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Sensitivity Analysis of Ozone Formation and Transport for a Central California Air Pollution Episode

机译:加利福尼亚中部空气污染事件中臭氧形成和运输的敏感性分析

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We developed a first- and second-order sensitivity analysis approach with the decoupled direct method to examine spatial and temporal variations of ozone-limiting reagents and the importance of local vs upwind emission sources in the San Joaquin Valley of central California for a 5 day ozone episode (Jul 29th to Aug 3rd, 2000). Despite considerable spatial variations, nitrogen oxides (NO_x) emission reductions are overall more effective than volatile organic compound (VOC) control for attaining the 8 h ozone standard in this region for this episode, in contrast to the VOC control that works better for attaining the prior 1 h ozone standard. Interbasin source contributions of NO_x emissions are limited to the northern part of the SJV, while anthropogenic VOC (AVOC) emissions, especially those emitted at night, influence ozone formation in the SJV further downwind. Among model input parameters studied here, uncertainties in emissions of NO_x and AVOC, and the rate coefficient of the OH + NO_2 termination reaction, have the greatest effect on first-order ozone responses to changes in NO_x emissions. Uncertainties in biogenic VOC emissions only have a modest effect because they are generally not collocated with anthropogenic sources in this region.
机译:我们使用解耦直接方法开发了一阶和二阶灵敏度分析方法,以检查限氧剂在时空上的变化以及在加利福尼亚中部圣华金河谷中进行为期5天臭氧处理的本地和逆风排放源的重要性集(2000年7月29日至8月3日)。尽管存在很大的空间差异,但相比于挥发性有机化合物(VOC)控制效果更佳,该方法在此区域的氮氧化物(NO_x)排放总体上要比该区域的挥发性有机化合物(VOC)控制更有效,以达到该区域的8小时臭氧标准。之前的1小时臭氧标准。 NO_x排放的流域间源贡献仅限于SJV的北部,而人为的VOC(AVOC)排放,尤其是夜间排放的排放,会影响SJV进一步顺风的臭氧形成。在本文研究的模型输入参数中,NO_x和AVOC排放的不确定性以及OH + NO_2终止反应的速率系数对一阶臭氧对NO_x排放变化的响应影响最大。生物VOC排放的不确定性只会产生适度的影响,因为在该地区,它们通常不会与人为来源并存。

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