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A method for liquid spectrophotometric measurement of total and water-soluble iron and copper in ambient aerosols

机译:环境气溶胶中总和水溶性铁和铜的液体分光光度测量方法

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Determination of transition metals in ambient aerosols is important due to their toxicity to human health. However, the traditional measurement techniques for metal analysis are often costly and require sophisticated instruments. In this study, we developed and verified relatively low-cost liquid spectrophotometric methods for the measurements of iron (Fe) and copper (Cu), the two most abundant transition metals in ambient fine particulate matter (PM 2.5 ). For Fe analysis, we utilized a ferrozine-based colorimetric method, which has been frequently used for water-soluble (WS) Fe determination, and further extended this approach for the measurement of total Fe (water-soluble + water-insoluble). In this method, Fe is quantified through the formation of a light-absorbing ferrozine–Fe(II) complex (absorbance at 562?nm). A similar colorimetric method, which forms a bathocuproine–Cu(I) complex absorbing light at 484?nm, was developed and examined for measurement of WS and total Cu. These methods were applied to 24?h integrated filter samples collected in urban Atlanta. Based on PM 2.5 ambient aerosols, total and water-soluble Fe and Cu concentrations were in good agreement with inductively coupled plasma mass spectrometry (ICP-MS) measurements (slopes 1.0±0.1 , r 2 0.89 ). The water-soluble components, operationally defined as those species in the aqueous filter extract that pass through a 0.45? μm filter, were further characterized by ultrafiltration, which showed that roughly 85?% of both the Fe and Cu in the water-soluble fraction was composed of species smaller than nominally 4?nm.
机译:由于其对人体健康的毒性,环境气溶胶中的过渡金属的测定是重要的。然而,用于金属分析的传统测量技术通常是昂贵的并且需要复杂的仪器。在这项研究中,我们开发并验证了用于测量铁(Fe)和铜(Cu)的相对低成本的液体分光光度法,两个最丰富的环境细颗粒物质(PM 2.5)中的两个最丰富的过渡金属。对于Fe分析,我们使用了一种基于铁嗪的比色法,其经常用于水溶性(WS)Fe测定,并进一步延伸了用于测量总Fe(水溶性+水不溶性)的方法。在该方法中,通过形成光吸收的铁嗪-Fe(II)复合物(562℃的吸光度)来量化Fe。形成和检查在484〜NM处形成浴缸普罗碱-Cu(I)复合吸收光的类似比色法,并检查用于测量WS和总Cu。将这些方法应用于在城市亚特兰大的24次集成过滤器样本中。基于PM 2.5环境气溶胶,总和水溶性的Fe和Cu浓度与电感耦合等离子体质谱(ICP-MS)测量良好(ICP-MS)测量良好(斜率1.0±0.1,R 2> 0.89)。水溶性组分,可操作地定义为通过0.45的水性过滤器提取物中的那些物种。 μm过滤器,通过超滤进一步表征,其显示,水溶性级分中的Fe和Cu的大约85μl%由小于标称4μm的物种组成。

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