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Quantification of Trace Metalloids and Metals in Airborne Particles Applying Dynamic Reaction Cell Inductively Coupled Plasma Mass Spectrometry

机译:动态反应池电感耦合等离子体质谱法定量分析机载颗粒中的痕量类金属和金属

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Determination of trace contents of metals and metalloids, monitored in airborne particles for their adverse health and environmental impact or to discriminate pollutant particulate emission sources, requires very sensitive analytical methods. Dynamic reaction cell inductively coupled plasma mass spectrometry (DRC-ICP-MS) has been applied to measure ultra-trace elements found in PM_(10) atmospheric particles in order to determine simultaneously, rapid and accurate concentrations for well known highly interfered isotopes (~(75)As, ~(59)Co, ~(52)Cr, ~(53)Cr, ~(58)Ni, ~(60)Ni, ~(78)Se, ~(45)Sc, and ~(51)V). The challenge resides in the extremely low content of these elements encountered in PM_(10) particles, while thorough mineralization procedures in complex matrices are necessary to deal with refractory minerals. The potentially interfering polyatomic ions combining Ar, Cl, F, O, N, and C isotopes were significantly reduced by using NH_(3) as the reaction gas in the DRC, optimizing the reaction cell band pass and tuning of the gas flow rate. Standard Reference Material (NIST 1648) as well as real atmospheric samples were analyzed under the best defined conditions to validate and exemplify our methodology. The method detection limits are 450 ng/L for As, 13 ng/L for Co, 1210 ng/L for Cr, 780 ng/L for Ni, 47 ng/L for Se, 22 ng/L for Sc, and 26 ng/L for V. Based on real atmospheric sample measurements, DRC-ICP-MS associated with NH_(3) is confirmed as a cost effective technique to produce accurate results during routine working procedures for all these elements except Se.
机译:要测定空气中颗粒中的痕量金属和准金属对健康和环境的不利影响或区分污染物颗粒排放源,需要非常敏感的分析方法。动态反应池电感耦合等离子体质谱法(DRC-ICP-MS)已用于测量PM_(10)大气颗粒中发现的超痕量元素,以便同时,快速和准确地确定众所周知的高度干扰同位素(〜 (75)As,〜(59)Co,〜(52)Cr,〜(53)Cr,〜(58)Ni,〜(60)Ni,〜(78)Se,〜(45)Sc和〜( 51)V)。挑战在于PM_(10)颗粒中遇到的这些元素含量极低,而复杂基质中彻底的矿化程序对于处理难熔矿物是必需的。通过使用NH_(3)作为DRC中的反应气体,优化反应池的带通量和调节气体流速,可以显着减少结合了Ar,Cl,F,O,N和C同位素的潜在干扰多原子离子。在最佳定义的条件下分析了标准参考物质(NIST 1648)和实际大气样品,以验证和例证我们的方法。该方法的检测限为:砷的450 ng / L,钴的13 ng / L,铬的1210 ng / L,镍的780 ng / L,硒的47 ng / L 、,的22 ng / L和26 ng / L表示V。基于实际的大气样品测量,与NH_(3)关联的DRC-ICP-MS被证实是一种经济有效的技术,可以在常规工作程序中对所有这些元素(硒除外)产生准确的结果。

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