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Nitrous acid in the urban area of Rome

机译:罗马市区的亚硝酸

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Nitrous acid (HNO2) and a large variety of other components were simultaneously measured in the city centre of Rome (Italy) during the NITROCAT ground based field experiment in May/June 2001. The highest HNO2 concentrations were found under high-pressure conditions with high nocturnal atmospheric stability and high values of pollutants. After night time formation and accumulation up to 2 ppb HNO2 were observed. The measurements confirm that during the first hours after sunrise, when hydroxyl radical (OH) production rates from other sources (photolysis of ozone and formaldehyde (HCHO)) are slow, HNO2 photolysis is the most important primary OH source in the lowest part of the troposphere; up to 1-4 x 10(7) OH cm(-3) s(-1) were estimated for that time from this source. This contributes considerably to the initiation of the photochemistry for the day. The unexpected high daytime concentrations of few hundred ppt observed by DOAS as well as by the two in situ wet collection techniques (wet denuder/IC, coil sampling/HPLC) possibly influence ozone chemistry during the entire day. The heterogeneous on-surface production of HNO2 (and consequently of HNO3) provides also a new-type acidity formation influencing directly the biosphere and the materials. About 20% of the total nitrite was found on atmospheric aerosols. The HNO2 measurements agree well for the different in situ measurement techniques and the spatial integration DOAS simultaneously performed over several weeks in the real atmosphere and during reaction chamber experiments. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在2001年5月6月进行的NITROCAT地面实地试验期间,在罗马(意大利)市中心同时测量了亚硝酸(HNO2)和多种其他成分。夜间的大气稳定性和高价值的污染物。夜间形成并积累了高达2 ppb的HNO2。测量结果证实,在日出后的头几个小时内,当其他来源(臭氧和甲醛的光解(HCHO))的羟自由基(OH)生成速率缓慢时,HNO2光解是该区域最低部分中最重要的主要OH源。对流层根据该来源,当时估计高达1-4 x 10(7)OH cm(-3)s(-1)。这极大地促进了当天的光化学反应。通过DOAS以及通过两种原位湿法采集技术(湿式电子剥蚀仪/ IC,盘管采样/ HPLC)观察到的出乎意料的白天高浓度数百ppt可能会在一整天内影响臭氧化学。 HNO2(进而是HNO3)的异质表面生成也提供了一种直接影响生物圈和材料的新型酸度形成。在大气气溶胶中发现了约20%的亚硝酸盐总量。对于不同的原位测量技术,HNO2的测量非常吻合,并且在真实大气中以及在反应室实验期间,在数周内同时执行了空间积分DOAS。 (c)2006 Elsevier Ltd.保留所有权利。

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