Head-space flow injection for the on-line determination of iodide in urine samples with chemiluminescence detection

被引:25
作者
Burguera, JL
Brunetto, MR
Contreras, Y
Burguera, M
Gallignani, M
Carrero, P
机构
[1] IV AIQUIM, Faculty of Sciences, University of Los Andes, Mérida, 5101-A
关键词
chemiluminescence detection; head-space flow injection; iodide; urine;
D O I
10.1016/0039-9140(95)01722-4
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A simple head-space (HS) flow injection (FI) system with chemiluminescence (CL) detection for the determination of iodide as iodine in urine is presented. The iodide is converted to iodine by potassium dichromate under stirring in the closed HS vial, and the iodine is released from urine by thermostatting and is carried in a nitrogen flow through an iodide trapping solution. The concomitant introduction of aliquots of iodine, luminol and cobalt(II) solutions by means of a time-based injector into an FI system allowed its mixing in a flow-through cell in front of the detector. The emission intensity at 425 nm was recorded as a function of rime. The salting-out of the standard solutions affected the gas-liquid distribution coefficient of iodine in the HS vial. The typical analytical working graphs obtained under the optimized experimental conditions were rectilinear from 0 to 5 mg l(-1) iodine, achieving a precision of 2.3 and a relative standard deviation of 1.8 for ten replicate analyses of 50 and 200 mu g l(-1) iodine. However, a second-order process becomes significant at higher iodine concentrations (from 10 to 40 mg l(-1)). The detection limit of the method is 10 mu g l(-1) (80 ng) iodine when 8 mi samples are taken. Data for the iodide content of 10 urine samples were in good agreement with those obtained by a conventional catalytic method, and recoveries varied between 101 and 103% for urine samples spiked with different amounts of iodide. The analysis of one sample takes less than 20 min. In the present study the iodide levels found for 100 subjects were 86.8 +/- 19.0 (61-125) mu g l(-1), which is lower than the WHO's optimal level (150-300 mu g per day).
引用
收藏
页码:839 / 850
页数:12
相关论文
共 51 条
[1]   TRENDS IN PURGE-AND-TRAP [J].
ABEEL, SM ;
VICKERS, AK ;
DECKER, D .
JOURNAL OF CHROMATOGRAPHIC SCIENCE, 1994, 32 (08) :328-338
[2]  
ALTMAN PL, 1971, BLOOD OTHER BODY FLU, P363
[3]   FLOW-INJECTION ANALYSIS OF SEAWATER - ANIONIC AND ORGANIC-SPECIES [J].
ATIENZA, J ;
HERRERO, MA ;
MAQUIEIRA, A ;
PUCHADES, R .
CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 1991, 22 (05) :331-344
[4]  
Belcher R, 1970, QUANTITATIVE INORGAN
[5]  
BENOTTI J, 1965, CLIN CHEM, V11, P932
[6]   FLOW-INJECTION ANALYSIS FOR MONITORING CHEMI-LUMINESCENT REACTIONS [J].
BURGUERA, JL ;
TOWNSHEND, A ;
GREENFIELD, S .
ANALYTICA CHIMICA ACTA, 1980, 114 (FEB) :209-214
[7]  
BURGUERA JL, 1982, AN QUIM B-INORG ANAL, V78, P307
[8]   DETERMINATION OF MANGANESE(II) BY A CHEMI-LUMINESCENCE REACTION [J].
BURGUERA, JL ;
TOWNSHEND, A .
TALANTA, 1981, 28 (10) :731-735
[9]   DETERMINATION OF ZINC AND CADMIUM BY FLOW-INJECTION ANALYSIS AND CHEMI-LUMINESCENCE [J].
BURGUERA, JL ;
BURGUERA, M ;
TOWNSHEND, A .
ANALYTICA CHIMICA ACTA, 1981, 127 (JUN) :199-201
[10]  
BURGUERA JL, 1981, TALANTA, V28, P1981