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首页> 外文期刊>Analytical chemistry >Point Discharge Microplasma Optical Emission Spectrometer: Hollow Electrode for Efficient Volatile Hydride/Mercury Sample Introduction and 3D-Printing for Compact Instrumentation
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Point Discharge Microplasma Optical Emission Spectrometer: Hollow Electrode for Efficient Volatile Hydride/Mercury Sample Introduction and 3D-Printing for Compact Instrumentation

机译:点放电显微压发光发射光谱仪:中空电极用于有效的挥发性氢化物/汞样品引入和3D印刷,用于紧凑型仪器

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摘要

A miniaturized optical emission spectrometer was constructed with improved point discharge microplasma as an excitation source to enhance sample introduction efficiency and excitation efficiency. By using a hollow electrode as one of the discharge electrodes, analyte-containing chemical vapor yielded via hydride generation was transported and confined into the hollow electrode and subsequently guided into the microplasma with high sample introduction efficiency. Moreover, gaseous analyte species were directly diffused from inside the electrode into the center of the microplasma, instead of traditional external diffusion into the microplasma, resulting in sufficient participation in interactions and excitation in the plasma; thus, high excitation efficiency and stability can be achieved. A 3D-printing technique was used to fabricate some components for compact integration of this spectrometer. Physical characteristics of the microplasma, 3D-printing, and experimental parameters were all investigated to better understand the excitation capability and obtain optimal analytical performance. Under optimized conditions, As, Bi, Ge, Hg, Pb, Sb, Se, and Sn were successfully detected, with detection limits of 2.5, 0.44, 1.6, 0.10, 2.8, 1.5, 31, and 0.24 mu g L-1, respectively, and relative standard deviations all less than 4%. It was applied to the analysis of Certified Reference Materials (water, soil, and biological samples) and real water samples with satisfactory results. Because of its advantages of compactness, robustness, easy fabrication, and cost-effectiveness, it has a great prospect as a portable spectrometer for field analytical chemistry.
机译:小型化的光发射光谱仪用改进的点放电微代尖作为激发源构成,以提高样品引入效率和激发效率。通过使用作为放电电极之一的中空电极,通过氢化物产生产生的含分析物化学蒸气,并将其限制在中空电极中并随后以高样品引入效率引导到显微载体中。此外,气态分析物物种从电极内部直接扩散到导体的中心,而不是传统的外部扩散到显微载体中,导致足够的相互作用和激发在等离子体中;因此,可以实现高励磁效率和稳定性。 3D打印技术用于制造一些组件,以便紧凑地集成该光谱仪。都研究了微血导,3D印刷和实验参数的物理特征,以更好地了解激发能力并获得最佳的分析性能。在优化的条件下,成功检测到Bi,Ge,Hg,Pb,Sb,Se和Sn,检测限为2.5,0.44,1.6,0.10,2.8,1.5,31和0.24μgl-1,分别,相对标准偏差全部小于4%。应用于认证参考资料(水,土壤和生物样品)和真正水样的分析,具有令人满意的结果。由于其具有紧凑性,稳健性,易于制造和成本效益的优点,因此它具有很好的前景,作为场分析化学的便携式光谱仪。

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  • 来源
    《Analytical chemistry》 |2019年第11期|共6页
  • 作者单位

    Sichuan Univ Key Lab Green Chem &

    Technol MOE Chengdu 610064 Sichuan Peoples R China;

    Sichuan Univ Analyt &

    Testing Ctr Chengdu 610064 Sichuan Peoples R China;

    Sichuan Univ Analyt &

    Testing Ctr Chengdu 610064 Sichuan Peoples R China;

    Sichuan Univ Analyt &

    Testing Ctr Chengdu 610064 Sichuan Peoples R China;

    Sichuan Univ Analyt &

    Testing Ctr Chengdu 610064 Sichuan Peoples R China;

    Sichuan Univ Key Lab Green Chem &

    Technol MOE Chengdu 610064 Sichuan Peoples R China;

    Sichuan Univ Analyt &

    Testing Ctr Chengdu 610064 Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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