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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Non-chromatographic speciation of inorganic arsenic by atomic fluorescence spectrometry with flow injection hydride generation with a tetrahydroborate-form anion-exchanger
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Non-chromatographic speciation of inorganic arsenic by atomic fluorescence spectrometry with flow injection hydride generation with a tetrahydroborate-form anion-exchanger

机译:四氢硼酸酯型阴离子交换剂通过流动注射氢化物发生的原子荧光光谱法对无机砷进行非色谱分析

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摘要

A method has been developed for the determination of arsenite and arsenate in natural water samples based on the generation of arsine (AsH_3) from the reaction between the arsenic species in the injected solution and tetrahydroborate immobilized on a strong anion-exchange resin (Amberlite IRA-400). Speciation was based on two different measurement conditions: (ⅰ) acidification to 0.7 M with HCl, and (ⅱ) acidification to 0.1 M with HCl in the presence of 0.5% L-cysteine, which produced two calibration equations with different sensitivities for each species. The LOD for a 0.5 mL sample volume was 13 ng L~(-1) and 15 ng L~(-1) for arsenite and arsenate, respectively. The precision, expressed as % relative standard deviation of the measurement of 0.5 μg L~(-1) As was 4.3% and 4.1% for determination of arsenite and arsenate, respectively, in 0.7 M HCl; and 3.8% and 3.6%, for the determination in 0.1 M HCl and 0.5% L-cysteine. Interferences from transition metals and hydride-forming elements were eliminated by the addition of L-cysteine. The method was evaluated by the analysis of spiked natural waters. The recoveries for 0.5 and 1 μg L~(-1) arsenite were 92-108% and 88-112%, respectively, the recoveries for 0.5 and 1 μg L~(-1) arsenate were 94-111% and 95-112%, respectively. This method was also validated by the accurate analysis of a seawater certified reference material, NASS-6, which contains 1.43 ± 0.12 μg L~(-1) (total arsenic). The method was applied to the analysis of a number of real water samples, none of which contained arsenic below the method detection limit. The time required per measurement was less than 4 min and the procedure consumes about 100-times less hydrochloric acid that the conventional continuous-flow procedure.
机译:根据注入溶液中砷与固定在强阴离子交换树脂上的四氢硼酸盐之间的反应生成的ine(AsH_3),开发了一种测定自然水样中砷和砷的方法。 400)。物种的形成基于两种不同的测量条件:(ⅰ)用HCl酸化至0.7 M,和(ⅱ)在0.5%L-半胱氨酸存在下用HCl酸化至0.1 M,这产生了两个校准方程,每个物种的灵敏度不同。 0.5 mL样品的亚砷酸盐和砷酸盐的LOD分别为13 ng L〜(-1)和15 ng L〜(-1)。精密度,以相对于0.5μgL〜(-1)的标准偏差的百分比表示。在0.7 M HCl中测定亚砷酸盐和砷酸盐的准确度分别为4.3%和4.1%。在0.1 M HCl和0.5%L-半胱氨酸中的测定分别为3.8%和3.6%。通过添加L-半胱氨酸可消除来自过渡金属和氢化物形成元素的干扰。通过分析加标天然水对该方法进行了评估。 0.5和1μgL〜(-1)砷的回收率分别为92-108%和88-112%,0.5和1μgL〜(-1)砷的回收率分别为94-111%和95-112 %, 分别。该方法还通过对包含1.43±0.12μgL〜(-1)(总砷)的海水认证参考物质NASS-6的准确分析进行了验证。该方法用于分析许多真实水样,其中没有一个样品的砷含量低于方法检出限。每次测量所需的时间少于4分钟,并且该过程消耗的盐酸比常规连续流过程少100倍左右。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2014年第4期|665-673|共9页
  • 作者

    Nan Wang; Julian Tyson;

  • 作者单位

    Department of Chemistry, University of Massachusetts Amherst, 710 North Pleasant Street, Amherst, MA 01003, USA;

    Department of Chemistry, University of Massachusetts Amherst, 710 North Pleasant Street, Amherst, MA 01003, USA;

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