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Photolysis frequency measurements using actinic flux spectroradiometry during the PEM-Tropics mission: Instrumentation description and some results

机译:在PEM-Tropics任务期间使用光化通量光谱法进行光解频率测量:仪器说明和一些结果

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The in situ photolysis frequencies for 11 molecules were determined using new actinic flux spectroradiometer systems mounted on the NASA DC-8 research aircraft during the Pacific Exploratory Mission (PEM)-Tropics mission. Photolysis frequencies for O_3, NO_2, HONO, CH_2O, H_2O_2, CH_3OOH, HNO_3, PAN, CH_3NO_3, CH_3CH_2NO_3, and acetone were calculated from the 30 s averaged actinic flux measurements. The accuracy of the actinic flux measurements was approximately +- 11.5% in the UV-B range and 8% in the UV-A range. Uncertainties of the reported photolysis frequencies vary between +- 15% and +-20% dependent on the quality of the molecular absorption cross section and quantum yield data. Approximately 139 hours of data were taken during 17 flights over the Pacific Ocean, and photolysis frequencies have been reported to the mission archive. During the mission, latitudes range from 45 deg N to 72.5 deg S, the longitude ranges from 10 deg W to 173 deg E, and the altitude ranges from sea level to 11.9 km. The geographical extents covered, combined with local times from sunrise to sunset, encompass solar zenith angles between 1 deg and > 90 deg resulting in a broad range of photolysis frequencies. Persistent scattered clouds created photolysis frequency enhancements of approximately a factor of 2 over clear-sky values and reductions of greater than 90% of clear-sky values for portions of the mission.
机译:在太平洋探索任务(PEM)-热带任务期间,使用安装在NASA DC-8研究飞机上的新型光化通量光谱仪系统确定了11个分子的原位光解频率。从30 s平均光化通量测量值计算出O_3,NO_2,HONO,CH_2O,H_2O_2,CH_3OOH,HNO_3,PAN,CH_3NO_3,CH_3CH_2NO_3和丙酮的光解频率。在UV-B范围内,光化通量的测量精度约为±-11.5%,在UV-A范围内约为8%。取决于分子吸收截面的质量和量子产率数据,所报道的光解频率的不确定性在+ -15%和+ -20%之间变化。在太平洋上空进行的17次飞行中,大约获取了139小时的数据,并且光解频率已报告给任务档案馆。在执行任务期间,纬度范围是北纬45度到72.5度,经度是西经10度到东经173度,海拔范围是海平面到11.9公里。所涵盖的地理范围与从日出到日落的当地时间相结合,涵盖了1度至> 90度之间的太阳天顶角,从而产生了广泛的光解频率。持久的散布的云使光解频率比晴空值提高了约2倍,而对于任务的某些部分,其光解频率降低了90%以上。

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