Investigation of automated determination of germanium by hydride generation using in situ trapping on stable coatings in electrothermal atomic absorption spectrometry

被引:23
作者
Haug, HO
Liao, YP
机构
[1] Forschungszentrum Karlsruhe, Institut für Technische Chemie, D-76021 Karlsruhe
[2] Peking University, Beijing
关键词
germanium hydride; in situ hydride trapping; graphite furnace atomizer; stable trapping reagent; atomic absorption spectrometry;
D O I
10.1039/ja9951001069
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Sequestering and in situ concentration of Ge hydride in the graphite furnace can be automated by using a highly stable trapping reagent to replace the Pd modifier, In a systematic study, two groups of trapping reagents which require only a single application, i,e,, carbide-forming elements (Zr, Nh, Ta or W) and noble metals (Ir, Pd-Ir), were investigated and trapping temperature curves were measured, It was shown that effective trapping of germane is possible on Zr-coated tubes and platforms at trapping temperatures of 550-750 and 600-800 degrees C, respectively, Trapping temperatures should not exceed 650 degrees C (the 'critical temperature') because at temperatures higher than 650 degrees C errors in absorbance values could occur owing to an adsorptive 'carry-over effect', Good signal stability was observed over more than 400 complete trapping and atomization cycles, and a precision of better 3% was obtained, Comparatively small signals were observed for the Nb-, Ta- and W-coatings. Ir-coated graphite tubes allowed trapping of germane at lower temperatures (400-500 degrees C) but the signals were small and of low stability, compared with those for the Zr coating, Characteristic masses of about 54 pg of Ge on Zr-coated graphite tubes (peak height) and 108 pg of Ge on Zr-coated platforms (integrated absorbance) were observed, and the calibration graphs were linear up to 4 ng of Ge on both tubes and platforms,The detection limit was 18 pg of Ge for a 1 ml sample volume using flow injection hydride generation, The method was tested by applying it to the determination of Ge in sediment, geological and low-alloy steel certified reference materials.
引用
收藏
页码:1069 / 1076
页数:8
相关论文
共 38 条
[21]  
NI ZM, 1991, J ANAL ATOM SPECTROM, V6, P385
[22]  
SCHLEMMER G, 1995, APR C AN AT SPECTR C
[23]   LONG-TERM STABILITY OF A MIXED PALLADIUM IRIDIUM TRAPPING REAGENT FOR INSITU HYDRIDE TRAPPING WITHIN A GRAPHITE ELECTROTHERMAL ATOMIZER [J].
SHUTTLER, IL ;
FEUERSTEIN, M ;
SCHLEMMER, G .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 1992, 7 (08) :1299-1301
[24]   DETERMINATION OF GERMANIUM BY GRAPHITE-FURNACE ATOMIC-ABSORPTION SPECTROMETRY [J].
SOHRIN, Y ;
ISSHIKI, K ;
KUWAMOTO, T ;
NAKAYAMA, E .
TALANTA, 1987, 34 (03) :341-344
[25]   SEQUESTRATION OF VOLATILE ELEMENT HYDRIDES BY PLATINUM GROUP ELEMENTS FOR GRAPHITE-FURNACE ATOMIC-ABSORPTION [J].
STURGEON, RE ;
WILLIE, SN ;
SPROULE, GI ;
ROBINSON, PT ;
BERMAN, SS .
SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 1989, 44 (07) :667-682
[26]   ATOMIC-ABSORPTION DETERMINATION OF TIN USING INSITU CONCENTRATION OF STANNANE IN A GRAPHITE-FURNACE [J].
STURGEON, RE ;
WILLIE, SN ;
BERMAN, SS .
ANALYTICAL CHEMISTRY, 1987, 59 (19) :2441-2444
[28]   DETERMINATION OF TRACE AND ULTRA-TRACE AMOUNTS OF GERMANIUM IN ENVIRONMENTAL-SAMPLES BY PRECONCENTRATION IN A GRAPHITE-FURNACE USING A FLOW-INJECTION HYDRIDE GENERATION TECHNIQUE [J].
TAO, GH ;
FANG, ZL .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 1993, 8 (04) :577-584
[29]  
WAMOTO E, 1992, J ANAL ATOM SPECTROM, V7, P421
[30]  
WELZ B, 1991, ATOM SPECTROSC, V12, P91