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Numerical study on seasonal variations of gaseous pollutants and particulate matters in Hong Kong and Pearl River Delta Region

机译:香港和珠江三角洲地区气态污染物和颗粒物季节变化的数值研究

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This study presents Community Multiscale Air Quality (CMAQ) model results for Hong Kong (HK) and the Pearl River Delta region in January, April, July, and October 2004, representing winter, spring, summer, and autumn seasons. Two sets of observations/ measurement data are referred to in order to evaluate model performance. The first set consists of hourly observations of criteria pollutants at HK Environmental Protection Department (HKEPD) ambient stations throughout HK, while the second set contains speciated PM measurements, sampled at 6-day intervals, at six of the HKEPD ambient stations. Model-observation agreement is good in PM species sulfate, organic carbon (OC), and elemental carbon (EC). The good performance for OC and EC, when compared to similar evaluation for North America and Europe, demonstrates the importance of correct speciation in an emission sector. Underprediction of NOx and NH_3 suggests a desperate need of emission estimation improvement in these species. PM levels are higher in autumn and winter, lower in spring, and lowest in summer, coinciding with northeasterly winds due to continental outflow in autumn and winter, and with southwesterly monsoon in summer. The model is also able to reproduce the seasonal and spatial patterns for PM and O_3. In terms of PM composition, the model agrees with the measured fractions of sulfate, OC, and EC. Additionally, CMAQ was rerun with emission sources partially removed, with results suggesting that pollution sources beyond the Pearl River Delta also contribute to the PM and sulfate levels in HK, particularly during the winter season.
机译:本研究提供了2004年1月,4月,7月和2004年10月分别代表冬季,春季,夏季和秋季的香港(HK)和珠江三角洲地区的社区多尺度空气质量(CMAQ)模型结果。为了评估模型性能,请参考两组观察/测量数据。第一组包括每小时在香港环境保护署(HKEPD)环境站对标准污染物进行的每小时观测,而第二组包含在6个HKEPD环境站以6天为间隔采样的特定PM测量值。模型观测协议在PM物种硫酸盐,有机碳(OC)和元素碳(EC)中很好。与北美和欧洲的类似评估相比,OC和EC的良好性能证明了在排放部门中正确形成物种的重要性。 NOx和NH_3的低估表明,迫切需要改善这些物种的排放估算。秋季和冬季的PM水平较高,春季的较低,夏季的最低水平,这与秋季和冬季的大陆外流引起的东北风以及夏季的西南季风相吻合。该模型还能够再现PM和O_3的季节和空间格局。在PM组成方面,该模型与硫酸盐,OC和EC的实测馏分相符。此外,对CMAQ进行了重新运行,部分去除了排放源,结果表明,珠江三角洲以外的污染源也导致了香港的PM和硫酸盐含量升高,特别是在冬季。

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