首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Characterization of atmospheric aerosols using Synchroton radiation total reflection X-ray fluorescence and Fe K-edge total reflection X-ray fluorescence-X-ray absorption near-edge structure
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Characterization of atmospheric aerosols using Synchroton radiation total reflection X-ray fluorescence and Fe K-edge total reflection X-ray fluorescence-X-ray absorption near-edge structure

机译:利用同步辐射全反射X射线荧光和Fe K边缘全反射X射线荧光X射线吸收近边缘结构表征大气气溶胶

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摘要

In this study a new procedure using Synchrotron total reflection X-ray fluorescence (SR-TXRF) to characterize elemental amounts in atmospheric aerosols down to particle sizes of 0.015 um is presented. The procedure was thoroughly evaluated regarding bounce off effects and blank values. Additionally the potential of total reflection X-ray fluorescence-X-ray absorption near edge structure (SR-TXRF-XANES) for speciation of Fell/Hi down to amounts of 34 pg in aerosols which were collected for 1 h is shown. The aerosols were collected in the city of Hamburg with a low pressure Berner impactoron Si carriers covered with silicone over time periods of 60 and 20 min each. The particles were collected in four and ten size fractions of 10.0-8.0 μm, 8.0-2.0 μm, 2.0-0.13 μm 0.13-0.015 μm (aerodynamic particle size) and 15-30 nm, 30-60 nm, 60-130 nm, 130-250 nm, 250-500 nm, 0.5-1 μm, 1 -2 μm, 2-4μm, 4-8 μm, 8-16 μm. Prior to the sampling "bounce off' effects on Silicone and Vaseline coated Si carriers were studied with total reflection X-ray fluorescence. According to the results silicone coated carriers were chosen for the analysis. Additionally, blank levels originating from the sampling device and the calibration procedure were studied. Blank levels of Fe corresponded to 1 -10% of Fe in the aerosol samples. Blank levels stemming from the internal standard were found to be negligible. The results from the Synchroton radiation total reflection X-ray fluorescence analysis of the aerosols showed that 20 min of sampling time gave still enough sample material for elemental determination of most elements. For the determination of the oxidation state of Fe in the aerosols different Fe salts were prepared as a reference from suspensions in isopropanol. The results from the Fe K-edge Synchroton radiation total reflection X-ray fluorescence-X-ray absorption near-edge structure analysis of the aerosol samples showed that mainly Fe(III) was present in all particle size fractions.
机译:在这项研究中,提出了一种使用同步加速器全反射X射线荧光(SR-TXRF)表征粒径小于0.015 um的大气气溶胶中元素含量的新方法。关于反弹效果和空白值,对该程序进行了彻底的评估。此外,还显示了在边缘结构(SR-TXRF-XANES)处全反射X射线荧光X射线吸收对Fell / Hi形成低至34 pg量的气溶胶的潜力,该气溶胶收集了1 h。气溶胶是在汉堡市使用低压Berner Impactoron Si载体收集的,该载体在硅载体上覆盖有硅酮,时间分别为60分钟和20分钟。以10.0-8.0μm,8.0-2.0μm,2.0-0.13μm0.13-0.015μm(空气动力学粒径)和15-30 nm,30-60 nm,60-130 nm, 130-250 nm,250-500 nm,0.5-1μm,1-2-μm,2-4μm,4-8μm,8-16μm。在采样之前,用全反射X射线荧光研究了对硅酮和凡士林涂层的硅载体的“反弹”效应。根据结果,选择了硅酮涂层的载体进行分析。研究了校准过程,空白水平的Fe相当于气溶胶样品中Fe的1 -10%,内部标准产生的空白水平可以忽略不计,同步辐射全反射X射线荧光分析的结果气溶胶显示,采样时间为20分钟,仍然可以提供足够的样品材料用于大多数元素的元素测定;为确定气溶胶中Fe的氧化态,可以从异丙醇悬浮液中制备不同的Fe盐作为参考。气溶胶样品的K边缘同步辐射全反射X射线荧光X射线吸收近边缘结构分析les表明,在所有粒度级分中主要存在Fe(III)。

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