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Investigating the impacts of anthropogenic and biogenic VOC emissions and elevated temperatures during the 2003 ozone episode in the UK

机译:在英国2003年臭氧事件期间调查人为和生物VOC排放量和温度升高的影响

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The Lagrangian tropospheric ozone model ELMO-v2 (Edinburgh Lancaster Model for Ozone) is applied to the intense 2003 ozone episode in SE England. When using model parameters representative of typical episodes, ELMO-v2 was found to underestimate ozone levels substantially during peak ozone days, but, by increasing three parameters (temperature, biogenic and anthropogenic VOC emission rates) to levels close to those observed, good agreement between modelled and observed ozone was achieved. Using attribution techniques possible with a Lagrangian model, the episode was divided into five phases with each exhibiting different geographical origins for ozone precursor emissions. Anthropogenic VOCs, primarily of European (non-UK) origin, made the biggest contribution to modelled ozone levels. European biogenic VOC emissions significantly contributed to ozone levels on some days, whereas the contribution from UK biogenic VOC emissions was comparatively small throughout. The VOC: NO_x ratio was also shown to change during the episode, with high ozone days being less VOC-sensitive. The implications of both variable NO_x/VOC sensitivity and the possibility of more frequent heatwaves due to climate change need to be taken into account in planning effective future emissions reductions to control ground-level ozone in the UK.
机译:拉格朗日对流层臭氧模型ELMO-v2(爱丁堡兰开斯特臭氧模型)被用于2003年英格兰东南部强烈的臭氧事件。当使用代表典型事件的模型参数时,发现ELMO-v2在峰值臭氧天期间大大低估了臭氧水平,但是,通过将三个参数(温度,生物和人为VOC排放速率)提高到接近观察到的水平,两者之间有很好的一致性模拟并观察到臭氧。使用拉格朗日模型可能的归因技术,将这一事件分为五个阶段,每个阶段展现出臭氧前体排放的不同地理起源。主要来自欧洲(非英国)的人为挥发性有机化合物对模拟臭氧水平做出了最大贡献。在某些日子里,欧洲生物VOC排放量对臭氧水平的影响很大,而英国生物VOC排放量的排放量相对较小。在发作期间,VOC:NO_x的比例也发生了变化,臭氧日数越高,VOC的敏感性越低。在英国计划未来有效减少排放量以控制地面臭氧时,必须考虑到可变的NO_x / VOC敏感性以及由于气候变化导致更频繁的热浪的可能性。

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