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Source contributions to black carbon mass fractions in aerosol particles over the northwestern Pacific

机译:源对西北太平洋气溶胶颗粒中黑碳质量分数的贡献

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Aerosol particle number size distributions above 0.3 μm in diameter and black carbon mass concentrations in aerosols were observed on Chichi-jima of the Ogasawara Islands in the northwestern Pacific from January 2000 to December 2002. Chichi-jima is suitable to observe polluted air masses from East Asia in winter and clean air masses over the western North Pacific in summer. In winter, aerosols over Chichi-jima were strongly affected by anthropogenic emissions in East Asia. The form of energy consumption in East Asia varies in various regions. Hence, each source region is expected to be characterized by an individual black carbon mass fraction. A three-dimensional Eulerian transport model was used to estimate contribution rates to air pollutants from each source region in East Asia. Because the Miyake-jima eruption began at the end of June 2000, the influence of smokes from Miyake-jima was also considered in the model calculation. The results of model calculations represent what must be noticed about smokes from volcanoes including Miyake-jima to interpret temporal variations of sulfur compounds over the northwestern Pacific. To evaluate black carbon mass fractions in anthropogenic aerosols as a function of source region, the relationships between the volume concentration of aerosol particles and the black carbon mass concentration in the winter were classified under each source region in East Asia. Consequently, the black carbon mass fractions in aerosols from China, Japan and the Korean Peninsula, and other regions were estimated to be 9-13%, 5-7%, and 4-5%, respectively.
机译:2000年1月至2002年12月,在西北太平洋的小ara原群岛的秩父岛上观测到直径大于0.3μm的气溶胶粒径分布和黑碳质量浓度。奇奇岛很适合观察东部的污染空气冬季为亚洲,夏季为北太平洋西部的干净空气。冬季,东亚的人为排放严重影响了Chichi-jima上空的气溶胶。东亚的能源消耗形式在各个地区各不相同。因此,期望每个源区域都由单独的黑碳质量分数表征。使用三维欧拉运输模型来估计东亚每个污染源对空气污染物的贡献率。由于三宅岛喷发始于2000年6月,因此在模型计算中还考虑了三宅岛烟雾的影响。模型计算的结果代表了包括三宅岛在内的火山烟雾所引起的注意,以解释西北太平洋地区含硫化合物的时间变化。为了评估人为源气溶胶中黑碳质量分数随源区的变化,在东亚每个源区下,对气溶胶颗粒的体积浓度与冬季黑碳质量浓度之间的关系进行了分类。因此,来自中国,日本和朝鲜半岛以及其他地区的气溶胶中的黑碳质量分数估计分别为9-13%,5-7%和4-5%。

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