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A high time resolution study of boundary layer ozone chemistry and dynamics over the Arctic Ocean near Alert, Nunavut

机译:努纳武特警报附近北冰洋边界层臭氧化学和动力学的高分辨率研究

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摘要

During the field campaign "Out On The Ice'' (OOTI) in the spring of 2004 at Alert, Nunavut (N82° 30', W62° 19') an event occurred where surface ozone (O-3) and reactive bromine species in the boundary layer showed dramatic changes on a timescale of minutes and a spatial scale of a few kilometers. In apparent direct response to changes in surface wind speed and direction, surface O-3 mole fractions of > 30 nmol• mol(-1) replaced stable, O-3 depleted boundary layer conditions for about 5 hours. High time resolved ( seconds to minutes) chemical and meteorological observations on the ice and on land, as well as synoptic weather maps and routine radiosonde data are used to constrain the unfolding of the event. It is hypothesized that the bromine oxide (BrO) distribution in the troposphere over the frozen ocean features a maximum in a narrow transition layer that separates the boundary layer from free tropospheric air above.
机译:2004年春季,在努纳武特州Alert的野外活动“ Out On the Ice”(OOTI)中(N82° 30',W62° 19'),发生了一次事件,其中表面臭氧(O-3)和活性溴边界层在数分钟的时间尺度和几千米的空间尺度上显示出巨大的变化,表面风速和风向的变化直接表现为表面O-3摩尔分数> 30 nmol• mol(-1)的变化稳定的O-3耗尽了约3个小时的边界层条件,解决了长时间(几秒到几分钟)的冰和陆上化学和气象观测问题,以及天气概况和常规探空仪数据,用以限制冰层的展开假设在冰冻的海洋上对流层中的溴氧化物(BrO)分布在狭窄的过渡层中具有最大值,该过渡层将边界层与上方的对流层自由空气分隔开。

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