Direct magnetic sorbent sampling flame atomic absorption spectrometry (DMSS-FAAS) for highly sensitive determination of trace metals

被引:26
作者
Costa, Lucimara Mendonca [1 ,2 ]
Borges, Fabricio Alves [1 ,2 ]
Cavalcanti, Marcello Henrique da Silva [2 ]
do Lago, Ayla Campos [1 ,2 ]
Tarley, Cesar Ricardo Teixeira [3 ]
Martins, Giovana de Fatima Lima [2 ]
Figueiredo, Eduardo Costa [1 ]
机构
[1] Univ Fed Alfenas, Fac Pharmaceut Sci, Lab Toxicant & Drug Anal, BR-37130001 Alfenas, MG, Brazil
[2] Univ Fed Alfenas, Inst Chem, BR-37130001 Alfenas, MG, Brazil
[3] Univ Estadual Londrina, Dept Chem, Rodovia Celso Garcia Cid 445,Km 380, BR-86057970 Londrina, PR, Brazil
基金
巴西圣保罗研究基金会;
关键词
Direct magnetic sorbent sampling; DMSS; Flame atomic absorption spectrometry; Metal; Dispersive solid-phase extraction; Magnetic aerogel graphene oxide; Magnetic particles; ACCESS CARBON NANOTUBES; GRAPHENE OXIDE; DIRECT EXTRACTION; WATER SAMPLES; PRECONCENTRATION; LEAD; SEAWATER; CADMIUM; COBALT; IONS;
D O I
10.1016/j.aca.2022.340709
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A procedure of direct magnetic sorbent sampling in flame atomic absorption spectrometry (DMSS-FAAS) was developed in this work. Metal-loaded magnetic sorbents were directly inserted in the flame of the FAAS for direct metal desorption/atomization. Magnetic graphene oxide aerogel (M-GOA) particles were synthesized, characterized, and used as a proof-of-concept in the magnetic dispersive solid phase extraction of Pb2+ ions from water samples. M-GOA was selected because is a light and porous sorbent, with high adsorption capacity, that is quickly burned by the flame. Magnetic particles were directly inserted in the flame by using a metallic magnetic probe, thereby avoiding the need for a chemical elution step. As all the extracted Pb2+ ions arrive to the flame without passing through the nebulization system, a drastic increase in the analytical signal was achieved. The improvement in the sensitivity of the proposed method (DMSS-FAAS) for Pb2+ determination was at least 40 times higher than the conventional procedure in which the Pb2+ is extracted, eluted, and analyzed by conventional flame atomic absorption spectrometry (FAAS) via the nebulization system. The analytical curve was linear from 5.0 to 180.0 mu g L-1 and the limit of detection was found to be 1.30 mu g L-1. Background measurements were insignificant, and the atomic absorption peaks were narrow and reproducible. Precision assessed as a percentage of the relative standard deviation %RSD was found to be 17.4, 7.1, and 7.8% for 10, 70, and 180 mu g L-1 levels, respectively. The method showed satisfactory results even in the presence of other ions (Al3+, Cr3+, Co2+, Cu2+, Fe3+, Mn2+, Ba2+, Mg2+, and Li+). The performance of the new system was also evaluated for Cd2+ ions, as well as by using other magnetic particles available in our lab: magnetic carbon nanotubes (M-CNTs), magnetic restricted access carbon nanotubes (M-RACNT), magnetic poly (methacrylic acid-co-ethylene glycol dimetha-crylate) (M-PMA), magnetic nanoparticles coated with orange powder peel (M-OPP) , magnetic nanoparticles covered with SiO2 (M -SiO2). Analytical signals increased for both analytes in all sorbents (increases of about 4-37 times), attesting the high potential , applicability of the proposed method. Simplicity, high analytical frequency, high detectability and reproducibility, low cost, and possibility of being totally mechanized are the most relevant advantages.
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页数:11
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