Development and evaluation of an analytical procedure for the determination of antimony in plant materials by hydride generation atomic absorption spectrometry

被引:35
作者
Krachler, M [1 ]
Burow, M [1 ]
Emons, H [1 ]
机构
[1] Forschungszentrum Julich, Inst Appl Phys Chem, D-52425 Julich, Germany
关键词
D O I
10.1039/a900437h
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A procedure for the reliable trace determination of Sb in plant samples based on hydride generation atomic absorption spectrometry (HG-AAS) was developed. Prior to HG-AAS, aliquots (200-400 mg) of dry samples were mineralized with 3 ml of nitric acid, 0.5 ml of sulfuric acid, 0.5 mi of hydrofluoric acid and 0.3 mi of perchloric acid in open digestion vessels made of glassy carbon in a heating block. The accuracy and precision of the developed method was evaluated by the use of six certified plant reference materials. Experimental results for Sb in these reference materials (CRM 281 Rye Grass, BCR, Brussels, Belgium; GBW 07604 Poplar Leaves, GBW 07602 Bush Branches and Leaves and GBW 07605 Tea, Institute of Geophysical and Geochemical Exploration, Langfang, China; and SRM 1515 Apple Leaves and SRM 1575 Pine Needles, NIST,Gaithersburg, MD, USA) agreed well with the certified or indicative values. The detection limit (3 alpha in digestion solutions of plant samples was 0.01 mu g 1(-1), the quantification limit of the entire procedure for a reliable: determination of Sb was 70 pg Sb g-l dry powder. The reproducibility of repetitive measurements of digestion solutions was 3.4% at 0.5 mu g Sb 1(-1) and 2.0% at 1 mu g Sb 1(-1). To demonstrate the suitability of the developed method, Sb was determined in leaves of elder bushes (153 +/- 5 ng g(-1)), poplar leaves (75 +/- 4 ng g(-1)) and beach leaves from two different locations (79 +/- 3 and 100 +/- 3 ng g(-1)), pine shoots (71 +/- 4 ng g(-1)) and spruce shoots from two sites (141 +/- 6 and 29 +/- 1 ng g(-1)). The quantification of Sb from fresh and freeze-dried spruce shoots and beech leaves revealed that the drying process has no distinct influence on the concentration of Sb in the investigated plant materials.
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页码:777 / 782
页数:6
相关论文
共 15 条
[1]   Determination of antimony in urine, blood and serum and in liver and lung tissues of infants by inductively coupled plasma mass spectrometry [J].
Delves, CE ;
Sieniawska, CE ;
Fell, GS ;
Lyon, TDB ;
Dezateux, C ;
Cullen, A ;
Variend, S ;
Bonham, JR ;
Chantler, SM .
ANALYST, 1997, 122 (11) :1323-1329
[2]  
*DFG, 1996, MAK BAT WERT LIST 19
[3]   Antimony speciation in freshwater plant extracts by using hydride generation gas chromatography mass spectrometry [J].
Dodd, M ;
Pergantis, SA ;
Cullen, WR ;
Li, H ;
Eigendorf, GK ;
Reimer, KJ .
ANALYST, 1996, 121 (02) :223-228
[4]   DIRECT-DETECTION OF ANTIMONY IN ENVIRONMENTAL AND BIOLOGICAL SAMPLES AT TRACE CONCENTRATIONS BY LASER-INDUCED FLUORESCENCE IN GRAPHITE-FURNACE WITH AN INTENSIFIED CHARGE-COUPLED-DEVICE [J].
ENGER, J ;
MARUNKOV, A ;
CHEKALIN, N ;
AXNER, O .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 1995, 10 (08) :539-549
[5]  
GARCIA AM, 1995, FRESEN J ANAL CHEM, V353, P128
[6]   Identification and chromatographic separation of antimony species with α-hydroxy acids [J].
Guy, A ;
Jones, P ;
Hill, SJ .
ANALYST, 1998, 123 (07) :1513-1518
[7]   Simplex optimisation of conditions for the determination of antimony in environmental samples by using electrothermal atomic absorption spectrometry [J].
Koch, I ;
Harrington, CF ;
Reimer, KJ ;
Cullen, WR .
TALANTA, 1997, 44 (05) :771-780
[8]   Trace element status of hemodialyzed patients [J].
Krachler, M ;
Wirnsberger, G ;
Irgolic, KJ .
BIOLOGICAL TRACE ELEMENT RESEARCH, 1997, 58 (03) :209-221
[9]   Influence of sample pre-treatment on the determination of trace elements in urine by quadrupole and magnetic sector field inductively coupled plasma mass spectrometry [J].
Krachler, M ;
Alimonti, A ;
Petrucci, F ;
Forastiere, F ;
Caroli, S .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 1998, 13 (08) :701-705
[10]  
Krachler M, 1996, FRESEN J ANAL CHEM, V355, P120