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Degradation Process of Graphite Furnace Estimated from the Atomic Gas Temperature of Iron in Graphite Furnace Atomic Absorption Spectrometry

机译:从石墨炉原子吸收光谱法中铁的原子气体温度估算石墨炉的降解过程。

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摘要

GF-AAS has been employed for determining several trace impurities in metallic materials. The analytical precision in the continuous analysis tends to worsen due to thermal degradation of the graphite furnace at the atomization stage. Changes of the atomization condition along with increasing the number of measurements were investigated by monitoring the temporal variation in the atomic gas temperature of iron. In a working solution containing low-concentration of acid, the inner wall of the graphite furnace was gradually damaged and then the efficiency for the atomizing process was reduced. In a working solution containing sub-mol/L order of sulfuric acid, thinning or cracking of the graphite furnace progressed more rapidly and the function of it was greatly deteriorated.
机译:GF-AAS已用于测定金属材料中的几种痕量杂质。由于石墨炉在雾化阶段的热降解,连续分析中的分析精度趋于恶化。通过监测铁原子气体温度的时间变化,研究了雾化条件随测量次数增加的变化。在含有低浓度酸的工作溶液中,石墨炉的内壁逐渐受到破坏,从而降低了雾化过程的效率。在含有亚摩尔/升量的硫酸的工作溶液中,石墨炉的变薄或裂化进展更快,并且其功能大大恶化。

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