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首页> 外文期刊>Atmospheric environment >Hourly pattern of allergenic alder and birch pollen concentrations in the air: Spatial differentiation and the effect of meteorological conditions
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Hourly pattern of allergenic alder and birch pollen concentrations in the air: Spatial differentiation and the effect of meteorological conditions

机译:空气中过敏性al木和桦树花粉浓度的小时模式:空间分异和气象条件的影响

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In temperate climate widespread alder and birch are an important source of strong aeroallergens. The diurnal pattern of airborne pollen concentrations depends on the rhythm of pollen release from anthers as well as weather conditions, convection air currents, long-distance transport, pollen trap location and local vegetation. The aim of the study was to present a diurnal pattern of Abuts (alder) and Betula (birch) pollen concentrations in the air in a horizontal and vertical gradient and examine the weather parameters that had the greatest impact on the pattern. The study was conducted in Rzeszow City, southeast Poland over three years. Pollen grains were collected using a Hirst volumetric spore trap at three sampling points: two at 12 m the agl, and one at 1.5 m agl. Data were analysed using circular statistics and a nonlinear function. For alder, three models of hourly patterns were elaborated and the most common presented early morning minimum and early afternoon maximum. For birch, the most common model has one peak at night and a marked decrease in concentrations in early morning, although a second model has peak during early afternoon. A model with 3 peaks is much less common. These models are characteristic for warm temperate climate regions, where alders and birches are common. The diurnal patterns did not depend on the localization of traps or proximity of the pollen source, although these factors influenced the hourly concentrations, with higher values observed at roof level. Significant relationships between the hourly pollen counts and meteorological parameters were observed only for alder. Three incidents of increasing birch pollen concentrations were observed during the first two hours of precipitation and linked to a convection effect. Unstable weather conditions caused by air convection might strongly modify the circadian pattern and cause the nightly peaks concentrations. The general results are that people suffering from allergies may be exposed to high birch and alder pollen concentrations at almost all times during the day with the exception of the morning hours, as well as during the first hours of convective precipitation. Precise information on pollen concentrations aids in allergy prevention, so cities should provide aerobiological monitoring at least at "roof level" and "nose level".
机译:在温带气候下,widespread木和桦木广泛是强气致敏原的重要来源。空气中花粉浓度的昼夜模式取决于花药释放花粉的节奏以及天气条件,对流气流,长途运输,花粉诱集器的位置和当地植被。该研究的目的是以水平和垂直梯度呈现空气中的桥墩(al木)和桦(桦木)花粉浓度的昼夜模式,并研究对模式影响最大的天气参数。这项研究在波兰东南部的热舒夫市进行了三年。使用Hirst体积孢子阱在三个采样点收集花粉粒:两个在12 m agl,一个在1.5 m agl。使用循环统计和非线性函数分析数据。对于al木,详细阐述了三种小时模式,并给出了最常见的清晨最小值和午后最大值。对于桦树,最常见的模型在晚上出现一个峰值,在清晨时浓度显着下降,尽管第二个模型在下午出现峰值。具有3个峰的模型不那么常见。这些模型是温暖的温带气候地区的特征,那里常有ders木和桦树。尽管这些因素影响小时浓度,但昼夜模式并不取决于陷阱的位置或花粉来源的接近程度,在屋顶水平观察到较高的值。仅al木观察到小时花粉计数与气象参数之间的显着关系。在降水的前两个小时观察到了三起桦木花粉浓度升高的事件,并与对流效应有关。对流造成的不稳定天气状况可能会极大地改变昼夜节律,并导致夜间峰值浓度。总体结果是,除了早晨和对流降水的头几个小时,患有过敏症的人几乎全天都可能暴露于高桦木和al木花粉中。有关花粉浓度的准确信息有助于预防过敏,因此城市应至少在“屋顶水平”和“鼻子水平”上提供航空生物学监测。

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