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Semi-micro solvent extraction as a rapid and efficient preconcentration technique for the determination of n-alkanes in oil-contaiminated water and soil samples by capillary gas chromatography

机译:半微溶剂萃取作为一种快速高效的预浓缩技术,通过毛细管气相色谱法测定油污染的水和土壤样品中的正构烷烃

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In this study, a rapid and efficient semi-micro extraction procedure is presented for the extraction of some higher n-alkanes from water and soil samples. In the case of water samples n-hexane was used as the organic phase in a phase volume ratio (volume of aqueous phase/volume of organic phase) higher than 285, while in the case of soil samples, extraction with n-hexane was carried out in the presence of an excess of 2 M NaCl solution. The extraction rate from soil samples is very high and is better than Soxhlet extraction, comparable with supercritical fluid extraction. High preconcentration factor in water samples allows the limits of detection to be in the ng.mL(-1) level with the use of gas chromatographic analysis. Flame ionization detector was used for monitoring the analytes. The obtained recoveries of all studied compounds from both water and soil samples are higher than 90%. This method was successfully used to determine some n-alkanes in municipal wastewater and contaminated soil. [References: 20]
机译:在这项研究中,提出了一种快速有效的半微量萃取程序,用于从水和土壤样品中萃取一些高级正构烷烃。在水样品中,使用正己烷作为有机相,其相体积比(水相体积/有机相体积)高于285,而在土壤样品中,使用正己烷进行萃取在过量的2 M NaCl溶液中萃取出来。从土壤样品中提取率非常高,并且比索氏提取法要好,与超临界流体提取法相当。水样品中的高预富集因子允许使用气相色谱分析法将检出限控制在ng.mL(-1)的水平。火焰离子检测器用于监测分析物。从水和土壤样品中获得的所有研究化合物的回收率均高于90%。该方法已成功用于测定城市废水和受污染土壤中的某些正构烷烃。 [参考:20]

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