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Observations of atmosphere-biosphere exchange of total and speciated peroxynitrates: nitrogen fluxes and biogenic sources of peroxynitrates

机译:对总和的过氧硝酸盐的气氛 - 生物圈交换的观察:氮气通量和过氧族的生物源

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Peroxynitrates are responsible for global scale transport of reactive nitrogen. Recent laboratory observations suggest that they may also play an important role in delivery of nutrients to plant canopies. We measured eddy covariance fluxes of total peroxynitrates (PNs) and three individual peroxynitrates (APNs ≡ PAN + PPN + MPAN) over a ponderosa pine forest during the Biosphere Effects on AeRosols and Photochemistry EXperiment 2009 (BEARPEX 2009). Concentrations of these species were also measured at multiple heights above and within the canopy. While the above-canopy daytime concentrations are nearly identical for PNs and APNs, we observed the downward flux of PNs to be 30–60% slower than the flux of APNs. The vertical concentration gradients of PNs and APNs vary with time of day and exhibit different temperature dependencies. These differences can be explained by the production of peroxynitrates other than PAN, PPN, and MPAN within the canopy (presumably as a consequence of biogenic VOC emissions) and upward fluxes of these PN species. The impact of this implied peroxynitrate flux on the interpretation of NOx fluxes and ecosystem N exchange is discussed.
机译:过氧宁酸酯负责反应性氮的全局尺度传输。最近的实验室观察表明,他们也可能在向植物檐篷中营养成分中发挥重要作用。在对气溶胶和光化学实验2009的生物圈影响期间,我们在Ponderosa松树林中测量了总过氧硝酸盐(PNS)的涡过氧(PNS)和三种单独过氧氮酸酯(APNS + PPN + PPN + PPN + PPN + MPAN)(Bearpex 2009)。这些物种的浓度也在上方和冠层内部的多个高度测量。虽然对PNS和APNS几乎相同,但是,我们观察到PNS的向下通量比APN的通量慢30-60%。 PNS和APN的垂直浓度梯度随时间变化,并且表现出不同的温度依赖性。这些差异可以通过在冠层内的PAN,PPN和MPAN之外的过氧硝酸盐(可能是由于生物转霉型发射的结果)和这些PN物种的向上助熔剂来解释。讨论了这种隐含过氧杂项对NOx通量和生态系统N汇款的解释的影响。

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