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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development of a MSFIA system for sequential determination of antimony, arsenic and selenium using hydride generation atomic fluorescence spectrometry
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Development of a MSFIA system for sequential determination of antimony, arsenic and selenium using hydride generation atomic fluorescence spectrometry

机译:开发用于氢化物发生原子荧光光谱法连续测定锑,砷和硒的MSFIA系统

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This paper proposed a multisyringe flow injection analysis (MSFIA) system for antimony, arsenic and selenium determination in peanut samples by hydride generation atomic fluorescence spectrometry (HG-AFS). The optimization step of the hydride generation was performed using a two-level full factorial design involving the parameters: hydrochloric acid, sodium tetrahydroborate and potassium iodide concentrations. So, using the chemical conditions optimized, this method allows the determination of these elements employing the external calibration technique using aqueous standards with limits of detection and quantification of 0.04 and 0.14 mu g L-1 for antimony, 0.04 and 0.14 mu g L-1 for arsenic and 0.14 and 0.37 mu g L-1 for selenium, respectively. Additionally, the effect of vanadium, chromium, cobalt, nickel, zinc, copper, iron and molybdenum on the generation of chemical vapour was also studied. The precision expressed as relative standard deviation varied from 1.2 to 3.6% for antimony, 1.8-3.9% for arsenic and 1.8-2% for selenium. The accuracy for arsenic and selenium was confirmed using the certified peach leaves reference material SRM 1547 produced by National Institute of Standard and Technology. The proposed method showed 45 injection throughput (h(-1)) using 1.6 mL sample volume for each element, 0.8 mL NaBH4 0.5% (w/v) containing NaOH 0.05% (w/v), 0.8 mL HCl 5 M and 0.4 mL KI 14% (w/v) containing L-ascorbic acid 2.5% (w/v). The method was applied to the determination of antimony, arsenic and selenium in peanut samples, which were firstly lyophilized and afterward digested using microwave assisted radiation. Six samples were analyzed and the contents of the elements found were: 28.7-41.3 mu g kg(-1) for arsenic, 86.4-480.1 mu g kg(-1) for selenium and 32.6-52.4 mu g kg(-1) for antimony. Addition/recovery tests were also performed to confirm the method accuracy for the three elements. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种用于氢化物发生原子荧光光谱法(HG-AFS)测定花生样品中锑,砷和硒的多注射器流动注射分析(MSFIA)系统。氢化物生成的优化步骤是使用两级全因子设计进行的,涉及参数:盐酸,四氢硼酸钠和碘化钾浓度。因此,使用优化的化学条件,该方法允许使用外部校准技术使用水性标准品测定这些元素,其中锑的检测和定量限分别为0.04和0.14μg L-1、0.04和0.14μgL-1砷的含量分别为0.14和0.37微克L-1。此外,还研究了钒,铬,钴,镍,锌,铜,铁和钼对化学蒸气产生的影响。表示为相对标准偏差的精度从锑的1.2%到3.6%,砷的1.8-3.9%和硒的1.8-2%不等。砷和硒的准确度由美国国家标准技术研究所生产的认证桃叶标准物质SRM 1547确认。所提出的方法显示了45种进样量(h(-1)),每种元素使用1.6 mL样品体积,0.8 mL NaBH4 0.5%(w / v)包含NaOH 0.05%(w / v),0.8 mL HCl 5 M和0.4含2.5%(w / v)的L-抗坏血酸的mL KI 14%(w / v)。该方法适用于花生样品中锑,砷和硒的测定,样品先冻干后再用微波辅助辐射消解。分析了六个样品,发现的元素含量为:砷28.7-41.3μg kg(-1),硒86.4-480.1μg kg(-1)和铅32.6-52.4μg kg(-1)。锑。还进行了添加/回收测试以确认这三个元素的方法准确性。 (C)2016 Elsevier B.V.保留所有权利。

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