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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Influence of mountain venting in the Alps on the ozone chemistry of the lower free troposphere and the European pollution export
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Influence of mountain venting in the Alps on the ozone chemistry of the lower free troposphere and the European pollution export

机译:在阿尔卑斯山山通风的影响臭氧的化学自由对流层和低欧洲污染出口

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The influence of mountain venting over the Alps on ozone (O3) mixing ratios in the lower free troposphere (FT) and on export of European emissions was investigated with a Lagrangian chemical box-model system. During summertime fair-weather conditions mountain venting is an efficient tropospheric lifting mechanism that carries atmospheric boundary layer (ABL) pollutants to the FT. Little is known about the effect of mountain venting on net O3 production in the FT. Chemistry in a FT and an ABL air parcel was initialized with typical European summertime background FT and Alpine ABL mixing ratios, respectively, which were derived from measurements. A parameterization was developed based on previous quantification of mountain venting in the Swiss Alps, describing the injection of air from the ABL into the FT. For simulations at constant altitude (3500 m above mean sea level (MSL)), net O3 production was generally positive for day 0 of the simulation, when mountain venting occurred. Whether O3 was produced or destroyed from day 1 onward critically depended on initial nitrogen oxides (NOx) plus peroxy acetyl nitrates (PANs) mixing ratios in the ABL, and to a smaller extent on initial H2O and O3 mixing ratios, photolysis rates, and PANs chemistry. For a simulation period of 8 days O3 mixing ratios remained higher in the simulations with venting than in simulations for the FT background without venting. Simulations on cluster average forward trajectories initialized over the Alps showed that European emissions vented in the Alps have a strong influence on the Mediterranean region. O3 production on these trajectories was enhanced by the release of NOx from PANs that acted as a reservoir species while the air parcel was descending over the Mediterranean. The O3 production efficiency with regard to NOx was about 20 molecules O3 produced per molecule NOx consumed at 3500 m MSL on day 0 of the venting simulation. On the southward moving trajectories O3 production efficiency was in the range of 6–11 until day 3 of the simulation when all injected NOy was consumed.
机译:山发泄在阿尔卑斯山上的影响臭氧(O3)混合比率较低的自由对流层(英尺)和欧洲的出口用拉格朗日排放进行了研究化学框模型系统。不少山发泄是一个条件高效的对流层提升机制有大气边界层(ABL)污染物向英国《金融时报》,知之甚微山发泄对净O3的影响生产在英国《金融时报》。英国《金融时报》和ABL空气中化学包裹是初始化与典型的欧洲人夏季背景英尺和高山ABL混合比率分别来自测量。基于以前的量化发泄在瑞士阿尔卑斯山脉,描述注入的空气ABL为。英国《金融时报》表示模拟恒定海拔(3500米以上平均海平面(结构),净O3生产一般积极为0天的模拟,当山发泄。从第一天开始生产或销毁严重依赖于初始氮氧化物过氧化(NOx) +乙酰二硝酸盐(锅)混合ABL比率,和一个较小的程度上初始水和O3混合比率,光解率、化学和锅。段8天O3混合比例仍然较高模拟与发泄的模拟对英国《金融时报》的背景发泄。轨迹在阿尔卑斯山显示初始化欧洲排放排放在阿尔卑斯山强大的影响力在地中海地区。提高了生产这些轨迹释放NOx的锅了储层的物种而空气包裹在地中海下行。生产效率对氮氧化物每个分子大约20 O3分子产生氮氧化物消耗在火星科学实验室3500 0天的发泄模拟。O3生产效率在6尺11寸的范围直到第三天的模拟当所有注射纳被消耗。

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