Journal of Hebei University (Natural Science Edition) ›› 2004, Vol. 24 ›› Issue (2): 163-167.DOI: 10.3969/j.issn.1000-1565.2004.02.013
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2004-03-25
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2004-03-25
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[1] 锁然, 吕运开, 孙汉文, 张德强, SUO Ran, LU Yun-kai, SUN Han-wen, ZHANG De-qiang. 水中痕量铅的氢化物原子荧光测定 [J]. 河北大学学报(自然科学版) 2000.doi:10.3969/j.issn.1000-1565.2000.04.009 [2] 郭会时, 李益恒, 谢红旗, GUO Hui-shi, LI Yi-heng, XIE Hong-qi. 碳糊电极吸附伏安法测定痕量锑的研究 [J]. 分析试验室 2000.doi:10.3969/j.issn.1000-0720.2000.06.012 [3] 马美玲, 杨胜科, 耿征. 地质样品中微量锑的树脂相分光光度法测定研究 [J]. 陕西师大学报(自然科学版) 1997, 25(02). [4] 王湘. 砷钼蓝萃取光度法测定硫磺中微量砷 [J]. 理化检验-化学分册 1995, 31(01). [5] WIFLADT A M, WIBETON G, LUND W. Determination of antimony in wine by hydride generation graphite atomic absorption spectrometry [J]. Journal of Analytical Chemistry 1997, 357. [6] Laborda F, BOLEA E, LUAN R. Tubular electrolytic hydride generation for continuous and flow injection sample in atomic absorption spectrometry [J]. Journal of Analytical Atomic Spectrometry 2000, 15(03). [7] 姜建生, 黄淦泉, 钱沙华, 王梅林, 汪玉庭. 交联壳聚糖在锑形态分析中的应用 [J]. 1998. [8] Mierzwa J., Dhindsa HS., Adeloju SB.. SLURRY SAMPLING FOR HYDRIDE GENERATION ATOMIC ABSORPTION SPECTROMETRIC DETERMINATION OF ARSENIC IN CIGARETTE TOBACCOS [J]. The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry 1997, 6(6). [9] Sayago A., Gomez-Ariza JL., Beltran R.. Hydride generation atomic fluorescence spectrometry (HG-AFS) as a sensitive detector for Sb(III) and Sb(V) speciation in water [J]. Journal of Analytical Atomic Spectrometry 2000, 4(4). [10] EI HADRI F, MRALES RUBIO A, DE LA GUARDIA M. Atomic fluorescence spectrometric determination of trace amounts of arsenic and antimony in drinking water by continous hydride generation [J]. Talanta 2000, 52(04). [11] Feng Y L, CHEN H W, Chen H Y. Sequential determination of tin arsenic bismuth and antimony in marine sediment material by inductively coupled plasma generator and L - cysteine as prereductant [J]. Journal of Analytical Chemistry 1998, 361. [12] Hou H B, NARASAKI H. Differential determination of antimony(Ⅲ) and antimony(Ⅴ) by inductively cpupled plasma atomic emission [J]. Analytical Sciences 1998, 14(06). [13] Zheng J, OHATA M, FURUTA N. Antimony speciation in environmental samples by using high- performance liquid chromatography coupled to inductively coupled plasma mass spectrometry [J]. Analytical Sciences 2000, 16(01). [14] Santosa SJ., Tanaka S., Mokudai H.. AUTOMATED CONTINUOUS-FLOW HYDRIDE GENERATION WITH INDUCTIVELY COUPLED PLASMA MASS SPECTROMETRIC DETECTION FOR THE DETERMINATION OF TRACE AMOUNTS OF SELENIUM(IV), AND TOTAL ANTIMONY, ARSENIC AND GERMANIUM IN SEA-WATER [J]. Journal of Analytical Atomic Spectrometry 1997, 4(4). [15] HENMINGS M J, JONES E A. The speciation of arsenic(Ⅴ) and arsenic(Ⅲ) by ion-exclusion chromatography in solutions containing iron and sulphuric acid [J]. Talanta 1991, 38(02). [16] Martin RR., Marsello B., Tomlin A.. Arsenic uptake in orchard trees: implications for dendroanalysis [J]. Chemosphere 2000, 5(5). [17] RATENAOPHAS R, JAGNER D. A coulometric stripping potentioetric determination of arsenic [J]. Electroanalysis 1997, 9(07). |
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