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Diurnal variation of midlatitudinal NOsub3/sub column abundance over table mountain facility, California

机译:加州桌山设施中纬度NO 3 柱的日变化

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The column abundance of NO3 was measured over Table Mountain Facility, CA(34.4° N, 117.7° W) from May 2003 through September 2004, using lunaroccultation near full moon with a grating spectrometer. The NO3 column retrieval was performed with the differential optical absorption spectroscopy (DOAS) technique using both the 623 and 662 nm NO3 absorption bands. Other spectral features such as Fraunhofer lines and absorption from water vapor and oxygen were removed using solar spectra obtained at different airmass factors. We observed a seasonal variation, with nocturnally averaged NO3 columns between 5−7 × 1013 molec cm?2 during October through March, and 5−22 × 1013 molec cm?2 during April through September. A subset of the data, with diurnal variability vastly different from the temporal profile obtained from one-dimensional stratospheric model calculations, clearly has boundary layer contributions; this was confirmed by simultaneous long-path DOAS measurements. However, even the NO3 columns that did follow the modeled time evolution were often much larger than modeled stratospheric partial columns constrained by realistic temperatures and ozone concentrations. This discrepancy is attributed to substantial tropospheric NO3 in the free troposphere, which may have the same time dependence as stratospheric NO3.
机译:从2003年5月至2004年9月,在加利福尼亚州的Table Mountain Facility(34.4°N,117.7°W)上测量NO 3 的柱丰度,并使用光栅光谱仪在满月附近进行月桂栽培。利用差分光学吸收光谱法(DOAS),利用623和662 nm NO 3 吸收带进行NO 3 柱检索。使用在不同空气质量因子下获得的太阳光谱,可以去除其他光谱特征,例如弗劳恩霍夫谱线以及从水蒸气和氧气中的吸收。我们观察到季节变化,在十月至三月期间,夜间平均NO 3 列在5−7×10 13 molec cm ?2 之间,并且在四月到九月期间5−22×10 13 摩尔cm ?2 。数据的一个子集,其日变化率与一维平流层模型计算获得的时间剖面大不相同,显然具有边界层的贡献。同时进行的长距离DOAS测量也证实了这一点。但是,即使遵循模型时间演化的NO 3 色谱柱也通常比受实际温度和臭氧浓度约束的平流层部分色谱柱大得多。这种差异归因于自由对流层中大量的对流层NO 3 ,其时间依赖性与平流层NO 3 相同。

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