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首页> 外文期刊>Journal of Geoscience and Environment Protection >Aeolian Dust Forecast in Arid and Semiarid Regions of Peru and Chile and Their Contribution over Particulate Matter Concentration
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Aeolian Dust Forecast in Arid and Semiarid Regions of Peru and Chile and Their Contribution over Particulate Matter Concentration

机译:秘鲁和智利干旱和半干旱地区的风沙尘预报及其对颗粒物浓度的贡献

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The dust generated in arid areas of the planet is a very important source of particulate matter in the air, especially favoured by the presence of winds that can raise erodible material from the surface. These particles have an important influence when making an assessment of the air quality, due to its direct and indirect impact on public health. In this work, we reproduce episodes of aeolian dusts in the desert areas of Peru and Chile, where high dust concentration events are common and many mining industries are located. The differentiation of the contribution of particulate matter from Aeolian dusts and mining activities of the area is an important issue, as well as trying to forecast these events. For this purpose, we have calculated an erodibility factor at high resolution that, combined with WRF meteorological output and the GOCART dust scheme, gives the emission of particulate matter. We have introduced the emissions in the photochemical model CMAQ, which determines the concentrations in the different domains, and we have observed that the natural dust contributes greatly to pollution in the area, exceeding permissible limit values in the area of Paracas in Peru, and with contributions of up to 23% of the total particulate matter in the city of Calama in Chile, resulting non-negligible values for the evaluation of air quality.
机译:在行星的干旱区域产生的灰尘是空气中非常重要的颗粒物来源,尤其是由于风的存在而产生的尘埃会从表面散发出易蚀物质。这些颗粒物在评估空气质量时具有重要影响,因为它直接或间接地影响公共健康。在这项工作中,我们在秘鲁和智利的沙漠地区再现了风尘的情节,那里的尘埃集中度很高,很多采矿业都位于此地。区分风沙尘埃颗粒物质的贡献和该地区的采矿活动是一个重要问题,同时也试图预测这些事件。为此,我们已经计算出高分辨率的侵蚀因子,并结合WRF气象输出和GOCART除尘方案,给出了颗粒物的排放。我们在光化学模型CMAQ中引入了排放,该模型确定了不同域中的浓度,并且我们已经观察到,自然尘埃对该地区的污染做出了很大贡献,超过了秘鲁Paracas地区的允许极限值,并且智利卡拉马市最多可贡献23%的颗粒物,因此评估空气质量的价值不可忽略。

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