首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Investigation of sulfur release in ETV-ICP-AES and its application for the determination of sulfates
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Investigation of sulfur release in ETV-ICP-AES and its application for the determination of sulfates

机译:ETV-ICP-AES中硫释放量的研究及其在硫酸盐测定中的应用

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Electrothermal vaporization inductively coupled plasma atomic emission spectrometry was applied to the determination of sulfur species in aqueous solutions. The sensitivity for sulfur as sulfate was found to be depending on the cations in the sample. For understanding this phenomenon the thermal behavior of sulfuric acid, ammonium sulfate and the sulfates of sodium, zinc, magnesium and silver was studied. There were significant differences in the thermal release of sulfur from these sulfates. To explain these phenomena different reaction mechanisms were calculated using thermodynamic data. Pd(NO3)(2) and Ge in KOH were successfully applied as modifiers for the stabilization of the sulfates during the thermal pre-treatment step and to establish a uniform thermal behavior of different sulfates. The stabilization of sulfur using Ge and Pd as modifiers is based on the reduction of the sulfates in presence of carbon, resulting in the formation of GeS and PdS, respectively. This explanation has been supported by comparing the experimental results with thermodynamic calculations considering different reactions for the thermal decomposition of the sulfates. Applying Ge (in KOH) as modifier the absolute detection limit was 300 pg sulfur (e.g. LOD 30 ng mL(-1)). The significant influence of phosphates on the determination of sulfur could be essentially reduced by Pd as modifier. [References: 31]
机译:电热蒸发电感耦合等离子体原子发射光谱法用于测定水溶液中的硫。已发现硫作为硫酸盐的敏感性取决于样品中的阳离子。为了理解该现象,研究了硫酸,硫酸铵和钠,锌,镁和银的硫酸盐的热行为。这些硫酸盐中硫的热释放存在显着差异。为了解释这些现象,使用热力学数据计算了不同的反应机理。 KOH中的Pd(NO3)(2)和Ge已成功地用作热预处理步骤中稳定硫酸盐的改性剂,并建立了不同硫酸盐的均匀热行为。使用Ge和Pd作为改性剂的硫的稳定化是基于碳存在下硫酸盐的还原,分别导致GeS和PdS的形成。通过将实验结果与考虑了硫酸盐热分解的不同反应的热力学计算进行比较,从而支持了这种解释。应用Ge(在KOH中)作为改性剂,绝对检测限为300 pg硫(例如LOD 30 ng mL(-1))。钯作为改性剂可基本上减少磷酸盐对硫含量测定的重大影响。 [参考:31]

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