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The role of precursor emissions on ground level ozone concentration during summer season in Poland

机译:波兰夏季夏季前体排放物对地面臭氧浓度的作用

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摘要

Three online coupled chemical transport model simulations were analyzed for three summer months of 2015 in Poland. One of them was run with default emission inventory, the other two with NOx and VOC emissions reduced by 30%, respectively. Obtained ozone concentrations were evaluated with data from air quality measurement stations and ozone sensitivity to precursor emissions was estimated by ozone concentration differences between simulations and with the use of indicator ratios. They were calculated based on modeled mixing ratios of ozone, total reactive nitrogen and its components, nitric acid and hydrogen peroxide. The results show that the model overestimates ozone concentrations with the largest errors in the morning and evening, which is primarily related to the way vertical mixing is resolved by the model. Better model performance for ozone is achieved in rural than urban environment, as PBL and mixing mechanisms play more significant role in urban areas. Modeled ozone shows mixed sensitivity to precursor concentrations, similarly to other European regions, but indicator ratios have different values than are found in literature, particularly H2O2/HNO3 is larger than in southern Europe. However, indicator ratios often differ between locations and transition values need to be established individually for a given region.
机译:在2015年的三个夏季,对波兰的三个在线耦合化学传输模型模拟进行了分析。其中一个运行时具有默认排放清单,另外两个运行时NOx和VOC排放量分别减少了30%。使用来自空气质量测量站的数据评估获得的臭氧浓度,并通过模拟之间的臭氧浓度差异和使用指标比率来估算臭氧对前体排放的敏感性。它们是根据模拟的臭氧,总活性氮及其组分,硝酸和过氧化氢的混合比计算得出的。结果表明,该模型高估了臭氧浓度,其早晨和晚上的误差最大,这主要与模型解决垂直混合的方式有关。由于PBL和混合机制在城市地区扮演着更重要的角色,因此农村地区的臭氧模型性能要优于城市环境。与其他欧洲地区类似,模拟的臭氧显示出对前驱物浓度的混合敏感性,但指示剂比值与文献中发现的值不同,特别是H2O2 / HNO3大于南欧。但是,指标比率在位置之间通常会有所不同,并且需要针对给定区域分别确定过渡值。

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