Matusiewicz Henryk, Ślachciński Mariusz, Pawłowski Paweł, Portalski Marek
Poznan University of Technology, Faculty of Chemical Technology.
Anal Sci. 2015;31(10):987-95. doi: 10.2116/analsci.31.987.
A new sensitive method for total mercury determination in reference materials using a 5-phase digitally controlled rotating field plasma source (RFP) for optical emission spectrometry (OES) was developed. A novel synergic effect of ultrasonic nebulization (USN) and ultraviolet-visible light (UV-Vis) irradiation when used in combination was exploited for efficient Hg vapor generation. UV- and Vis-based irradiation systems were studied. It was found that the most advantageous design was an ultrasonic nebulizer fitted with a 6 W mercury lamp supplying a microliter sample to a quartz oscillator, converting liquid into aerosol at the entrance of the UV spray chamber. Optimal conditions involved using a 20% v/v solution of acetic acid as the generation medium. The mercury cold vapor, favorably generated from Hg(2+) solutions by UV irradiation, was rapidly transported into a plasma source with rotating field generated within the five electrodes and detected by digitally controlled rotating field plasma optical emission spectrometry (RFP-OES). Under optimal conditions, the experimental concentration detection limit for the determination, calculated as the concentration giving a signal equal to three times the standard deviation of the blank (LOD, 3σblank criterion, peak height), was 4.1 ng mL(-1). The relative standard deviation for samples was equal to or better than 5% for liquid analysis and microsampling capability. The methodology was validated through determination of mercury in three certified reference materials (corresponding to biological and environmental samples) (NRCC DOLT-2, NRCC PACS-1, NIST 2710) using the external aqueous standard calibration techniques in acetic acid media, with satisfactory recoveries. Mercury serves as an example element to validate the capability of this approach. This is a simple, reagent-saving, cost-effective and green analytical method for mercury determination.
开发了一种新的灵敏方法,用于使用五相数控旋转场等离子体源(RFP)进行光发射光谱法(OES)测定参考物质中的总汞。利用超声雾化(USN)和紫外-可见光(UV-Vis)辐照结合时的新型协同效应来高效产生汞蒸气。研究了基于紫外和可见光的辐照系统。发现最有利的设计是配备6W汞灯的超声雾化器,将微升样品供应到石英振荡器,在紫外喷雾室入口处将液体转化为气溶胶。最佳条件包括使用20%(v/v)的乙酸溶液作为产生介质。通过紫外辐照从Hg(2+)溶液中有利地产生的汞冷蒸气,迅速传输到由五个电极内产生的旋转场的等离子体源中,并通过数控旋转场等离子体光发射光谱法(RFP-OES)进行检测。在最佳条件下,测定的实验浓度检测限(以给出等于空白标准偏差三倍的信号的浓度计算,LOD,3σ空白标准,峰高)为4.1 ng mL(-1)。对于液体分析和微量采样能力,样品的相对标准偏差等于或优于5%。通过使用乙酸介质中的外部水溶液标准校准技术测定三种认证参考物质(对应于生物和环境样品)(NRCC DOLT-2、NRCC PACS-1、NIST 2710)中的汞,对该方法进行了验证,回收率令人满意。汞作为验证该方法能力的示例元素。这是一种用于汞测定的简单、节省试剂、经济高效且绿色的分析方法。