Investigation of chemical modifiers for the determination of lead in fertilizers and limestone using graphite furnace atomic absorption spectrometry with Zeeman-effect background correction and slurry sampling

被引:27
作者
Borges, Aline R. [1 ,2 ]
Becker, Emilene M. [1 ]
Dessuy, Morgana B. [1 ]
Vale, Maria Goreti R. [1 ,2 ]
Welz, Bernhard [2 ,3 ]
机构
[1] Univ Fed Rio Grande do Sul, Inst Quim, BR-91501970 Porto Alegre, RS, Brazil
[2] Univ Fed Bahia, Inst Nacl Ciencia & Tecnol, CNPq INCT Energia & Ambiente, Salvador, BA, Brazil
[3] Univ Fed Santa Catarina, Dept Quim, BR-88040900 Florianopolis, SC, Brazil
关键词
Lead; Slurry sampling; Fertilizer analysis; GF AAS; Chemical modifier; BIOLOGICAL SAMPLES; CADMIUM; METALS; COPPER; FEASIBILITY; NICKEL; COBALT; ETAAS; WHEAT; ZINC;
D O I
10.1016/j.sab.2013.11.001
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
In this work, chemical modifiers in solution (Pd/Mg, NH4H2PO4 and NH4NO3/Pd) were compared with permanent modifiers (Ir and Ru) for the determination of lead in fertilizer and limestone samples using slurry sampling and graphite furnace atomic absorption spectrometry with Zeeman-effect background correction. The analytical line at 283.3 nm was used due to some spectral interference observed at 217.0 nm. The NH4H2PO4 was abandoned due to severe spectral interference even at the 2833-nm line. For Pd/Mg and NH4NO3/Pd the optimum pyrolysis and atomization temperatures were 900 degrees C and 1900 degrees C, respectively. For Ru and Ir, the integrated absorbance signal was stable up to pyrolysis temperatures of 700 degrees C and 900 degrees C, respectively, and up to atomization temperature of 1700 degrees C. The limit of detection (LOD) was 17 ng g(-1) using Pd/Mg and 29 ng g(-1) using NH4NO3/Pd. Among the permanent modifiers investigated, the LOD was 22 ng g(-1) Pb for Ir and 10 ng g(-1) Pb for Ru. The accuracy of the method was evaluated using the certified reference material NIST SRM 695. Although Ru provided lower LOD, which can be attributed to a lower blank signal, only the modifiers in solution showed concordant values of Pb concentration for the NIST SRM 695 and the most of analyzed samples. Moreover, the Pd/Mg modifier provided the highest sensitivity and for this reason it is more suitable for the determination of Pb in fertilizers samples in slurry; besides this it presented a better signal-to-noise ratio than NH4NO3/Pd. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:1 / 8
页数:8
相关论文
共 50 条
[41]   Determination of gallium in soil by slurry-sampling graphite-furnace atomic-absorption spectrometry [J].
Langodegård, M ;
Wibetoe, G .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2002, 373 (08) :820-826
[42]   Determination of silicon in nickel-based alloys using electrothermal atomic absorption spectrometry with longitudinal Zeeman-effect background correction and zinc oxide pretreatment [J].
Chen, SY ;
Wu, MS ;
Tsai, SJJ .
ANALYTICA CHIMICA ACTA, 2001, 435 (02) :357-366
[43]   DIRECT DETERMINATION OF CADMIUM IN SEA-WATER USING ELECTROTHERMAL ATOMIZATION ATOMIC-ABSORPTION SPECTROMETRY WITH ZEEMAN-EFFECT BACKGROUND CORRECTION AND OXALIC-ACID AS A CHEMICAL MODIFIER [J].
CABON, JY ;
LEBIHAN, A .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 1992, 7 (02) :383-388
[44]   A green method for the simultaneous determination of Cd and Pb in soil and sediment by slurry sampling graphite furnace atomic absorption spectrometry [J].
Souza, Alexandre Luiz ;
da Silva, Fabio Ferreira ;
Kelmer, Gislayne A. R. ;
Oliveira, Pedro Vitoriano .
ANALYTICAL METHODS, 2013, 5 (08) :2059-2063
[45]   Feasibility of employing permanent chemical modifiers for the determination of cadmium in coal using slurry sampling electrothermal atomic absorption spectrometry [J].
Bianchin, L ;
Nadvorny, D ;
da Silva, AF ;
Vale, MGR ;
da Silva, MM ;
dos Santos, WNL ;
Ferreira, SLC ;
Welz, B ;
Heitmann, U .
MICROCHEMICAL JOURNAL, 2006, 82 (02) :174-182
[46]   Crosslinked Carboxymethyl Starch Based Solid Phase Extraction Combined with Direct Slurry Sampling Graphite Furnace Atomic Absorption Spectrometry for the Determination of Trace Lead in Water Samples [J].
Gao, Mengwei ;
Shen, Min ;
Lo, Huakun ;
Chen, Hao ;
Li, Shengqing ;
Xue, Aifang .
FUNDAMENTAL OF CHEMICAL ENGINEERING, PTS 1-3, 2011, 233-235 :452-456
[47]   Determination of lead in blood by graphite furnace atomic absorption spectrometry with Zeeman background correction: Improving a well-established method to support a lower blood lead reference value for children [J].
Pacer, Emily J. ;
Palmer, Christopher D. ;
Parsons, Patrick J. .
SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 2022, 190
[48]   Rapid determination of lead and cadmium in biological fluids by electrothermal atomic absorption spectrometry using Zeeman correction [J].
Campillo, N ;
Viñas, P ;
López-García, I ;
Hernández-Córdoba, M .
ANALYTICA CHIMICA ACTA, 1999, 390 (1-3) :207-215
[49]   Direct determination of trace arsenic in coal by slurry-sampling graphite-furnace atomic absorption spectrometry [J].
Chen, SZ .
SPECTROSCOPY AND SPECTRAL ANALYSIS, 2004, 24 (10) :1267-1269
[50]   Determination of copper in airborne particulate matter using slurry sampling and chemical vapor generation atomic absorption spectrometry [J].
Silva, Laiana O. B. ;
Leao, Danilo J. ;
dos Santos, Debora C. ;
Matos, Geraldo D. ;
de Andrade, Jailson B. ;
Ferreira, Sergio L. C. .
TALANTA, 2014, 127 :140-145