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Spatial and Temporal Variations of PM 2.5 and Its Relation to Meteorological Factors in the Urban Area of Nanjing, China

机译:南京市区PM 2.5的时空变化及其与气象因子的关系

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The serious air pollution problem has aroused widespread public concerns in China. Nanjing city, as one of the famous cities of China, is faced with the same situation. This research aims to investigate spatial and temporal distribution characteristics of fine particulate matter (PM 2.5 ) and the influence of weather factors on PM 2.5 in Nanjing using Spearman-Rank analysis and the Complete Ensemble Empirical Mode Decomposition with Adaptive Noise (CEEMDAN) method. Hourly PM 2.5 observation data and daily meteorological data were collected from 1 April 2013 to 31 December 2015. The spatial distribution result shows that the Maigaoqiao site suffered the most serious pollution. Daily PM 2.5 concentrations in Nanjing varied from 7.3 μg/m 3 to 336.4 μg/m 3 . The highest concentration was found in winter and the lowest in summer. The diurnal variation of PM 2.5 increased greatly from 6 to 10 a.m. and after 6 p.m., while the concentration exhibited few variations in summer. In addition, the concentration was slightly higher on weekends compared to weekdays. PM 2.5 was found to exhibit a reversed relation with wind speed, relative humidity, and precipitation. Although temperature had a positive association with PM 2.5 in most months, a negative correlation was observed during the whole period. Additionally, a high concentration was mainly brought with the wind with a southwest direction and several relevant factors are discussed to explain the difference of the impacts of diverse wind directions.
机译:严重的空气污染问题引起了中国公众的广泛关注。作为中国著名的城市之一,南京市面临着同样的情况。本研究旨在利用Spearman-Rank分析和自适应噪声完全集合经验模式分解(CEEMDAN)方法研究细颗粒物(PM 2.5)的时空分布特征以及天气因素对南京PM 2.5的影响。从2013年4月1日至2015年12月31日,每小时收集PM 2.5观测数据和每日气象数据。空间分布结果表明,麦高桥站污染最为严重。南京的每日PM 2.5浓度从7.3μg/ m 3到336.4μg/ m 3。冬季最高,夏季最低。从早上6点到晚上10点以及下午6点以后,PM 2.5的昼夜变化大大增加,而夏季的浓度几乎没有变化。此外,与工作日相比,周末的浓度略高。发现PM 2.5与风速,相对湿度和降水量呈反比关系。尽管在大多数月份中温度与PM 2.5呈正相关,但在整个时期内均观察到负相关。此外,向西南方向的风主要带来了高浓度,并讨论了几个相关因素来解释不同风向影响的差异。

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