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Chemical Vapor Generation: Atomic Absorption by Ag, Au, Cu, and Zn Following Reduction of Aquo Ions with Sodium Tetrahydroborate (III)

机译:化学气相生成:四氢硼酸钠(III)还原水离子后,Ag,Au,Cu和Zn的原子吸收

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摘要

Volatile species of Ag, Au, Cu, Zn, Cd, and As were generated at room temperature by the addition of sodium tetrahydroborate(Ill) to an acidified solution of the ana-lytes. The vapor-phase species were rapidly transported to a heated quartz tube atomizer (QTA) for detection by atomic absorption spectrometry. A univariate approach was used to achieve optimized conditions and derive analytical figures of merit. The analytes are released from solution as molecular species (likely as metal hydrides) and are (partially) atomized in the QTA under nonopti-mired conditions. Detection limits range from 1.8 (Zn) to 420 ng (Au). The efficiency of the generation process is estimated to be 92+4% for Au. Loss of analyte during transport to the QTA was minimized through use of the minimum length of narrow-bore Teflon transfer line pos-sible.
机译:Ag,Au,Cu,Zn,Cd和As的挥发性物质是在室温下通过向分析物的酸化溶液中添加四氢硼酸钠(III)生成的。气相物质被快速传输到加热的石英管雾化器(QTA)中,以通过原子吸收光谱法进行检测。使用单变量方法来获得最佳条件并得出品质因数分析。在非最佳条件下,分析物以分子形式(如金属氢化物)从溶液中释放出来,并在QTA中(部分)被雾化。检测限范围为1.8(Zn)至420 ng(Au)。对于金,生成过程的效率估计为92 + 4%。通过使用最小长度的窄孔特氟隆传输线,可以最大程度地减少运输到QTA期间的分析物损失。

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