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Seasonal variations of anthropogenic sulfate aerosol and direct radiative forcing over China

机译:中国人为硫酸盐气溶胶的季节变化和直接辐射强迫

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摘要

Regional climate model (RegCM2) and sulfur transport model (NJUADMS) were combined to simulate the distribution of anthropogenic sulfate aerosol burden over China, where a “look up table” method was applied to illustrate sulfate formation from SO2-oxidation. Direct radiative forcing of sulfate aerosol was further estimated using the scheme suggested by Charlson et al (1991). Investigations show that the annual average total sulfate column over mainland China is 2.01 mg/m2 with high value in East and Central areas (more than 7 mg/m2). The annual average direct radiative forcing of China is about −0.85 W/m2. The forcing can reach −7 W/m2 in Central and East China during the winter season. Total sulfate column shows significant seasonal variations with winter maximum-summer minimum in the Southern part of China and spring maximum-autumn minimum in the northern part of China. Strong seasonal cycles of direct radiative forcing are also found due to the influence of total sulfate column, cloud, relative humidity and the reflectivity of underlying surface
机译:结合区域气候模型(RegCM2)和硫迁移模型(NJUADMS),模拟了人为的硫酸盐气溶胶负荷在中国的分布,并采用“查找表”法说明了SO2 -氧化过程中硫酸盐的形成。使用Charlson等人(1991)提出的方案进一步估算了硫酸盐气溶胶的直接辐射强迫。调查显示,中国大陆的年平均总硫酸盐柱为2.01 mg / m2 ,在东部和中部地区具有很高的价值(超过7 mg / m2 )。中国的年平均直接辐射强迫约为-0.85 W / m2 。在冬季,华中和华东的强迫可以达到-7 W / m2 。总硫酸盐柱表现出明显的季节变化,中国南部的冬季最大,夏季最小,而中国北部的春季最大,秋季最小。由于总硫酸盐柱,云,相对湿度和下层表面的反射率的影响,还发现了直接辐射强迫的强烈季节性周期。

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  • 来源
    《Meteorology and Atmospheric Physics》 |2003年第4期|185-198|共14页
  • 作者单位

    Department of Atmospheric Sciences Nanjing University Nanjing China;

    Key Laboratory of Meteorology and Environment Nanjing Institute of Meteorology Nanjing China;

    State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Science Chinese Academy of Science Beijing China;

    Environmental Engineering Unit Department of Civil and Structural Engineering The Hong Kong Polytechnic University Hong Kong China;

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