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Influence Of Atmospheric Ozone, Pm_(10) And Meteorological Factors On The Concentration Of Airborne Pollen And Fungal Spores

机译:大气臭氧,Pm_(10)和气象因素对空气中花粉和真菌孢子浓度的影响

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The increase of allergenic symptoms has been associated with air contaminants such as ozone, particulate matter, pollen and fungal spores. Considering the potential relevance of crossed effects of non-biological pollutants and airborne pollens and fungal spores on allergy worsening, the aim of this work was to evaluate the influence of non-biological pollutants and meteorological parameters on the concentrations of pollen and fungal spores using linear correlations and multiple linear regressions. For that, the seasonal variation of ozone, particulate matter with an equivalent aerodynamic diameter smaller than 10 μm, pollen and fungal spores were assessed and statistical correlations were analysed between those parameters. The data were collected through 2003-2005 in Porto, Portugal. The linear correlations showed that ozone and particulate matter had no significant influence on the concentration of pollen and fungal spores. On the contrary, when using multiple linear regressions those parameters showed to have some influence on the biological pollutants, although results were different depending on the year analysed. Among the meteorological parameters analysed, temperature was the one that most influenced the pollen and fungal spores airborne concentrations, both when using linear and multiple linear correlations. Relative humidity also showed to have some influence on the fungal spore dispersion when multiple linear regressions were used. Nevertheless, the conclusions for each pollen and fungal spore were different depending on the analysed period, which means that the correlations identified as statistically significant may not be, even so, consistent enough. Furthermore, the comparison of the results here presented with those obtained by other authors for only one period should be made carefully.
机译:过敏原症状的增加与空气污染物(如臭氧,颗粒物,花粉和真菌孢子)有关。考虑到非生物污染物与空气传播的花粉和真菌孢子交叉作用对过敏性恶化的潜在相关性,本研究的目的是使用线性方法评估非生物污染物和气象参数对花粉和真菌孢子浓度的影响。相关性和多元线性回归。为此,评估了臭氧,等效空气动力学直径小于10μm的颗粒物,花粉和真菌孢子的季节性变化,并分析了这些参数之间的统计相关性。数据收集自2003年至2005年在葡萄牙波尔图。线性相关性表明,臭氧和颗粒物对花粉和真菌孢子的浓度没有显着影响。相反,当使用多元线性回归时,这些参数显示出对生物污染物的影响,尽管结果根据所分析的年份而有所不同。在分析的气象参数中,使用线性和多重线性相关性时,温度是影响花粉和真菌孢子空气中浓度最高的温度。当使用多重线性回归时,相对湿度也显示出对真菌孢子散布的影响。但是,每个花粉和真菌孢子的结论因分析时间的不同而不同,这意味着被鉴定为具有统计学意义的相关性可能甚至不够一致。此外,应谨慎地将此处介绍的结果与其他作者在一个时期内获得的结果进行比较。

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