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Total Reflection X-ray Fluorescence Analysis of Airborne Silver Nanoparticles from Fabrics

机译:织物中悬浮银纳米粒子的全反射X射线荧光分析

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Ag nanoparticles (NPs) are usually applied to consumer products because of their antimicrobial properties, which are desired in fabrics for sportswear as well as cloth used for cleaning. Hazards to human health from airborne Ag NPs may occur when the NPs are inhaled. NPs are comparable in size to macromolecules and viruses and able to penetrate deep into the lungs, e.g., the alveoli, where they may cause damage to cells and tissue due to their large surface area. In this study, aerosols released form fabrics treated with Ag NPs were collected using a low pressure Berner impactor and analyzed with total reflection X-ray fluorescence (TXRF). We found that the Ag NPs are released primarily in the form of larger particles, mainly 0.13-2 μm, probably attached to fiber material. Using an electron micro probe, single particles could be identified. The detection of backscattered electrons suggests small spots on the particle consist of a heavier element, which most likely is Ag, although the signal in energy-dispersive X-ray spectroscopy (EDX) was below the lower limit of detection (LOD). To achieve LODs necessary for Ag determination, Ar peaks were eliminated by a nitrogen atmosphere provided by the "Picofox-box". This enables linear calibration and quantification of Ag. The LOD was calculated at 0.2 ng (2.0 ppb). Following the TXRF and scanning electron microscopy (SEM)/EDX analysis, the aerosol samples were dissolved in nitric acid and analyzed with ICPMS to successfully confirm the results obtained by the TXRF measurements.
机译:Ag纳米颗粒(NPs)通常由于其抗菌特性而应用于消费品,这在运动服织物以及用于清洁的布中都需要。吸入空气中的NPNP可能会危害人体健康。 NP的大小可与大分子和病毒媲美,并且能够深入肺部,例如肺泡,在肺中由于其大的表面积而可能对细胞和组织造成损害。在这项研究中,使用低压伯纳撞击器收集了用银纳米颗粒处理过的织物释放的气溶胶,并用全反射X射线荧光(TXRF)进行了分析。我们发现,Ag NPs主要以较大的颗粒形式释放,主要是0.13-2μm,可能附着在纤维材料上。使用电子微探针,可以识别单个颗粒。对背向散射电子的检测表明,尽管能量色散X射线光谱(EDX)中的信号低于检测下限(LOD),但粒子上的小斑点由较重的元素组成,最有可能是Ag。为了获得确定Ag所需的LOD,通过“ Picofox-box”提供的氮气气氛消除了Ar峰。这样就可以对银进行线性校准和定量。 LOD计算为0.2 ng(2.0 ppb)。经过TXRF和扫描电子显微镜(SEM)/ EDX分析后,将气溶胶样品溶解在硝酸中,并用ICPMS分析,以成功确认通过TXRF测量获得的结果。

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