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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Determination of bismuth in metallurgical materials using a quartz tube atomizer with tungsten coil and flow injection-hydride-generation atomic absorption spectrometry
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Determination of bismuth in metallurgical materials using a quartz tube atomizer with tungsten coil and flow injection-hydride-generation atomic absorption spectrometry

机译:带有钨丝管的石英管雾化器和流动注射氢化物发生原子吸收光谱法测定冶金材料中的铋

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摘要

A method for the determination of bismuth in metallurgical materials using hydride generation coupled with a merging zones flow system and atomic absorption spectrometry using a quartz tube atomizer with tungsten coil is proposed. The parameters related to the bismuthine generation, the flow injection system and the use of a tungsten coil were studied and the optimized system shows a wide calibration range and good stability over time, without losses in sensitivity. The analytical curve is linear from 10 to 750 mug l~(-1) of Bi with R>= 0.999. A detection limit of 1.9 ng Bi and an analytical frequency of 60 determinations per hour were obtained. Five metallurgical reference materials were analyzed with the proposed method after their acid dissolution. The results obtained were in good agreement with certified or recommended values, and the relative standard deviations were lower than 5%.
机译:提出了一种氢化物发生-合并区流动系统-原子吸收光谱法-带钨丝管的石英管雾化器-用于冶金材料中铋的测定方法。研究了与铋生成,流动注射系统和钨线圈的使用有关的参数,优化后的系统显示出宽的校准范围和长期的良好稳定性,而不会降低灵敏度。分析曲线从Bi的10到750杯l〜(-1)呈线性关系,R> = 0.999。检出限为1.9 ng Bi,分析频率为每小时60次测定。酸溶解后,用建议的方法分析了五种冶金参考材料。获得的结果与认证或推荐值非常吻合,相对标准偏差低于5%。

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