基于东亚人为排放变化的WRF-Chem分析韩国PM10的远程传输贡献

IF 0.3 Q4 GEOSCIENCES, MULTIDISCIPLINARY
Hyae-Jin Lee, Jae-Hee Cho
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引用次数: 0

摘要

:尽管中国自2020年1月23日起在全国范围内实施了新冠肺炎封锁,但2020年2月1日和2日出现了PM 10水平高达88-98µg m−3的雾霾天。在这几天的雾霾天气中,东亚地区受到温暖和停滞气团的影响,850百帕的正气温异常和负纬向风异常。利用天气研究与预测化学耦合模型(WRF-Chem)分析了东亚人为排放减少导致的韩国区域PM 10气溶胶传输的变化。应用WRF-Chem模型中基本人为排放量的基础实验(base)和将人为排放量减少到50%的对照实验(CTL)用于评估韩国地面PM 10测量的不确定性。CTL模拟的一致性指数(IOA)为0.71,高于BASE(0.67)。对结果的统计分析表明,在中国新冠肺炎封锁期间,人为排放量有所减少。此外,还使用BASE和CTL(BASE_ZEOK和CTL_ZEOK)分析了韩国区域PM 10气溶胶传输的变化。与BASE相比,CTL中PM 10的区域转运仅减少了10-20%。随着东亚人为排放量的减少,合成天气变量可能是对韩国区域运输对PM 10贡献变化的非线性响应的另一个原因。尽管其他无机气溶胶在CTL中的区域传输贡献较高(80-90%),但硫酸盐-硝酸铵(SNA)气溶胶的贡献较低,分别为0-20%、30-60%和30-60%。国民账户体系的二次气溶胶,特别是硝酸盐,可能随着中国封锁引发的交通而减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Long-Range Transport Contribution to PM10 in Korea Based on the Variations of Anthropogenic Emissions in East Asia using WRF-Chem
: Despite the nationwide COVID-19 lockdown in China since January 23, 2020, haze days with high PM 10 levels of 88-98 µg m −3 occurred on February 1 and 2, 2020. During these haze days, the East Asian region was affected by a warm and stagnant air mass with positive air temperature anomalies and negative zonal wind anomalies at 850 hPa. The Weather Research and Forecasting model coupled with Chemistry (WRF-Chem) was used to analyze the variation of regional PM 10 aerosol transport in Korea due to decreased anthropogenic emissions in East Asia. The base experiment (BASE), which applies the basic anthropogenic emissions in the WRF-Chem model, and the control experiment (CTL) applied by reducing the anthropogenic emission to 50%, were used to assess uncertainty with ground-based PM 10 measurements in Korea. The index of agreement (IOA) for the CTL simulation was 0.71, which was higher than that of BASE (0.67). A statistical analysis of the results suggests that anthropogenic emissions were reduced during the COVID-19 lockdown period in China. Furthermore, BASE and CTL applied to zero-out anthropogenic emissions outside Korea (BASE_ZEOK and CTL_ZEOK) were used to analyze the variations of regional PM 10 aerosol transport in Korea. Regional PM 10 transport in CTL was reduced by only 10-20% compared to BASE. Synthetic weather variables may be another reason for the non-linear response to changes in the contribution of regional transport to PM 10 in Korea with the reduction of anthropogenic emissions in East Asia. Although the regional transport contribution of other inorganic aerosols was high in CTL (80-90%), sulfate-nitrate-ammonium (SNA) aerosols showed lower contributions of 0-20%, 30-60%, and 30-60%, respectively. The SNA secondary aerosols, particularly nitrates, presumably declined as the Chinese lockdown induced traffic.
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来源期刊
Journal of the Korean Earth Science Society
Journal of the Korean Earth Science Society GEOSCIENCES, MULTIDISCIPLINARY-
自引率
50.00%
发文量
46
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