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Aircraft emission mitigation by changing route altitude: A multi-model estimate of aircraft NOx emission impact on O3 photochemistry

机译:通过改变航线高度来缓解飞机排放:飞机NOx排放对O3光化学影响的多模型估算

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摘要

The atmospheric impact of aircraft NOx emissions are studied using updated aircraft inventories for the year 2006, in order to estimate the photochemistry-related mitigation potential of shifting cruise altitudes higher or lower by 2000 ft. Applying three chemistry-transport models (CTM) and two climate-chemistry models (CCM) in CTM mode, all including detailed tropospheric and stratospheric chemistry, we estimate the short-lived radiative forcing (RF) from O3 to range between 16.4 and 23.5 mW m−2, with a mean value of 19.5 mW m−2. Including the long-lived RF caused by changes in CH4, the total NOx-related RF is estimated to about 5 mW m−2, ranging 1–8 mW m−2. Cruising at 2000 ft higher altitude increases the total RF due to aircraft NOx emissions by 2 ± 1 mW m−2, while cruising at 2000 ft lower altitude reduces RF by 2 ± 1 mW m−2. This change is mainly controlled by short-lived O3 and show that chemical NOx impact of contrail avoiding measures is likely small.
机译:使用2006年更新的飞机清单研究了飞机NOx排放对大气的影响,以便估算将巡航高度上下浮动2000英尺而产生的光化学相关缓解潜力。应用了三种化学运输模型(CTM)和两种CTM模式下的气候化学模型(CCM),包括详细的对流层和平流层化学,我们估计O3的短时辐射强迫(RF)介于16.4和23.5 mW m-2之间,平均值为19.5 mW m-2。包括由CH4的变化引起的长寿命RF,与NOx相关的总RF估计约为5 mW m-2,范围为1-8 mW m-2。在2000英尺高空巡航时,由于飞机的NOx排放,总RF会增加2±1 mW m-2,而在2000英尺低空巡航会降低RF 2±1 mW m-2。这种变化主要受短命O3的控制,表明避免使用Contrail措施对化学NOx的影响可能很小。

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