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首页> 外文期刊>Atmospheric environment >Nitric Oxide In The Boundary-layer At South Pole During The Antarctic Tropospheric Chemistry Investigation (antci)
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Nitric Oxide In The Boundary-layer At South Pole During The Antarctic Tropospheric Chemistry Investigation (antci)

机译:南极对流层化学研究中南极边界层中的一氧化氮(antci)

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摘要

The vertical distribution of nitric oxide (NO) was investigated by profiling from a tethered balloon platform during the 2003 Antarctic Tropospheric Chemistry Investigation (ANTCI) at South Pole (SP), Antarctica. The lower atmosphere was probed between the surface and 120 m height by pulling air from an inlet attached to the balloon through a thin-wall, 135 m-long Teflon sampling line and by analyzing NO in this airflow with a ground-borne monitor. Losses and conversion of NO during the 2-4-min residence time in the sampling line were on average on the order of 6-16%, providing a feasible approach for the measurement of vertical NO profiles under SP conditions. NO was found to be highly variable within the lowest 100 m of the atmosphere. Greatly enhanced NO mixing ratios were constrained to a shallow (20-50 m height) air layer nearest to the surface, above which NO rapidly dropped to its mixed boundary layer background levels. Concurrent measurements of ozone and meteorological conditions provide insight into linkages between the ongoing snowpack and boundary layer nitrogen oxides (NO_x = NO + NO_2) and ozone chemistry. Since [OH] and [HO_2] are non-linearly coupled to absolute levels of NO_x, their concentrations and the rate of ozone production are expected to similarly show appreciable changes on small vertical scales during conditions with enhanced [NO _x].
机译:一氧化氮(NO)的垂直分布是通过2003年在南极南极(SP)的南极对流层化学调查(ANTCI)期间从系留的气球平台分析得出的。通过从与球囊相连的进气口通过一条135 m长的薄壁Teflon采样管抽出空气,并使用地面监测仪分析该气流中的NO,从而在表面和120 m高之间探测到较低的大气层。在采样管线中的2-4分钟停留时间内,NO的损失和转化率平均约为6-16%,这为在SP条件下测量垂直NO分布提供了一种可行的方法。发现在最低的100 m大气中NO的变化很大。大大提高的NO混合比被限制在最靠近表面的浅层(20-50 m高度)的空气层中,在此之上,NO迅速下降至其混合边界层背景水平。同时进行的臭氧和气象条件测量提供了对正在进行的积雪和边界层氮氧化物(NO_x = NO + NO_2)与臭氧化学之间联系的深入了解。由于[OH]和[HO_2]与NO_x的绝对水平非线性耦合,因此在[NO _x]增强的条件下,它们的浓度和臭氧产生速率有望在较小的垂直尺度上显示出可观的变化。

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