首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Influence of pH and low-molecular weight organic compounds in solution on selected spectroscopic and analytical parameters of flowing liquid anode atmospheric pressure glow discharge (FLA-APGD) for the optical emission spectrometric (OES) determination of Ag, Cd, and Pb
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Influence of pH and low-molecular weight organic compounds in solution on selected spectroscopic and analytical parameters of flowing liquid anode atmospheric pressure glow discharge (FLA-APGD) for the optical emission spectrometric (OES) determination of Ag, Cd, and Pb

机译:pH和溶液中低分子量有机化合物对液体阳极大气压辉光放电(FLA-APGD)所选光谱和分析参数的影响,用于光发射光谱法(OES)测定Ag,Cd和Pb

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摘要

Atmospheric pressure glow discharge operated in contact with a flowing liquid anode (FI_A-APGD), with the solution pH adjusted to pH 6.0 or pH 1.0, was performed to elucidate plasma-chemical processes and reactions occurring in the discharge and the liquid phase. The morphologies in the emission spectra of both FLA-APGD systems in reference to molecular (NO, OH, N_2, and and atomic (H and O) excited species in addition to selected spectroscopic parameters, including the rotational, vibrational, and excitation temperatures and electron number density, were assessed for both discharge systems and compared with those evaluated for APGD operated in contact with a flowing liquid cathode (FLC-APGD). The effect of low-molecular weight (LMW) alcohols (methanol and ethanol) and carboxylic acids (formic acid and acetic acid) added to the FLA solution on the morphology of the spectra and spectroscopic parameters of both discharge systems was studied as well. The analytical performance of both FLA-APGD systems, compliant with the intensities of the atomic lines of Ag, Cd, and Pb, the signal-to-background ratios of these lines, and the detection limits of Ag, Cd, and Pb, under conditions of the absence and presence of the aforementioned LMW organic compounds was determined and compared. It was established that APGD operated in contact with FLA solutions acidified to pH 1.0 or buffered to pH 6.0 conferred a unique set of advantages as compared to the case of the FLC-APGD system. Both FLA-APGD systems were characterized by a large population of high energy electrons and molecular and atomic excited states not quenched by H_2O vapor, as in the case of FLC-APGD. Particularly, for the FLA-APGD (pH 1.0) system, the addition of LMW organic compounds resulted in an improvement in its analytical performance for the detection and determination of Ag, Cd, and Pb.
机译:进行与流动的液态阳极(FI_A-APGD)接触的大气压辉光放电,溶液的pH值调整为pH 6.0或pH 1.0,以阐明在放电和液相中发生的等离子体化学过程和反应。除选定的光谱参数(包括旋转,振动和激发温度和)外,两个FLA-APGD系统的发射光谱中的形态均涉及分子(NO,OH,N_2和原子(H和O))激发的物质。评估了两个放电系统的电子数密度,并将其与在与流动的液体阴极接触的APGD(FLC-APGD)下运行的电子数密度进行了比较低分子量(LMW)醇(甲醇和乙醇)和羧酸的影响并研究了两种放电系统的光谱和光谱参数的形态(甲酸和乙酸),并分析了两种放电系统的分析性能,符合银原子线的强度。 ,Cd和Pb,这些线的信噪比以及在不存在上述LMW有机化合物的条件下Ag,Cd和Pb的检测限确定并比较。已经确定,与FLC-APGD系统相比,APGD与酸化至pH 1.0或缓冲至pH 6.0的FLA溶液接触可提供独特的优势。与FLC-APGD一样,这两个FLA-APGD系统都具有大量高能电子以及分子和原子激发态不被H_2O蒸气淬灭的特征。特别是,对于FLA-APGD(pH 1.0)系统,添加LMW有机化合物导致其检测和测定Ag,Cd和Pb的分析性能得到改善。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2018年第3期|437-451|共15页
  • 作者单位

    Wroclaw University of Science and Technology, Faculty of Chemistry, Division of Analytical Chemistry and Chemical Metallurgy, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland;

    Wroclaw University of Science and Technology, Faculty of Chemistry, Division of Analytical Chemistry and Chemical Metallurgy, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland;

    Wroclaw University of Science and Technology, Faculty of Chemistry, Division of Analytical Chemistry and Chemical Metallurgy, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland;

    Wroclaw University of Science and Technology, Faculty of Chemistry, Division of Analytical Chemistry and Chemical Metallurgy, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland;

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