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首页> 外文期刊>Bulletin of the Korean Chemical Society >Removal of OH Spectral Interferences from Aqueous Solvents in Inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES) with Ar Cryogenic Desolvation
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Removal of OH Spectral Interferences from Aqueous Solvents in Inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES) with Ar Cryogenic Desolvation

机译:在Ar低温去溶剂化的电感耦合等离子体原子发射光谱法(ICP-AES)中去除水溶液中的OH光谱干扰

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The spectral interferences of OH from aqueous solvents in ICP-AES have been studied and eliminated using a cryogenic argon trap. The prominent lines of Bi I 306.772 nm, Al I 309.271 nm, and V II 310.230 nm, which are very seriously overlapped with the OH band, were examined. With an extended torch and high tangential flow of 20 L/min, water vapor from air entrainment was prevented. The combination of a condenser and argon cryogenic trap was able to eliminated most of water vapor carried by the argon sample gas. Removal of OH spectral interference could extend the linearity of the calibration curve 5-10 times on the lower concentration for ICP-AES. Interference Equivalent Concentration (IEC) has been reduced to 5.6, 5.9, and 12.4 times for Bi, Al and V, respectively.
机译:ICP-AES研究了水性溶剂中OH的光谱干扰,并使用了低温氩阱进行了消除。检查了Bi I 306.772 nm,Al I 309.271 nm和V II 310.230 nm的突出线,它们与OH谱带非常严重地重叠。使用扩展的割炬和20 L / min的高切向流量,可以防止空气夹带的水蒸气。冷凝器和氩气低温捕集阱的组合能够消除氩气样气携带的大部分水蒸气。消除OH光谱干扰可以在较低浓度的ICP-AES上将校准曲线的线性延长5-10倍。 Bi,Al和V的干扰等效浓度(IEC)分别降低到5.6、5.9和12.4倍。

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