>
Fa   |   Ar   |   En
   solid-phase extraction combined with dispersive liquid-liquid microextraction based on solidification of floating organic droplet for simultaneous determination of organochlorine pesticides and polychlorinated biphenyls in fish  
   
نویسنده xu lijun ,miao xiaohuan ,yang zhaoguang ,li haipu ,qiu bo
منبع food analytical methods - 2019 - دوره : 12 - شماره : 8 - صفحه:1871 -1885
چکیده    Solid-phase extraction (spe) was combined with dispersive liquid-liquid microextraction based on solidification of floating organic droplet (dllme-sfo) as a pretreatment technique for the simultaneous analysis of 11 organochlorine pesticides (ocps) and 5 polychlorinated biphenyls (pcbs) in fish tissue. gas chromatography with electron capture detector was used for the identification and quantification of these compounds. in the newly developed method, the acetonitrile extractant of the fish sample was cleaned up by commercialized spe cartridges packed with acid alumina, and then mixed with water, sodium-chloride, and n-pentadecane for the purpose of target analyte enrichment via dllme-sfo process. effect of the parameters including spe packing material, amount and chemical nature of extraction solvent, water volume, and salt concentration on the signal responses were investigated, and the recoveries of this method ranged between 70.1% and 112.3% at three spiked levels under the optimized conditions. the calibration curves were found to be linear in the range of 1.56–312.5 μg l−1, and the limits of detection ranged from 0.372 to 1.12 μg kg−1. comparing the other reported pretreatment method, the presented one was sensitive, time-saving, and environmentally friendly.
کلیدواژه dispersive liquid-liquid microextraction based on solidification of floating organic droplet ,fish ,gas chromatography with electron capture detection ,organochlorine pesticides ,polychlorinated biphenyls ,solid-phase extraction
آدرس central south university, center for environment and water resources/college of chemistry and chemical engineering, people’s republic of china. key laboratory of hunan province for water environment and agriculture product safety, lushannan road 932#, people’s republic of china. changsha animal disease prevention and control center, people’s republic of china, central south university, center for environment and water resources/college of chemistry and chemical engineering, people’s republic of china. key laboratory of hunan province for water environment and agriculture product safety, lushannan road 932#, people’s republic of china, central south university, center for environment and water resources/college of chemistry and chemical engineering, people’s republic of china. key laboratory of hunan province for water environment and agriculture product safety, lushannan road 932#, people’s republic of china, central south university, center for environment and water resources/college of chemistry and chemical engineering, people’s republic of china. key laboratory of hunan province for water environment and agriculture product safety, lushannan road 932#, people’s republic of china, central south university, center for environment and water resources/college of chemistry and chemical engineering, people’s republic of china. key laboratory of hunan province for water environment and agriculture product safety, lushannan road 932#, people’s republic of china
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved