/MS was developed for quantitative analysis of the major organic pollutants listed in the United States Environmental Protection Agency method 8270 and the 15 European-priority polycyclic aromatic hydrocarbons in coking wastewater. The major parameters such as extraction solvent, dispersive solvent, solution pH, and extraction time were systematically optimized. The optimum extraction conditions were found to be: 15 μL mixture of 2:1 v/v carbon tetrachloride and chlorobenzene as the extraction solvent, 0.75 mL ACN as the dispersive solvent, solution pH of 8, and extraction time of 2 min. For the major pollutants listed in the United States Environmental Protection Agency 8270, the linear ranges were 0.1 to 100 mg/L, the enrichment factors ranged from 452 to 685, and the relative recoveries ranged from 67.5 to 103.5% with RSDs of 4.0-9.1% (n = 5) at the concentrations of 10 mg/L under the optimum extraction conditions. For the 15 polycyclic aromatic hydrocarbons, the linear ranges were 0.1 to 100 μg/L, the enrichment factors ranged from 645 to 723, and the relative recoveries ranged from 94.5 to 107.6% with RSDs of 4.6-9.0% (n = 5) at the concentrations of 10 μg/L. The usefulness of the developed method was demonstrated by applying it in the analysis of real-world coking wastewater samples.
机译:建立了一种基于分散液-液微萃取结合GC / MS的方法,用于定量分析美国环境保护局方法8270中列出的主要有机污染物和焦化废水中15种欧洲优先的多环芳烃。系统地优化了萃取溶剂,分散溶剂,溶液pH和萃取时间等主要参数。发现最佳提取条件为:15μL的2:1 v / v四氯化碳和氯苯的混合物作为萃取溶剂,0.75 mL ACN作为分散溶剂,溶液pH为8,萃取时间为2分钟。对于美国环境保护局8270中列出的主要污染物,线性范围为0.1至100 mg / L,富集因子为452至685,相对回收率为67.5至103.5%,RSD为4.0-9.1在最佳提取条件下,浓度为10 mg / L时,%(n = 5)。对于15种多环芳烃,线性范围为0.1至100μg/ L,富集系数为645至723,相对回收率范围为94.5至107.6%,相对标准偏差为4.6-9.0%(n = 5)。浓度为10μg/ L。通过将其用于现实世界中的焦化废水样品分析,证明了该方法的有用性。

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