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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Carrier gas flow optimization for an end-on type of electrothermal vaporizer used for sample introduction in plasma source spectrometry
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Carrier gas flow optimization for an end-on type of electrothermal vaporizer used for sample introduction in plasma source spectrometry

机译:终端式电热蒸发器的载气流优化,用于等离子体源光谱法中的样品引入

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In case of end-on type of graphite due electrothermal vaporizers (ETVs) the vaporization product is streamed towards the plasma through one of the ends of the graphite tube,which is represented in the present work by the commercial unit of Perkin-Elmer HGA-600MS.The properties of this eTV unit are compared under two sets of gas-flow conditions:(A) using a high flow rate of carrier gas within the graphite tube and a low flow rate of make-up gas that is introduced into the interface close to the outlet end of the graphite tube,and (B) using a decreased carrier gas flow and a relatively high flow rate of make-up gas,while the total transport gas flow rate was kept constant.The EVT unit was coupled to a multi-channel optical emission spectrometer and time integrated line intensities for 26 elements were measured under (A) and (B) conditions and also with the use of pneumatic nebulization of the same multi-element standard solution.A relatively low heating rate was applied to the ETV to minimize plasma loading and also for a better estimate of the appearance temperatures (volatility) of the elements.The intensity ratios with low and high flow rate of the carrier gas (B/A) were between 1.2 and 0.8 for 20 elements.Significantly higher ratios (B/A) were found for volatile elements (Cd and Zn),while the ratios were significantly lower for heavy volatile elements (V,Ti,B).This means that apart from the latter group of elements,the use of a relatively low flow rate of the carrier gas does not result in an essential decrease of analytical sensitivity.This finding can be utilized,e.g.to the direct analysis of finely powdered samples which is handicapped under high carries gas flow conditions,due to possible sample loss.Comparing the sensitivities with ETV(A) conditions and pneumatic nebuilization sample introduction methods there was an unfavorable tendency for the ETV(A) method with decreasing volatility of the analytes.This observation suggests an increased vapor condensation of low volatile elements close to the graphite tube end that is characteristics for this type of ETV units.
机译:如果是电热式蒸发器(ETV),则为端接式石墨,汽化产物通过石墨管的一端流向等离子体,这在本工作中由Perkin-Elmer HGA-该电子电视装置的性能在两组气体流量条件下进行了比较:(A)使用石墨管内高载气流量和引入接口的低补充气流量EVT单元与石墨管的出口端接近,并且(B)使用减少的载气流量和相对较高的补充气流量,同时使总输送气流量保持恒定。在(A)和(B)条件下并使用相同的多元素标准溶液的气动雾化方法,测量了26个元素的多通道光发射光谱仪和时间积分线强度。 ETV分钟不仅可以实现等离子体负载,还可以更好地估算元素的出现温度(挥发性).20种元素在低和高载气流速(B / A)下的强度比在1.2至0.8之间。挥发性元素(Cd和Zn)的含量为(B / A),而重挥发性元素(V,Ti,B)的比率显着较低。这意味着除了后一种元素外,使用相对载气的低流速不会导致分析灵敏度的显着降低。此发现可用于直接分析在高载气流量条件下受阻的细粉状样品,因为可能会损失样品。在ETV(A)条件和气动雾化样品引入方法的敏感性下,ETV(A)方法的分析物挥发性降低,这是不利的趋势。这种类型的ETV装置的特征是靠近石墨管端部的低挥发性元素。

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