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Improved Inversion of Monthly Ammonia Emissions in China Based on the Chinese Ammonia Monitoring Network and Ensemble Kalman Filter

反演(地质) 环境科学 集合卡尔曼滤波器 空气质量指数 卡尔曼滤波器 中国 水平分辨率 气象学 季节性 排放清单 估计 扩展卡尔曼滤波器 大气科学 气候学 地理 统计 数学 工程类 地质学 考古 古生物学 化学 构造盆地 有机化学 系统工程
作者
Lei Kong,Xiao Tang,Jiang Zhu,Zifa Wang,Yuepeng Pan,Huangjian Wu,Lin Wu,Qizhong Wu,Yuexin He,Shili Tian,Yuzhu Xie,Zirui Liu,Wenxuan Sui,Lina Han,Greg Carmichael
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:53 (21): 12529-12538 被引量:154
标识
DOI:10.1021/acs.est.9b02701
摘要

Ammonia (NH3) emission inventories are an essential input in chemical transport models and are helpful for policy-makers to refine mitigation strategies. However, current estimates of Chinese NH3 emissions still have large uncertainties. In this study, an improved inversion estimation of NH3 emissions in China has been made using an ensemble Kalman filter and the Nested Air Quality Prediction Modeling System. By first assimilating the surface NH3 observations from the Ammonia Monitoring Network in China at a high resolution of 15 km, our inversion results have provided new insights into the spatial and temporal patterns of Chinese NH3 emissions. More enhanced NH3 emission hotspots, likely associated with industrial or agricultural sources, were captured in northwest China, where the a posteriori NH3 emissions were more than twice the a priori emissions. Monthly variations of NH3 emissions were optimized in different regions of China and exhibited a more distinct seasonality, with the emissions in summer being twice those in winter. The inversion results were well-validated by several independent datasets that traced gaseous NH3 and related atmospheric processes. These findings highlighted that the improved inversion estimation can be used to advance our understanding of NH3 emissions in China and their environmental impacts.
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