Cortada Carol, Vidal Lorena, Pastor Raul, Santiago Noemi, Canals Antonio
Labaqua S.A., C/Dracma 16-18, Pol. Ind. Las Atalayas, 03114 Alicante, Spain.
Anal Chim Acta. 2009 Sep 7;649(2):218-21. doi: 10.1016/j.aca.2009.07.041. Epub 2009 Jul 21.
A rapid and simple dispersive liquid-liquid microextraction (DLLME) has been developed to preconcentrate eighteen organochlorine pesticides (OCPs) from water samples prior to analysis by gas chromatography-mass spectrometry (GC-MS). The studied variables were extraction solvent type and volume, disperser solvent type and volume, aqueous sample volume and temperature. The optimum experimental conditions of the proposed DLLME method were: a mixture of 10 microL tetrachloroethylene (extraction solvent) and 1 mL acetone (disperser solvent) exposed for 30 s to 10 mL of the aqueous sample at room temperature (20 degrees C). Centrifugation of cloudy solution was carried out at 2300 rpm for 3 min to allow phases separation. Finally, 2 microL of extractant was recovered and injected into the GC-MS instrument. Under the optimum conditions, the enrichment factors ranged between 46 and 316. The calculated calibration curves gave a high-level linearity for all target analytes with correlation coefficients ranging between 0.9967 and 0.9999. The repeatability of the proposed method, expressed as relative standard deviation, varied between 5% and 15% (n=8), and the detection limits were in the range of 1-25 ng L(-1). The LOD values obtained are able to detect these OCPs in aqueous matrices as required by EPA methods 525.2 and 625. Analysis of spiked real water samples revealed that the matrix had no effect on extraction for river, surface and tap waters; however, urban wastewater sample shown a little effect for five out of eighteen analytes.
已开发出一种快速简便的分散液液微萃取(DLLME)方法,用于在气相色谱 - 质谱联用(GC - MS)分析之前对水样中的18种有机氯农药(OCPs)进行预浓缩。研究的变量包括萃取溶剂类型和体积、分散剂溶剂类型和体积、水样体积和温度。所提出的DLLME方法的最佳实验条件为:在室温(20℃)下,将10微升四氯乙烯(萃取溶剂)和1毫升丙酮(分散剂溶剂)的混合物暴露于10毫升水样中30秒。将浑浊溶液以2300转/分钟的速度离心3分钟以实现相分离。最后,回收2微升萃取剂并注入GC - MS仪器。在最佳条件下,富集因子在46至316之间。计算得到的校准曲线对所有目标分析物具有高度线性,相关系数在0.9967至0.9999之间。所提出方法的重复性以相对标准偏差表示,在5%至15%之间(n = 8),检测限在1 - 25纳克/升范围内。获得的检测限能够按照美国环保署方法525.2和625的要求检测水样中的这些OCPs。对加标实际水样的分析表明,对于河水、地表水和自来水,基质对萃取没有影响;然而,城市废水样品对18种分析物中的5种显示出轻微影响。