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Tropospheric HONO distribution and chemistry in the southeastern US

机译:东南部的拓扑荣誉分布与化学

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Here we report the measurement results of nitrous acid (HONO) and a suite of relevant parameters on the NCAR C-130 research aircraft in the southeastern US during the NOMADSS 2013 summer field study. The daytime HONO concentration ranged from low parts per trillion by volume (pptv) in the free troposphere (FT) to mostly within 5–15pptv in the background planetary boundary layer (PBL). There was no discernible vertical HONO gradient above the lower flight altitude of 300m in the PBL, and the transport of ground surface HONO was not found to be a significant contributor to the tropospheric HONO budget. The total in situ HONO source mean (±1SD) was calculated as 53 (±21)pptvh?1 during the day. The upper-limit contribution from NOx-related reactions was 10 (±5)pptvh?1, and the contribution from photolysis of particulate nitrate (pNO3) was 38 (±23)pptvh?1, based on the measured pNO3 concentrations and the median pNO3 photolysis rate constant of 2.0×10?4s?1 determined in the laboratory using ambient aerosol samples. The photolysis of HONO contributed to less than 10% of the primary OH source. However, a recycling NOx source via pNO3 photolysis was equivalent to ~2.3×10?6molm?2h?1 in the air column within the PBL, a considerable supplementary NOx source in the low-NOx background area. Up to several tens of parts per trillion by volume of HONO were observed in power plant and urban plumes during the day, mostly produced in situ from precursors including NOx and pNO3. Finally, there was no observable accumulation of HONO in the nocturnal residual layer and the nocturnal FT in the background southeastern US, with an increase in the HONO∕NOx ratio of ≤3×10?4h?1 after sunset.
机译:在这里,我们报告了亚硝酸(Hono)的测量结果以及在美国东南部的Nocadss 2013年夏季田野研究中的NCAR C-130研究飞机上的相关参数套件。白天霍诺浓度从自由对流层(FT)中量(PPTV)的低位,大部分在后台行星边界层(PBL)中的5-15PPTV范围内。在PBL中,没有可辨别的垂直霍诺梯度,在PBL中300米的较低飞行高度,并且没有发现地面Hono的运输是对流汉荣誉预算的重要贡献者。在当天计算出原位Hono源等意思(±1SD)的总量(±21)pptvh?1。从NOx相关反应的上限贡献为10(±5)pptvH?1,并且基于测量的PNO 3浓度和中位数,从颗粒状硝酸酯(PNO3)的光解的贡献为38(±23)pptvh?1 PNO3光解速度常数为2.0×10?4S?1在实验室中使用环境气溶胶样品确定。 Hono的光解有助于少于初级OH源的10%。然而,通过PNO3光解的再循环NOx源相当于PBL内的空气柱中的〜2.3×10?6mol?1,在低NOx背景区域中具有相当大的补充NOx源。在当天的发电厂和城市羽毛中观察到每亿数量的隆诺数量高达几十多万分之一的仓库,主要从包括NOx和PNO3的前体原位生产。最后,在夜间剩余层和背景中的夜行余地中没有可观察到的隆起积累,隆起/ NOx比率≤3×10?4h?1在夕阳之后的增加。
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