首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Behavior of thorium, zirconium, and vanadium as chemical modifiers in the determination of arsenic by electrothermal atomization atomic absorption spectrometry
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Behavior of thorium, zirconium, and vanadium as chemical modifiers in the determination of arsenic by electrothermal atomization atomic absorption spectrometry

机译:电热雾化原子吸收光谱法测定th,锆和钒作为化学改性剂的行为

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摘要

The comparative effect of thorium, zirconium and vanadium used as chemical modifiers in wall and platform atomization of arsenic using two sample introduction modes (aerosol vs. liquid drop) was studied. The effect of proton concentration (as hydrochloric acd and nitric acid) on the behavior of these modifiers wa salso tested. A beneficial effect on the stabilization of arsenic from all the chemical modifiers was essentially derived in the presence of nitric acid mainly for the aerosol introduction mode. Nonetheless, the highest sensitivity and the best stabilization of arsenic were obtained using zirconium and thorium as a chemical modifier, because pyrolysis temperatures as high as approx1500 deg C can be used. The mechanistic action of the chemical modifiers used is also studied, resulting in the formation of a mixture of oxides stabilized at high temperatures.
机译:研究了使用两种样品引入方式(气溶胶与液滴)的modes,锆和钒作为化学改性剂在砷的壁和平台雾化中的比较效果。还测试了质子浓度(如盐酸,硝酸和硝酸)对这些改性剂行为的影响。所有化学修饰剂对砷稳定的有益作用基本上是在硝酸存在下产生的,主要用于气雾剂引入方式。尽管如此,使用锆和or作为化学改性剂仍可获得最高的灵敏度和最佳的砷稳定性,因为可以使用高达约1500℃的热解温度。还研究了所用化学改性剂的机械作用,从而形成了在高温下稳定的氧化物混合物。

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