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Mechanistic studies on the trapping and desorption of volatile hydrides and mercury for their deermination by electrothermal vaporization-inductively-coupled plasma mass spectrometry

机译:电热汽化-电感耦合等离子体质谱法对挥发性氢化物和汞进行捕集和解吸的机理研究

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Metallic coatings in the pyrolytic graphite furnace have been used for the pre-concentration of Hg (using electrochemically reduced Au) and AsH_3 (using both thermally and electrochemically reudced Ir and Pd/Ir) prior to electrothermal volatilization. The analyte trapping efficiency during accumulation and the analyte and modifier release processes during volatilization were monitored in real time. This was achieved by using the fast response capability of inductively-coupled plasma-mass spectrometry to determine simultaneously both the analyte and modifier elements as a function of time. the temperature dependence of the analyte trapping process points to contrasting mechanisms for Hg adsorption on Au (reversible, physical adsorption/amalgamation) and for AsH_3 adsorption on Pd, Ir or Pd/Ir (physical adsorption followed by an irreversible hydrogen abstraction reaction at active sites). Results also indicate that only minor volatilization of modifer occurs at the temperature required for volatilization of analyte from the furnace.
机译:在电热挥发之前,热解石墨炉中的金属涂层已用于Hg(使用电化学还原的Au)和AsH_3(同时使用热和电化学还原的Ir和Pd / Ir)的预浓缩。实时监测积累过程中的分析物捕获效率以及挥发过程中的分析物和改性剂释放过程。这是通过使用电感耦合等离子体质谱法的快速响应能力同时确定作为时间函数的分析物元素和修饰元素来实现的。分析物捕集过程的温度依赖性表明,汞在Au上的吸附(可逆,物理吸附/汞齐)和Pd,Ir或Pd / Ir上的AsH_3吸附(物理吸附,随后在活性位点发生不可逆的氢提取反应)的对比机理)。结果还表明,在炉中分析物挥发所需的温度下,修饰剂仅发生少量挥发。

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