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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Wintertime Overnight NOx Removal in a Southeastern United States Coal-fired Power Plant Plume: A Model for Understanding Winter NOx Processing and its Implications
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Wintertime Overnight NOx Removal in a Southeastern United States Coal-fired Power Plant Plume: A Model for Understanding Winter NOx Processing and its Implications

机译:冬季夜间氮氧化物去除东南部美国燃煤电厂羽:冬季氮氧化物处理和模型来理解它的含义

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摘要

Nitric oxide (NO) is emitted in large quantities from coal-burning power plants. During the day, the plumes from these sources are efficiently mixed into the boundary layer, while at night, they may remain concentrated due to limited vertical mixing during which they undergo horizontal fanning. At night, the degree to which NO is converted to HNO_3 and therefore unable to participate in next-day ozone (O_3) formation depends on the mixing rate of the plume, the composition of power plant emissions, and the composition of the background atmosphere. In this study, we use observed plume intercepts from the Wintertime INvestigation of Transport, Emissions and Reactivity campaign to test sensitivity of overnight NO_x removal to the N_2O_5 loss rate constant, plume mixing rate, background O_3, and background levels of volatile organic compounds using a 2-D box model of power plant plume transport and chemistry. The factor that exerted the greatest control over NO_x removal was the loss rate constant of N_2O_5. At the lowest observed N_2O_5 loss rate constant, no other combination of conditions converts more than 10 of the initial NO_x to HNO_3. The other factors did not influence NO_x removal to the same degree.
机译:一氧化氮(NO)在大量排放从燃煤发电厂。这些来源的羽毛是有效的混合到边界层,在晚上,他们可能仍然集中于有限在他们进行的垂直混合水平范宁。没有转化为HNO_3,因此无法参与第二天的臭氧(O_3)的形成取决于羽流的混合率发电厂排放的成分,和背景大气的成分。研究中,我们使用观察羽截获的冬季调查的交通工具,排放测试的敏感性和反应性活动隔夜NO_x去除N_2O_5损失率常数,羽流混合率,背景O_3和背景水平的挥发性有机化合物使用二维盒子电厂烟羽模型运输和化学。最伟大的控制NO_x删除了N_2O_5损失速率常数。观察N_2O_5损失速率常数,没有其他组合的条件将超过10%最初的NO_x HNO_3。不影响NO_x删除相同的学位。

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