Assessing Characteristics and Variability of Fluorescent Aerosol Particles: Comparison of Two Case Studies in Southeastern Italy Using a Wideband Integrated Bioaerosol Sensor

Mattia Fragola, Dalila Peccarrisi, S. Romano, G. Quarta, L. Calcagnile
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Abstract

This study aims to investigate the seasonal variation and source identification of fluorescent aerosol particles at the monitoring site of the University of Salento in Lecce, southeastern Italy. Utilizing a wideband integrated bioaerosol sensor (WIBS), this research work analyzes data from two specific monitoring days: one in winter (10 January 2024), marked by significant transport of anthropogenic particles from Eastern Europe, and another in early spring (6 March 2024), characterized by marine aerosol sources and occasional desert dust. This study focuses on the seven WIBS particle categories (A, B, C, AB, AC, BC, ABC), which exhibited distinct characteristics between the two days, indicating different aerosol compositions. Winter measurements revealed a predominance of fine-mode particles, particularly soot and bacteria. In contrast, spring measurements showed larger particles, including fungal spores, pollen fragments, and mineral dust. Fluorescence intensity data further emphasized an increase in biological and organic airborne material in early spring. These results highlight the dynamic nature of fluorescent aerosol sources in the Mediterranean region and the necessity of continuous monitoring for air quality assessments. By integrating WIBS measurements with air mass back-trajectories, this study effectively identifies fluorescent aerosol sources and their seasonal impacts, offering valuable insights into the environmental and health implications of aerosol variability in the investigated Mediterranean area.
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评估荧光气溶胶粒子的特征和可变性:使用宽带综合生物气溶胶传感器比较意大利东南部的两项案例研究
本研究旨在调查意大利东南部莱切萨兰托大学监测点荧光气溶胶粒子的季节变化和来源识别。这项研究工作利用宽带集成生物气溶胶传感器(WIBS),分析了两个特定监测日的数据:一个是冬季(2024 年 1 月 10 日),其特点是来自东欧的人为颗粒物大量迁移;另一个是早春(2024 年 3 月 6 日),其特点是海洋气溶胶来源和偶尔的沙漠尘埃。本研究的重点是 WIBS 的七种粒子类别(A、B、C、AB、AC、BC、ABC),这七种粒子在两天中表现出不同的特征,表明气溶胶成分各不相同。冬季的测量结果显示,细微模式的颗粒物居多,尤其是烟尘和细菌。相比之下,春季的测量结果则显示出较大的颗粒,包括真菌孢子、花粉碎片和矿物尘埃。荧光强度数据进一步强调了早春空气中生物和有机物质的增加。这些结果凸显了地中海地区荧光气溶胶来源的动态性质,以及在空气质量评估中进行持续监测的必要性。通过将 WIBS 测量与气团回溯轨迹相结合,本研究有效地确定了荧光气溶胶源及其季节性影响,为研究地中海地区气溶胶变化对环境和健康的影响提供了有价值的见解。
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