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Evaluation of the size segregation of elemental carbon (EC) emission in Europe: influence on the simulation of EC long-range transportation

机译:评价欧洲元素碳(EC)排放的大小隔离:对EC远程运输仿真的影响

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Elemental Carbon (EC) has a significant impact on human health and climate change. In order to evaluate the size segregation of EC emission in the EUCAARI inventory and investigate its influence on the simulation of EC long-range transportation in Europe, we used the fully coupled online Weather Research and Forecasting/Chemistry model (WRF-Chem) at a resolution of 2 km focusing on a region in Germany, in conjunction with a high-resolution EC emission inventory. The ground meteorology conditions, vertical structure and wind pattern were well reproduced by the model. The simulations of particle number and/or mass size distributions were evaluated with observations at the central European background site Melpitz. The fine mode particle concentration was reasonably well simulated, but the coarse mode was substantially overestimated by the model mainly due to the plume with high EC concentration in coarse mode emitted by a nearby point source. The comparisons between simulated EC and Multi-angle Absorption Photometers (MAAP) measurements at Melpitz, Leipzig-TROPOS and B?sel indicated that the coarse mode EC (ECc) emitted from the nearby point sources might be overestimated by a factor of 2–10. The fraction of ECc was overestimated in the emission inventory by about 10–30 % for Russia and 5–10 % for Eastern Europe (e.g., Poland and Belarus). This incorrect size-dependent EC emission results in a shorter atmospheric life time of EC particles and inhibits the long-range transport of EC. A case study showed that this effect caused an underestimation of 20–40 % in the EC mass concentration in Germany under eastern wind pattern.
机译:元素碳(EC)对人类健康和气候变化产生重大影响。为了评估Eucaari库存中的EC排放的大小隔离,并调查其对欧洲EC远程运输模拟的影响,我们使用了完全耦合的在线天气研究和预测/化学模型(WRF-Chem)分辨率为2公里的专注于德国的一个地区,与高分辨率EC排放库存相结合。地面气象条件,垂直结构和风图案由模型再现。通过在中欧背景部位Melpitz的观察中评估粒子数和/或质量分布的模拟。细模颗粒浓度是合理的模拟,但是粗糙模式通过模型基本上高估,主要是由于附近点源发射的粗糙模式中具有高EC浓度的羽流。 Melpitz,Leipzig-Tropos和B的模拟EC和多角度吸收光度(MAAP)测量的比较表明,从附近点源发出的粗模式EC(ECC)可能超过2-10倍。 ECC的一小部分在排放量高估约10-30%,俄罗斯和东欧的5-10%(例如,波兰和白俄罗斯)。这种不正确的大小相关的EC发射导致EC颗粒的较短大气寿命时间,并抑制EC的远程传输。案例研究表明,在东风模式下,这种效果在德国的EC质量浓度下造成了20-40%。
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