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首页> 外文期刊>Environmental Monitoring and Assessment >Summer storms and their effects on the spectrum and quantity of airborne bioparticles in Bratislava, Central Europe
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Summer storms and their effects on the spectrum and quantity of airborne bioparticles in Bratislava, Central Europe

机译:夏季风暴及其对布拉索夫,中欧布拉索夫的空中生物颗粒的频谱和数量的影响

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摘要

A thunderstorm is a risk factor for severe respiratory allergy or asthma attacks in patients suffering from pollen/spore allergy. This study aimed to investigate the changes in the spectrum and quantity of pollen and fungal spores in the air of Bratislava during summer storms as well as the impact of selected environmental parameters on these changes. Pollen/spore samples were collected using a Burkard volumetric aerospore trap during summer 2016. To identify those types of pollen/spores that may harm human health during the storm episodes, we analysed how the concentration of individual bioparticles in the air changed during pre-storm/storm/post-storm periods. The effect of environmental variables on the concentration of selected pollen/spore types was evaluated through Spearman's correlation analysis. The results of our study suggest that thunderstorm-related respiratory allergy symptoms in the study area may be caused by (1) spores of Myxomycetes, the airborne concentration of which increases due to an increase in wind speed during the pre-storm period; (2) ruptured pollen and Diatripaceae spores, the concentration of which increases due to increase in precipitation and relative air humidity, respectively, during the storm period; and (3) spores ofFusariumandLeptosphaeria, the concentration of which increases due to increase in precipitation and air temperature, respectively, during the post-storm period.
机译:雷暴是患有花粉/孢子过敏患者的严重呼吸道过敏或哮喘发作的危险因素。本研究旨在探讨夏季风暴期间布拉索夫空气中花粉和真菌孢子的频谱和数量的变化以及所选环境参数对这些变化的影响。在2016年夏季使用乌拉德体积的井孢子陷阱收集花粉/孢子样品。为了鉴定这些类型的花粉/孢子,这些花粉/孢子可能在风暴发作期间危害人类健康,我们分析了在暴风雨期间空气中的个体生物颗粒的浓度如何变化/风暴/暴风雨期。通过Spearman的相关分析评估了环境变量对所选花粉/孢子类型浓度的影响。我们的研究结果表明,研究区域中雷暴相关的呼吸道过敏症状可能是由(1)肌瘤的孢子孢子,其中空气浓度由于在暴风雨期间的风速增加而增加; (2)破裂的花粉和倾角性孢子孢子,其浓度分别在暴风机期间分别增加沉淀和相对空气湿度; (3)孢子offusariumandleptosphaeria,其浓度分别在暴风雨期间分别增加沉淀和空气温度。

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