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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Influence of design and operating parameters of pneumatic concentric nebulizer on micro-flow aerosol characteristics and ICP-MS analytical performances
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Influence of design and operating parameters of pneumatic concentric nebulizer on micro-flow aerosol characteristics and ICP-MS analytical performances

机译:气动同心雾化器的设计和运行参数对微流气溶胶特性和ICP-MS分析性能的影响

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摘要

This paper describes the development of a very simple micro-flow pneumatic ICPMS nebulizing solution based on a commercial glass concentric slurry nebulizer and a fused-silica capillary. It appears as a well-performing, low cost system able to nebulize efficiently at a low liquid flow rate (40 000 cps for a 1 ppb ~(238)U solution at 1 μL min~(-1)). Experimentally, it provides a practical set-up for studying the influence of not only operating conditions (liquid and gas flow rates, temperature) but also nebulizer design (nozzle configuration, capillary tip shape, capillary inner diameter). More precisely it allows the study of liquid-capillary-tip to gas-exit stick-out, i.e. recessed position (e < 0), coplanar liquid and gas exits (e = 0) or liquid protruding configuration (e > 0) in combination with various liquid capillary inner diameters or tip shapes. This investigation brings out several practical results even if the relation between the primary aerosol characteristics (studied by three complementary techniques (PIV, shadowgraphy and ILIDS)) and the ICPMS signal measured on a tertiary aerosol is not easy to establish precisely. These results are systematically compared to the literature data, replacing them in a more global perspective. It highlights the prime importance of the nozzle configuration i.e. stick-out and liquid capillary inner diameter. The stick-out (e) parameter is of crucial importance both for the primary spray homogeneity in terms of droplet velocity distribution and for tertiary signal intensity and stability but shows no influence on the oxide ratio or on the droplet size distribution. This last characteristic may not be the most relevant criterion for low liquid uptake nebulizers, contrary to millilitre flow-rate ones. The authors hypothesize that this may be linked to the evaporation capacity of the nebulising gas largely exceeding the liquid uptake, creating a fundamentally different situation for the two types of nebulizers. This study also displays the interest of using a flat-end capillary instead of a tapered end which is the solution most commonly employed, and it highlights the existence of an optimum nozzle configuration (e > 0) in terms of sensitivity and stability, that is dependent on the capillary inner diameter.
机译:本文介绍了一种基于商用玻璃同心浆料雾化器和熔融石英毛细管的非常简单的微流气动ICPMS雾化溶液的开发。它似乎是一种性能良好的低成本系统,能够以低液体流速(1 ppb〜(238)U溶液在1μLmin〜(-1)时为40 000 cps)有效雾化。从实验上讲,它为研究不仅影响工况(液体和气体流速,温度)而且影响雾化器设计(喷嘴结构,毛细管尖端形状,毛细管内径)的影响提供了实用的设置。更准确地说,它允许研究液体毛细管尖端到气体出口的伸出,即凹陷位置(e <0),共面液体和气体出口(e = 0)或液体突出构造(e> 0)的组合具有各种液体毛细管内径或尖端形状。即使主要的气溶胶特性(通过三种辅助技术(PIV,皮影和ILIDS研究)和在第三气溶胶上测量的ICPMS信号之间的关系不容易精确建立,该研究也得出了一些实际结果。将这些结果与文献数据进行系统地比较,从更全局的角度将其替换。它突出了喷嘴配置的主要重要性,即伸出和液体毛细管的内径。对于液滴速度分布方面的初次喷雾均匀性以及三次信号强度和稳定性而言,伸出参数(e)都至关重要,但对氧化比或液滴尺寸分布没有影响。与毫升流速的雾化器相反,对于液体吸收量低的雾化器,最后的特性可能不是最相关的标准。作者假设这可能与大大超过液体吸收量的雾化气体的蒸发能力有关,这为两种类型的雾化器造成了根本不同的情况。这项研究还显示了使用平端毛细管而不是锥形端(这是最常用的解决方案)的兴趣,并且它强调了在灵敏度和稳定性方面存在最佳喷嘴配置(e> 0),即取决于毛细管的内径。

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  • 来源
    《Journal of Analytical Atomic Spectrometry 》 |2012年第1期| p.146-158| 共13页
  • 作者单位

    Commissariat a I'Energie Atomique, CEAIDSMIIRAMISI SIS2MILIONS, CEAICNRSIUMR 32-99, Centre de Saclay, 91191 Gif Sur Yvette Cedex, France;

    Institut de Radioprotection et de Surete NucleairelDSUISERAC, BP 68, 91192 Gif-sur- Yvette Cedex, France;

    Commissariat a I'Energie Atomique, DENIDPC, Centre de Saclay, 91191 Gif Sur Yvette Cedex, France;

    Commissariat a I'Energie Atomique, DENIDPC, Centre de Saclay, 91191 Gif Sur Yvette Cedex, France;

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