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Evaluation of a sample preparation procedure for total-reflection X-ray fluorescence analysis of directly collected airborne particulate matter samples

机译:直接收集空气颗粒物质样品的全反射X射线荧光分析的样品制备方法的评价

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This paper investigates in detail a sample preparation procedure for the total-reflection X-ray fluorescence (TXRF) analysis of airborne particles using a three-stage Dekati (TM) PM10 cascade impactor. The impactor was modified in such a way, that 30 mm diameter quartz reflectors suitable for TXRF spectrometers can be inserted as collection plates below the impactor's nozzle arrays with cut-off diameters of 10,2.5 and 1 mu m. Smaller particles are collected in a backup filter, which can be analyzed using classical energy-dispersive XRF. As an internal standard 5 ng Y were pipetted centrally onto each reflector after collection. The reflector surface has to be coated in order to reduce particle bounce-off. Two surface coatings, silicone oil and petroleum jelly ("Vaseline"), were compared in this study. Before TXRF analysis this coating layer was removed by low-temperature oxygen plasma ashing. A new approach was introduced, which involves masking of the quartz reflectors in order to remove the outer ring of the spot pattern, which consists of two concentric circles, and to produce a sample, which lies entirely inside the detectable area. Results of this approach were compared to those obtained from unmasked samples and discussed in detail. Angle scans show residue-like behavior of the samples in each stage. Samples were taken on the roof of the Atominstitut building in January 2017 on 10 days during working hours. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文详细研究了使用三阶段Dekati(TM)PM10级联撞击器的空气颗粒的总反射X射线荧光(TXRF)分析的样品制备方法。以这种方式修改冲击器,适用于TXRF光谱仪的30mm直径的石英反射器可以作为收集板插入冲击器的喷嘴阵列下方,截止直径为10,2.5和1μm。在备用过滤器中收集较小的颗粒,其可以使用经典能量分散XRF分析。由于内标,5个NG y在收集后集中移液到每个反射器上。必须涂覆反射器表面以减少颗粒反弹。在本研究中比较了两种表面涂层,硅油和石油果冻(“vaseline”)。在TXRF分析之前,通过低温氧等离子体灰化除去该涂层。介绍了一种新方法,涉及掩蔽石英反射器,以便去除点图案的外环,这由两个同心圆组成,并产生完全在可检测区域内的样品。将该方法的结果与来自未掩蔽样品获得的结果进行比较并详细讨论。角度扫描显示每个阶段中样品的残留物行为。在工作时间的10天10天在2017年1月在atominstitut建筑的屋顶上拍摄样品。 (c)2018 Elsevier B.v.保留所有权利。

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