Ionic liquid and magnetic multiwalled carbon nanotubes for extraction of N-methylcarbamate pesticides from water samples prior their determination by capillary electrophoresis

被引:33
作者
Ben Attig, Jihene [1 ,2 ,3 ]
Latrous, Latifa [3 ]
Zougagh, Mohammed [1 ,4 ]
Rios, Angel [1 ,5 ]
机构
[1] IRICA, Reg Inst Appl Sci Res, Camilo Jose Cela Ave, E-13005 Ciudad Real, Spain
[2] Univ Tunis El Manar, Fac Sci Tunis, Dept Chem, Lab Chim Analyt & Electrochim, Univ Campus El Manar 2, Tunis 2092, Tunisia
[3] Univ Tunis El Manar, Fac Sci Tunis, Dept Chem, Lab Chim Minerale Appl, Univ Campus El Manar 2, Tunis 2092, Tunisia
[4] Univ Castilla La Mancha, Fac Pharm, Analyt Chem & Food Technol Dept, Albacete, Spain
[5] Univ Castilla La Mancha, Dept Analyt Chem & Food Technol, Chem Sci & Technol Fac, Ciudad Real, Spain
关键词
N-methylcarbamate pesticides; Ionic liquid; Water samples; Magnetic multiwalled carbon nanotubes; Capillary electrophoresis; SOLID-PHASE MICROEXTRACTION; CARBAMATE PESTICIDES; FLUORESCENCE DETECTION; CHROMATOGRAPHY; CARBOFURAN; METHIOCARB; RESIDUES; CARBARYL; HPLC;
D O I
10.1016/j.talanta.2021.122106
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A simple and rapid microextraction procedure is reported on the use of ionic liquid (IL) in combination with magnetic multiwalled carbon nanotubes (MMWCNTs). The procedure is based on temperature-controlled IL dispersive liquid phase microextraction (DLPME) and MMWCNTs, for selective preconcentration of N-methylcarbamate pesticides in water samples, followed by their hydrolysis in alkaline buffer, prior to being analyzed by capillary electrophoresis. The extraction procedure uses small volume of organic solvents, and there is no need for centrifugation. In the experimental approach the IL was quickly disrupted by an ultrasonic probe, heated with the temperature controlled at 90 degrees C and dispersed in water samples in a homogenous form. At this stage, N-methylcarbamate pesticides migrate into the IL. Then the solution was cooled and small amounts of MMWCNTs were dispersed into the sample solutions to adsorb the ionic liquid containing the analytes and phase separation was completed. The ionic liquid allowed the microextraction of the analytes and a small volume of dichloromethane (DCM) was used for elution. MMWCNTs favored the adsorption of the ionic liquid with the analytes and improved the final recovery with respect to the use of simple magnetic nanoparticles as a sorbent material. Under the optimum conditions, limit of quantifications (LOQ) were achieved in the 5.6-9.3 ng mL(-1) range, with recoveries between 85.0% and 102.4%.
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页数:6
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