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A sequential injection lab-at-valve (SI-LAV) platform for hydride generation atomic absorption spectrometry (HG-AAS): on-line determination of inorganic arsenic

机译:氢化物发生原子吸收光谱法(HG-AAS)的顺序进样阀(SI-LAV)平台:在线测定无机砷

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摘要

A novel automatic low-cost sequential injection lab-at-valve (SIA-LAV) system has been developed for inorganic arsenic determination coupled with hydride generation atomic absorption spectrometry (HG-AAS). The proposed manifold includes an integrated gas-liquid separator/reaction chamber (GLS-RC) which was attached to one port of a conventional six-port multiposition selection valve. The arsine vapour is generated by injecting reductant NaBH4 into the GLS-RC, minimizing its dispersion and possible losses. All critical parameters affecting the efficiency of the system were studied and optimised. For 3.0 mL sample consumption the detection limit was 0.05 μg L~(-1) and the precision expressed as RSD was 3.2%. The proposed method was evaluated in comparison with a reference flow injection HG method and applied for arsenic determination in environmental water samples. The recovery was estimated by spiking the samples and it ranged from 95.5% up to 102.5% for both As(III) and As(V).
机译:开发了一种新颖的低成本自动顺序进样阀实验室(SIA-LAV)系统,用于氢化物发生原子吸收光谱法(HG-AAS)的无机砷测定。提出的歧管包括一个集成的气液分离器/反应室(GLS-RC),该室连接到常规的六通多位置选择阀的一个端口上。通过将还原剂NaBH4注入到GLS-RC中来产生a蒸汽,从而将其分散和可能的损失降至最低。研究并优化了影响系统效率的所有关键参数。对于3.0 mL样品消耗量,检出限为0.05μgL〜(-1),以RSD表示的精密度为3.2%。将该方法与参考流动注射HG方法进行了比较,并用于环境水样品中的砷测定。通过加标样品估计回收率,As(III)和As(V)的回收率从95.5%到102.5%。

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