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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >A TEST OF THE PARTITIONING BETWEEN CLO AND CLONO2 USING SIMULTANEOUS UARS MEASUREMENTS OF CLO, NO2, AND CLONO2
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A TEST OF THE PARTITIONING BETWEEN CLO AND CLONO2 USING SIMULTANEOUS UARS MEASUREMENTS OF CLO, NO2, AND CLONO2

机译:使用同时测定CLO,NO2和CLONO2的乌拉尔数进行的CLO和CLONO2分配测试

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The photochemical theory of the partitioning between the chlorine species ClONO2 and ClO in the lower and mid stratosphere is tested for the first time using simultaneous measurements of ClO, NO2, and ClONO2. The theory suggests that over most of the day the production of ClONO2 through the three-body reaction of ClO and NO2 is balanced by the loss of ClONO2 through photolysis. Our analysis tests this theory by Utilizing simultaneous measurements of these species from instruments aboard the Upper Atmosphere Research Satellite (UARS), as well as calculations of the photolysis rate of ClONO2 and laboratory measurements of the rate constant for the reaction between ClO and NO2. Between 32 and 10 hPa (similar to 24 and 32 km), averaged instantaneous production and loss rates of ClONO2 agree within similar to 10%. At 46 hPa (similar to 2 1 km), the agreement between averaged instantaneous production and loss of ClONO2 is poorer than at higher altitudes, but still within uncertainties. This analysis provides no evidence for any problems in our understanding of the partitioning between the chlorine species ClONO2 and ClO over the range of pressures (46 to 10 hPa) and latitudes (60 degrees S to 60 degrees N) considered here. [References: 20]
机译:使用同时测量ClO,NO2和ClONO2的方法,首次测试了平流层中下部和下部的氯物种ClONO2和ClO之间分配的光化学原理。该理论表明,在一天的大部分时间里,ClO和NO2的三体反应产生的ClONO2与光解过程中失去的ClONO2平衡。我们的分析通过利用上层大气研究卫星(UARS)上的仪器对这些物种的同时测量,以及计算ClONO2的光解速率和实验室测量ClO与NO2之间的反应速率常数来测试这一理论。在32至10 hPa(类似于24至32 km)之间,ClONO2的平均瞬时产量和损失率相差约10%。在46 hPa(类似于2 1 km)时,平均瞬时产量与ClONO2损失之间的一致性差于高海拔地区,但仍处于不确定性之内。在我们对此处考虑的压力范围(46至10 hPa)和纬度(60至60华氏度)范围内的氯物种ClONO2和ClO之间的分配的理解中,该分析没有证据表明存在任何问题。 [参考:20]

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