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Direct Determination of Ultratrace Arsenic in Blood Samples Using an in-situ Dielectric Barrier Discharge Trap Coupled With Atomic Fluorescence Spectrometry

机译:使用原位介电阻挡放电陷阱与原子荧光光谱法直接测定血液样品中的超砷

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摘要

A novel direct sampling hydride generation (HG) system was utilized and is first reported to introduce a blood sample into a in-situ dielectric barrier discharge atomic fluorescence spectrometer (DBD-AFS) for ultratrace determination of arsenic based on the gas phase enrichment (GPE) principle. The in-situ DBD unit was fitted with three concentric quartz tubes to replace the conventional atomizer in the AFS. Followed by a simple disruption for 2 minutes and centrifugation for 8 minutes of the blood sample in 3% HNO3 (v:v) extractant, the arsenic extraction and protein precipitation can be achieved up to 40 multiple dilutions. A supernatant consisting of 5% HCl (v:v) and 5 g/L KBH4 in 1.5 g/L KOH was introduced into the HG-in-situ DBD-AFS. Then, arsenic generating from the HG was trapped using 11 kV DBD at 110 mL/min air, swept for 190 seconds at 500 mL/min Ar, and released with 13 kV at 180 mL/min H-2. Under the optimal conditions, the linear regression coefficient (R-2) was 0.996 ranging from 0.05 to 300 mu g/L. The method detection limit (LOD) obtained was 7 pg arsenic, with a 3.9% precision using 11 repeated measurements for real blood samples. The spiked recoveries for the real blood samples were 96-107%. Furthermore, it was found that the arsenic concentrations measured by the proposed method were not significantly different (P > 0.05) from using microwave digestion in ECP-MS. The complete analysis, including sample pre-treatment, was performed within 15 minutes. The results show that the proposed method offers a fast and reliable analysis of ultratrace levels of arsenic in real blood samples.
机译:利用新型直接采样氢化物产生(HG)系统,首先报道将血液样品引入原位介电阻挡放电原子荧光光谱仪(DBD-AF),用于基于气相富集(GPE)的超砷测定砷) 原则。原位DBD单元配有三个同心石英管,以取代AFS中的常规雾化器。其次是2分钟的简单破坏,并在3%HNO3(V:V)萃取剂中,将8分钟的血液样品离心,砷提取和蛋白质沉淀可达40多个稀释液。将由5%HCl(V:V)和5g / L KbH 4组成的上清液,将1.5g / L KOH引入HG原位DBD-AFS。然后,从Hg产生的砷在110ml / min的空气下使用11kV dBd捕获,在500ml / min Ar下扫过190秒,并在180ml / min H-2下释放13kV。在最佳条件下,线性回归系数(R-2)为0.996,范围为0.05至300μmg/ l。获得的方法检测限(LOD)为7pg砷,使用11个重复测量的真实血液样本具有3.9%的精度。真实血液样品的尖刺回收率为96-107%。此外,发现通过在ECP-MS中使用微波消化的方法测量的砷浓度没有显着差异(p> 0.05)。完全分析,包括样品预处理,在15分钟内进行。结果表明,该方法提供了对真实血液样本中砷的超速度水平的快速可靠分析。

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  • 来源
    《Atomic Spectroscopy》 |2019年第3期|共8页
  • 作者单位

    Jilin Univ Coll Chem Changchun 130012 Jilin Peoples R China;

    Chinese Acad Agr Sci Inst Qual Standard &

    Testing Technol Agroprod Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Qual Standard &

    Testing Technol Agroprod Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Qual Standard &

    Testing Technol Agroprod Beijing 100081 Peoples R China;

    Beijing Abil Tech Co Ltd Beijing 100081 Peoples R China;

    USDA ARS Eastern Reg Res Ctr Wyndmoor PA 19038 USA;

    Chinese Acad Agr Sci Inst Qual Standard &

    Testing Technol Agroprod Beijing 100081 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

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