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Determination of Phosphorous and Sulfur in Environmental Samples by Electrothermal Vaporization Inductively Coupled Plasma Atomic Emission Spectrometry

机译:电热蒸发-电感耦合等离子体原子发射光谱法测定环境样品中的磷和硫

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摘要

From the viewpoint of selective introduction of the analyte from its solvent and matrices, electrothermal vaporization (ETV) is useful for the sample introduction into the inductively coupled plasma (ICP). By using a tungsten boat furnace (TBF) vaporizer system, the loss of analyte phosphorus, which normally occurs during the drying and ashing stages, is suppressed. The phosphate ion is reacted with the tungsten supplied from the surface of the TBF to form stable tungsten phosphate species. Regarding the determination of sulfur, additional chemical modifiers such as copper(II), lead(II), etc., are necessary to retain the analyte on the TBF. The furnace-fusion (FF) method or wet-digestion technique on the TBF is applied to unify the chemical forms of the analytes. Various oxidative and reductive inorganic compounds as well as organic compounds of phosphorus and sulfur show the same sensitivities after the FF digestion with hydrogen peroxide. The detection limits are 1.5 ng and 0.12 ng for phosphorous and sulfur, respectively. The repeatabilities in terms of the relative standard deviations of 10 replicate measurements of phosphorus and sulfur are 4.2% and 2.0%, respectively. Finally, the established method is applied to the determination of several environmental waters.
机译:从将分析物从其溶剂和基质中选择性引入的观点来看,电热汽化(ETV)可用于将样品引入感应耦合等离子体(ICP)中。通过使用钨舟炉(TBF)蒸发器系统,可以抑制通常在干燥和灰化阶段发生的分析物磷的损失。磷酸根离子与从TBF表面供应的钨反应形成稳定的磷酸钨物质。关于硫的测定,需要其他化学改性剂,例如铜(II),铅(II)等,以将分析物保留在TBF上。 TBF上的熔炉熔合(FF)方法或湿法消化技术可用于统一分析物的化学形式。用过氧化氢FF消化后,各种氧化性和还原性无机化合物以及磷和硫的有机化合物显示出相同的敏感性。磷和硫的检出限分别为1.5 ng和0.12 ng。以磷和硫的十次重复测量的相对标准偏差而言,可重复性分别为4.2%和2.0%。最后,将建立的方法应用于几种环境水的测定。

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