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Observation of vertical profiles of NO, O-3, and VOCs to estimate their sources and sinks by inverse modeling in a Japanese larch forest

机译:观察NO,O-3和VOC的垂直曲线,通过日本落叶松森林中的反向建模来估算它们的来源和沉降

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Trace atmospheric gases in the biosphere, such as ozone (O-3), nitrogen oxides (NOx), and biogenic volatile organic compounds (BVOCs), can affect the carbon cycle as well as the climate. Vertical profiles of nitric oxide (NO), O-3, and volatile organic compound (VOC) concentrations were measured at a Japanese larch (Larix kaempferi) forest in the foothills of Mt. Fuji in Japan over an 11-day period in July 2012. The concentrations of NO and O-3 during the day were highest above the canopy and decreased with proximity to the forest floor, but those of the VOCs had minimum and maximum points at different levels within the canopy depending on the species. Inverse multilayer models were applied to identify vertical sink and source distribution of these gases within the canopy. The model estimated that there was higher O-3 deposition and absorption at the forest floor than in the canopy layer; therefore, the understory was an important O-3 sink within the forest. A strong NO sink was simulated in the trunk space, where loss by reaction with O-3 is expected. The sinks and sources of BVOC as well as their oxidized products are simulated in the canopy layer and the forest floor. The sink and source distribution suggested that VOC transportation from the neighboring forest also affected the vertical sink and source distribution within the canopy.
机译:在生物圈中的痕量大气气体,例如臭氧(O-3),氮氧化物(NOx)和生物挥发性有机化合物(BVOCs),可以影响碳循环以及气候。在2012年7月在日本的日本富士山脚下的日本落叶松(Larix Kaempferi)森林中测量一氧化氮(NO),O-3和挥发性有机化合物(VOC)浓度的垂直曲线。 。当天的浓度和O-3期间的浓度最高,并且靠近森林地板,但VOC的那些根据物种的不同水平有最小和最大点。应用逆多层模型以识别垂直宿和在树冠内这些气体的源分布。该模型估计森林地块沉积比在遮篷层中更高的O-3沉积和吸收;因此,林下是森林内的重要O-3水槽。在行李箱空间中模拟了强的水槽,预期通过与O-3反应的损失。 BVOC的水槽和光源以及它们的氧化产品在树冠层和森林地板中模拟。水槽和源分布表明,来自邻近森林的VOC运输也影响了树冠内的垂直水槽和源分布。

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