EFFECT OF STRAY LIGHT ON CHARACTERISTIC MASS IN ZEEMAN GRAPHITE-FURNACE ATOMIC-ABSORPTION SPECTROMETRY

被引:14
作者
SU, EG
YUZEFOVSKY, AI
MICHEL, RG
MCCAFFREY, JT
SLAVIN, W
机构
[1] UNIV CONNECTICUT,DEPT CHEM,215 GLENBROOK RD,STORRS,CT 06269
[2] PERKIN ELMER CORP,NORWALK,CT 06859
[3] BONAIRE TECHNOL,RIDGEFIELD,CT 06877
关键词
D O I
10.1006/mchj.1993.1103
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The characteristic mass (m0), the effective stray light (α), the Zeeman rollover absorbance (Ar), and the Zeeman sensitivity ratio (R) were studied systematically as a function of lamp current and slit width. The effective stray light, α, was considered to be the sum of all effects that either are different sources of stray light or behave like stray light. Mathematical expressions are presented to describe the relationships between m0, R, α, and Ar. The characteristic mass, m0 is directly related to the effective stray light and the Zeeman sensitivity ratio. R. The Zeeman rollover absorbance, Ar, is a quantitative measure of the effective stray light. By taking α and R into account, a stable characteristic mass value, cm0 was obtained for copper, silver, thallium, and chromium for different lamp currents and slit widths. This gave rise to a new concept "the corrected characteristic mass." Without correction for these effects, the relative standard deviations (RSDs) of measured characteristic mass values, m0, were 8% for Cr, 19% for Tl, 20% for Cu, and 26% for Ag, for a wide range of currents and/or slit widths. After correction for the effects of rs and R, the corrected characteristic masses, cm0, were stable with an RSD of only 4% for Cu, Cr, and TI, and 7% for Ag. © 1993 Academic Press. All rights reserved.
引用
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页码:278 / 302
页数:25
相关论文
共 28 条
[1]  
De Galan L., 1970, ANAL CHIM ACTA, V50, P39
[2]   ATOMIC-ABSORPTION COEFFICIENT OF THE SE-196 NM LINE - THEORETICAL CALCULATION AND EXPERIMENTAL EVALUATION [J].
DEDINA, J .
SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 1991, 46 (03) :379-391
[3]   INFLUENCE OF EMISSION FROM THE FURNACE WALL ON ZEEMAN ATOMIC-ABSORPTION SPECTROMETRIC SIGNALS [J].
DELOOSVOLLEBREGT, MTC ;
VANOCHTEN, PJ .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 1990, 5 (03) :183-187
[4]   NON-LINEARITY AND RANGE OF ANALYTICAL CURVES IN ZEEMAN-EFFECT ATOMIC-ABSORPTION SPECTROMETRY [J].
DELOOSVOLLEBREGT, MTC ;
KOOT, JP ;
PADMOS, J .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 1989, 4 (05) :387-391
[5]   STRAY LIGHT IN ZEEMAN AND PULSED HOLLOW-CATHODE LAMP ATOMIC-ABSORPTION SPECTROMETRY [J].
DELOOSVOLLEBREGT, MTC ;
DEGALAN, L .
SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 1986, 41 (06) :597-610
[6]   THE SHAPE OF ANALYTICAL CURVES IN ZEEMAN ATOMIC-ABSORPTION SPECTROSCOPY .2. THEORETICAL-ANALYSIS AND EXPERIMENTAL-EVIDENCE FOR ABSORPTION MAXIMUM IN THE ANALYTICAL CURVE [J].
DELOOSVOLLEBREGT, MTC ;
DEGALAN, L .
APPLIED SPECTROSCOPY, 1980, 34 (04) :464-472
[7]   TEMPERATURE-DEPENDENCE OF ATOMIZATION EFFICIENCIES IN GRAPHITE FURNACES [J].
FRECH, W ;
BAXTER, DC .
SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 1990, 45 (08) :867-886
[8]  
GILMUTDINOV AK, 1992, SPECTROCHIM ACTA B, V7, P1075
[9]  
GUELL OA, 1991, APPL SPECTROSC, V47, P1171
[10]   QUALITY-CONTROL OF HOLLOW-CATHODE LAMPS IN ZEEMAN GRAPHITE-FURNACE ATOMIC-ABSORPTION SPECTROMETRY [J].
LVOV, BV ;
KOCHAROVA, NV ;
POLZIK, LK ;
ROMANOVA, NP ;
YARMAK, YI .
SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 1992, 47 (06) :843-854