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首页> 外文期刊>Scientific reports. >Detecting the causality influence of individual meteorological factors on local PM2.5 concentration in the Jing-Jin-Ji region
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Detecting the causality influence of individual meteorological factors on local PM2.5 concentration in the Jing-Jin-Ji region

机译:检测京金姬地区局部PM2.5浓度的个体气象因素的因果关系

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摘要

Due to complicated interactions in the atmospheric environment, quantifying the influence of individual meteorological factors on local PM2.5 concentration remains challenging. The Beijing-Tianjin-Hebei (short for Jing-Jin-Ji) region is infamous for its serious air pollution. To improve regional air quality, characteristics and meteorological driving forces for PM2.5 concentration should be better understood. This research examined seasonal variations of PM2.5 concentration within the Jing-Jin-Ji region and extracted meteorological factors strongly correlated with local PM2.5 concentration. Following this, a convergent cross mapping (CCM) method was employed to quantify the causality influence of individual meteorological factors on PM2.5 concentration. The results proved that the CCM method was more likely to detect mirage correlations and reveal quantitative influences of individual meteorological factors on PM2.5 concentration. For the Jing-Jin-Ji region, the higher PM2.5 concentration, the stronger influences meteorological factors exert on PM2.5 concentration. Furthermore, this research suggests that individual meteorological factors can influence local PM2.5 concentration indirectly by interacting with other meteorological factors. Due to the significant influence of local meteorology on PM2.5 concentration, more emphasis should be given on employing meteorological means for improving local air quality.
机译:由于大气环境中的复杂相互作用,量化个体气象因素对局部PM2.5浓度的影响仍然具有挑战性。北京天津 - 河北(Jing-Jin-ji)的遗址为其严重的空气污染是臭名昭着的。为了提高区域空气质量,应更好地理解PM2.5浓度的特征和气象驱动力。该研究检测了京金姬区内PM2.5浓度的季节变化,提取了与局部PM2.5浓度强烈相关的气象因素。在此之后,采用收敛交叉映射(CCM)方法来量化个体气象因子对PM2.5浓度的因果关系。结果证明,CCM方法更有可能检测Mirage相关性并揭示个体气象因子对PM2.5浓度的定量影响。对于京金吉地区,PM2.5浓度较高,较强影响气象因素对PM2.5浓度发挥作用。此外,该研究表明,通过与其他气象因素相互作用,各种气象因素可以间接地影响局部PM2.5浓度。由于局部气象对PM2.5浓度的显着影响,应更加强调采用气象手段来改善局部空气质量。

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