Determination of lead and nickel in environmental samples by flame atomic absorption spectrometry after column solid-phase extraction on Ambersorb-572 with EDTA

被引:82
作者
Baytak, S
Türker, AR [1 ]
机构
[1] Gazi Univ, Dept Chem, Fac Sci & Arts, TR-06500 Ankara, Turkey
[2] Harran Univ, Dept Chem, Fac Sci & Arts, TR-63100 Sanlurfa, Turkey
关键词
lead; nickel; preconcentration; solid-phase extraction; Ambersorb-572; atomic absorption spectrometry;
D O I
10.1016/j.jhazmat.2005.08.019
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Lead and nickel were preconcentrated as their ethylenediaminetetraacedic acid (EDTA) complexes from aqueous sample solutions using a column containing Ambersorb-572 and determined by flame atomic absorption spectrometry (FAAS). pH values, amount of solid phase, elution solution and flow rate of sample solution have been optimized in order to obtain quantitative recovery of the analytes. The effect of interfering ions on the recovery of the analytes has also been investigated. The recoveries of Pb and Ni under the optimum conditions were 99 +/- 12 and 97 +/- 13%, respectively, at 95% confidence level. Seventy-five-fold (using 750 mL of sample solution and 10 mL of eluent) and 50-fold (using 500 mL of sample solution and 10 mL of eluent) preconcentration was obtained for Pb and Ni, respectively. Time of analysis is about 4.5 h (for obtaining enrichment factor of 75). By applying these enrichment factors, the analytical detection limits of Pb and Ni were found as 3.65 and 1.42 ng mL(-1), respectively. The capacity of the sorbent was found as 0.17 and 0.21 mmol g(-1) for Pb and Ni, respectively. The interferences of some cations, such as Mn(2+) Co(2+), Fe(3+), Al(3+), Zn(2+), Cd(2+), Ca(2+), Mg(2+), K(+) and Na(+) usually present in water samples were also studied. This procedure was applied to the determination of lead and nickel in parsley, green onion, sea water and waste water samples. The accuracy of the procedure was checked by determining Pb and Ni in standard reference tea leaves sample (GBW-07605). The results demonstrated good agreement with the certified values. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:130 / 136
页数:7
相关论文
共 27 条
[11]   Determination of iron, manganese and zinc in water samples by flame atomic absorption spectrophotometry after preconcentration with solid-phase extraction onto Ambersorb 572 [J].
Kendüzler, E ;
Türker, AR .
ANALYTICAL SCIENCES, 2002, 18 (08) :917-921
[12]   Determination of nickel in fingernails and forearm skin (stratum corneum) [J].
Kristiansen, J ;
Christensen, JM ;
Henriksen, T ;
Nielsen, NH ;
Menné, T .
ANALYTICA CHIMICA ACTA, 2000, 403 (1-2) :265-272
[13]   Solid-phase spectrophotometric determination of nickel in water and vegetable samples at sub-μg 1-1 level with o-carboxylphenyldiazoaminoazobenzene loaded XAD-4 [J].
Liu, YW ;
Chang, XJ ;
Wang, S ;
Guo, Y ;
Din, BJ ;
Meng, SM .
TALANTA, 2004, 64 (01) :160-166
[14]   IMMOBILIZED CYANOBACTERIA FOR ONLINE TRACE-METAL ENRICHMENT BY FLOW-INJECTION ATOMIC-ABSORPTION SPECTROMETRY [J].
MAQUIEIRA, A ;
ELMAHADI, HAM ;
PUCHADES, R .
ANALYTICAL CHEMISTRY, 1994, 66 (21) :3632-3638
[15]  
Mizuike A., 1983, ENRICHMENT TECHNIQUE
[16]   High preconcentration of ultra-trace metal ions by liquid-liquid extraction using water/oil/water emulsions as liquid surfactant membranes [J].
Okamoto, Y ;
Nomura, Y ;
Nakamura, H ;
Iwamaru, K ;
Fujiwara, T ;
Kumamaru, T .
MICROCHEMICAL JOURNAL, 2000, 65 (03) :341-346
[17]   Preconcentration of Cd(II) and Pb(II) using humic substances and flow systems coupled to flame atomic absorption spectrometry [J].
Pereira, MD ;
Arruda, MAZ .
MICROCHIMICA ACTA, 2004, 146 (3-4) :215-222
[18]   Coprecipitation of heavy metals with erbium hydroxide for their flame atomic absorption spectrometric determinations in environmental samples [J].
Soylak, M ;
Saracoglu, S ;
Divrikli, U ;
Elci, L .
TALANTA, 2005, 66 (05) :1098-1102
[19]   Removal and recovery of mercury(II) from hazardous wastes using 1-(2-thiazolylazo)-2-naphthol functionalized activated carbon as solid phase extractant [J].
Starvin, AM ;
Rao, TP .
JOURNAL OF HAZARDOUS MATERIALS, 2004, 113 (1-3) :75-79
[20]  
Templeton D., 1990, BIOL MONITORING CHEM