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A comparative study of sheathing devices to increase robustness in inductively coupled plasma optical emission spectrometry via a nitrogen flow

机译:通过氮气流在电感耦合等离子体发射光谱法中提高耐用性的护套设备的比较研究

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Five different glass sheathing devices were used to introduce 20 mL min~(-1) N_2 sheathing gas around the effluent from the spray chamber to see the effect of their dimensions on plasma robustness as measured using the Mg II 280.270 nm/Mg I 285.213 nm emission signal ratio in inductively coupled plasma (ICP) optical emission spectrometry (OES). A clear relationship between device dimensions and the plasma robustness profile along the ICP central channel was observed. With an aerosol inlet having an inner diameter of 1.0 cm in the sheathing device, mixing of N_2 with the aerosol was minimised and the resulting sheath increased robustness, the higher thermal conductivity of N_2versus Ar likely improving energy transfer between the bulk plasma and the central channel. The configuration of the outlet is also important, as any bottleneck favours mixing of N_2 with the aerosol, which in turn cools the plasma, thereby shifting the region of maximum robustness to higher above the load coil. Regardless of device dimensions, plasma robustness was always better with N_2 sheathing gas. An increased ion-to-atom emission signal ratio also resulted for other elements than Mg. The presence of N_2 also seems to affect excitation mechanisms, such as charge transfer between NO~+ and Cd or Ni, which appears to take place at higher observation height, after N_2 has had enough time to diffuse into the central channel.
机译:使用五种不同的玻璃护套设备在喷雾室流出物周围引入20 mL min〜(-1)N_2护套气体,以观察其尺寸对使用Mg II 280.270 nm / Mg I 285.213 nm测量的等离子体强度的影响电感耦合等离子体(ICP)光学发射光谱(OES)中的发射信号比。观察到器件尺寸与沿ICP中心通道的等离子体坚固性分布之间存在清晰的关系。使用护套装置中内径为1.0 cm的气雾剂入口,可最大程度地减少N_2与气雾剂的混合,并提高护套的坚固性,N_2相对于Ar的更高的热导率可能会改善整体等离子体与中央通道之间的能量传递。出口的配置也很重要,因为任何瓶颈都倾向于将N_2与气雾剂混合,从而冷却等离子体,从而将最大耐用性区域移到负载线圈上方。不论设备尺寸如何,使用N_2护套气体时,等离子体的坚固性始终更好。除镁以外的其他元素也导致离子-原子发射信号比增加。 N_2的存在似乎也会影响激发机制,例如NO〜+与Cd或Ni之间的电荷转移,这似乎是在N_2有足够的时间扩散到中央通道后,在更高的观察高度进行的。

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