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Microanalysis of Museum Aerosols To Elucidate the Soiling of Paintings: Case of the Correr Museum, Venice, Italy

机译:博物馆气溶胶的微观分析以阐明画作的污染:以意大利威尼斯Correr博物馆为例

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The results of the characterization of individual airborne particles collected during two separate sampling campaigns at the Correr Museum, situated at the San Marco Square in Venice, Italy, are reported. The chemical composition and associated diameter of individual aerosol particles in the size range of 0.2-20 μm were determined by electron probe X-ray microanalysis and scanning electron microscopy with energy dispersive X-ray measurement (SEM-EDX). Multivariate techniques were used for the reduction of the data set. Based on hierarchical cluster analysis results, the majority of samples from both campaigns appeared to be composed of six to eight different particle types from which the Ca-rich particles together with the aluminosilicates and organic material can be identified as the most important ones. The correlation between the abundance of the particle types and their diameters as well as between the sampling periods was investigated. Factor analysis revealed similar results. To provide a better view on the nature, composition, and possible sources of the indoor aerosol particles, the indoor and outdoor aerosol compositions of three sampling periods were compared, and additionally two possible indoor particle sources were investigated. The results indicated the existence of a Ca-rich indoor particle source, probably the deterioration of the interior plaster walls. The homogeneity study of giant aerosol particles > 8 μm, using the X-ray mapping facilities on the SEM-EDX instrument under optimal conditions, revealed that these particles are heterogeneous and mainly consist of Ca and Si. The other particle types were identified as small aluminosilicate and CaSO_4 particles or very small Fe-rich particles, and they seemed to be adsorbed at the surface of the Ca-Si-rich particles. Preliminary results of scanning transmission electron microscopy and scanning proton microprobe measurements on submicrometer indoor aerosol particles and giant indoor Ca-rich aerosol particles, respectively, are discussed as well.
机译:据报道,对在意大利威尼斯圣马可广场的科勒博物馆进行的两次独立采样活动中收集到的单个空气中颗粒的表征结果。通过电子探针X射线显微分析和带有能量色散X射线测量(SEM-EDX)的扫描电子显微镜,确定尺寸范围为0.2-20μm的单个气溶胶颗粒的化学成分和相关直径。多变量技术用于减少数据集。根据层次聚类分析结果,这两个活动的大多数样本似乎由六到八种不同的颗粒类型组成,从中可以确定富含Ca的颗粒以及铝硅酸盐和有机材料是最重要的。研究了颗粒类型的丰度与其直径之间以及采样周期之间的相关性。因子分析显示了相似的结果。为了更好地了解室内气溶胶颗粒的性质,成分和可能的来源,比较了三个采样周期的室内和室外气溶胶成分,并另外研究了两种可能的室内颗粒物来源。结果表明存在富含钙的室内颗粒源,可能是内部石膏墙的恶化。在最佳条件下,使用SEM-EDX仪器上的X射线绘图工具对大于8μm的巨型气溶胶颗粒进行均质性研究,结果表明这些颗粒是异质的,主要由Ca和Si组成。其他颗粒类型被确定为小的铝硅酸盐和CaSO_4颗粒或非常小的富Fe颗粒,它们似乎吸附在富Ca-Si颗粒的表面。还讨论了分别在亚微米室内气溶胶颗粒和室内巨大的富含Ca的气溶胶颗粒的扫描透射电子显微镜和质子扫描探针的初步结果。

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