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2009年07月07日

【期刊论文】Simultaneous Determination of Trace Cadmium and Arsenic in Biological Samples by Hydride Generation-Double Channel Atomic Fluorescence Spectrometry

孙汉文, Yun-kai Lü, †, ‡ Han-Wen Sun, ‡ Chun-Gang Yuan, ‡ and Xiu-Ping Yan*

Anal. Chem. 2002, 74, 1525-1529,-0001,():

-1年11月30日

摘要

Hydride generation atomic fluorescence spectrometry (HG-AFS) has been used for determination of hydride-forming elements because of its high sensitivity, simplicity, and low costs, but most of such work has been concentrated on single element analysis, and reports dealing with multielement determination by HG-nondispersive (ND)AFS are rare. In this work, a sensitive HGNDAFS method was developed for simultaneous determination of trace cadmium and arsenic in biological materials. The conditions for the generation of volatile cadmium and arsenic species from the reaction with KBH4 in aqueous solution were investigated using a double-channel AFS integrated with an intermittent flow reactor. Like thiourea and Co(II), ascorbic acid was found to significantly enhance the generation efficiency of volatile Cd and As species. The interferences of coexisting ions were evaluated. Under optimal conditions, the detection limits for Cd and As were determined to be 10 and 150 ng L-1, respectively. The precision for 11 replicate determinations at the 1 μg L-1 Cd level and the 10 μg L-1 As level were 3.5 and 2.7% (RSD), respectively. The recoveries of spike analytes in the biological samples studied ranged from 94 to 109%. The proposed method was successfully applied to the simultaneous determination of Cd and As in a variety of biological samples.

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2009年07月07日

【期刊论文】Determination of Cr(III) and Cr(VI) in Environmental Waters by Derivative Flame Atomic Absorption Spectrometry Using Flow Injection On-Line Preconcentration with Double-Microcolumn Adsorption

孙汉文, H-W. Sun a, *, W-J. Kang b, J. Ha c, S-X. Liang a, S-G. Shen a

Journal of the Iranian Chemical Society, Vol. 1, No.1, September (2004), pp. 40-46.,-0001,():

-1年11月30日

摘要

The species of Cr(III) and Cr(VI) in water samples were determined by flow injection on-line preconcentration and separation on two-microcolumn system-derivative flame atomic absorption spectrometry during a collaborative analysis for certification. The Cr(III) and Cr(VI) in water samples were retained on two microcolumns with ion exchange resin and were eluted directly to nebulizer by 15% HNO3 and 8% NH4NO3, respectively. The characteristic concentration (at the sensitivity grade of 2 mV min-1 for 1 min of preconcentration time) for Cr(III) and Cr(VI) were 0.130 and 0.0985 μg l-1, in the order which were 332- and 431-fold better than those of FAAS, and 45- and 47-fold better than those of FI-FAAS, respectively. The relative standard deviations were 3.27% and 3.66% with corresponding detection limits (3σ) of 0.244 and 0.235 μg l-1, respectively. The linear ranges of determinations for Cr(III) and Cr(VI) were 0~100 μgm l-1 with correlation coefficients of 0.9984 to 0.9996. The satisfactory recovery of 94.4%~106% for Cr(III) and Cr(VI) could be obtained from water samples.

Flow injection,, On-line preconcentration,, Derivative flame atomic absorption spectrometry,, Chromium(, III), ,, Chromium(, VI),

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2009年07月07日

【期刊论文】Determination of Sulfides in Synthesis and Isomerization Systems by Reversed-Phase Ion-Pair Chromatography with a Mobile Phase Containing Tetramethylene Oxide as Organic Modifier

孙汉文, XiuYan Pang, HanWen Sun*, YanHuan Wang

Chromatographia 2003, 57, April (No.7/8): 543-547,-0001,():

-1年11月30日

摘要

A reversed-phase ionpair chromatographic method with tetramethylene oxide as organic modifier has been developed for the simultaneous separation and detection of the sulfides NH2CSNH2, (NH4)2CS3, (NH4)2S, and NH4SCN. The optimized separation conditions were determined by means of a U7(76) uniform design experiment, and tetramethylene oxide played an important role in adjusting the retention behavior of(NH4)2S and NH4sSCN. The linearity of the calibration plots for the four components was investigated; correlation coefficients were from 0.9989-0.9999. The proposed method was successfully applied to the determination of NH2CSN H2, (NH4)2CS3, (NH4)2S, and NHSCN in synthesis and isomerization samples.

Column liquid chromatography, Ion-pair chromatography, Sulfides, Tetramethylene oxide, Synthesis and isomerization system

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2009年07月07日

【期刊论文】Simultaneous determination of trace arsenic(III), antimony(III), total arsenic and antimony in Chinese medicinal herbs by hydride generation-double channel atomic fluorescence spectrometry

孙汉文, Han-wen Sun∗, Feng-xia Qiao, Ran Suo, Li-xin Li, Shu-xuan Liang

H.-w. Sun et al./Analytica Chimica Acta 505(2004)255-261,-0001,():

-1年11月30日

摘要

A new method was developed for simultaneous determination of trace arsenic and antimony in Chinese herbal medicines by hydride generation-double channel atomic fluorescence spectrometry with a Soxhlet extraction system and an n-octanol-water extraction system, respectively. The effects of analytical conditions on the fluorescence intensity were investigated and optimized. A water-dissolving and methanol-water-dissolving capability were compared. The contents of different species in five Chinese herbal medicines and their decoctions were analyzed. The concentration ratios of n-octanol-soluble As or Sb to water-soluble As or Sb were related to the kinds of medicine and the acidity of the decoction. Soxhlet extraction was found to be an effective method for plants pretreatment for determination of arsenic and antimony species in Chinese herbs; the interferences of coexisting ions were evaluated. The proposed method has the advantages of simple operation, high sensitivity and high speed, with 3σ detection limits of 0.094µgg−1 for As(III), 0.056µgg−1 for total As, 0.063µgg−1 for Sb(III) and 0.019µgg−1 for total Sb in a 1.0g of the sample.

Speciation, Chinese herbal medicine, Arsenic, Antimony, Hydride generation, Atomic fluorescence spectrometry

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2009年07月07日

【期刊论文】Derivative Flame Atomic Absorption Spectrometry and Its Application in Trace Analysis

孙汉文, H.W. Sun* and L.Q. Li

Journal of the Iranian Chemical Society, Vol. 2, No.4, December (2005), pp. 268-276.,-0001,():

-1年11月30日

摘要

Flame atomic absorption spectrometry (FAAS) is an accepted and widely used method for the determination of trace elements in a great variety of samples. But its sensitivity doesn't meet the demands of trace and ultra-trace analysis for some samples. The derivative signal processing technique, with a very high capability for enhancing sensitivity, was developed for FAAS. The signal models of conventional FAAS are described. The equations of derivative signals are established for FAAS, flow injection atomic absorption spectrometry (FI-FAAS) and atom trapping flame atomic absorption spectrometry (AT-FAAS). The principle and performance of the derivative atomic absorption spectrometry are evaluated. The derivative technique based on determination of variation rate of signal intensity with time (dI/dt) is different from the derivative spectrophotometry (DS) based on determination of variation rate of signal intensity with wavelength (dI/dλ). Derivative flame atomic absorption spectrometry (DFAAS) has higher sensitivity, lower detection limits and better accuracy. It has been applied to the direct determination of trace elements without preconcentration. If the derivative technique was combined with several preconcentration techniques, the sensitivity would be enhanced further for ultra-trace analysis with good linearity. The applications of DFAAS are reviewed for trace element analysis in biological, pharmaceutical, environmental and food samples.

Signal models, Derivative technique, Atomic absorption spectrometry, Analytical performance, Trace analysis

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    河北大学,河北

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