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Atmospheric ammonia monitoring near Beijing National Stadium from July to October in 2008 by open-path TDLAS system

机译:2008年7月至10月通过开放式TDLAS系统监测北京国家体育场附近的氨气

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Gaseous ammonia is the most abundant alkaline trace gas in the atmosphere. As ammonia plays an important role in acid deposition and aerosol formation, it influences the regional air quality and atmospheric visibility. TDLAS (Tunable Diode Laser Absorption Spectroscopy)is a method to obtain the spectroscopy of single molecule absorption line in the characteristic absorption spectrum region as the characteristic of the distributed feed back (DFB) diode laser with narrow linewidth and tunability, which makes it possible to detect trace-gas qualitatively or quantificationally. The NH_3 in-situ monitoring instrument based on TDLAS and long open path technology have been developed combining with wavelength modulation and harmonic detection techniques to obtain the necessary detection sensitivity. This instrument has been used to measure atmospheric NH_3 concentration at an urban site near Beijing National Stadium from July to October in 2008, especially in the period of Beijing Olympics and Paralympics. The continuously monitoring results show that the atmospheric NH_3 concentration variation has an obvious diurnal periodicity in the urban of Beijing. First of all, the general diurnal variation rule is the concentration decreased to the minimum in the daytime, and then increased to the maximum atnight .Moreover, the NH_3 peak concentration decreased obviously at the beginning of the Beijing Olympics then it kept descending during the Paralympics. The obtained maximum of NH_3 is between 20.31μg/m~3 ~48.54μg/m~3 with the daily average concentration between 12.6μg/m~3 ~27.5μg/M~3 During these three months, Air Quality Assurance Scheme for the Olympics (AQASO) was implemented through the joint actions of Beijing Municipal Government and the five neighboring provinces/municipalities in north China. The measures such as auto restriction and plant ejection-decreasing are carried out in Beijing. In conclusion, the open-path TDLAS instrument is suitable for atmospheric trace gases detection on-line with its high resolution, high sensitivity, rapid response time without gas sampling. Also correlation studies have verified the positive effects of measures taken for improving the air quality including restricting ammonia formation.
机译:气态氨是大气中最丰富的碱性微量气体。由于氨在酸沉积和气溶胶形成中起着重要作用,因此会影响区域的空气质量和大气能见度。 TDLAS(可调谐二极管激光吸收光谱)是一种获得特征吸收光谱区域中的单分子吸收线光谱的方法,它是具有窄线宽和可调性的分布式反馈(DFB)二极管激光器的特征,这使得可以定性或定量检测痕量气体。结合波长调制和谐波检测技术,开发了基于TDLAS和长距离开放技术的NH_3原位监测仪,以获得必要的检测灵敏度。该仪器已被用于测量2008年7月至10月北京国家体育场附近市区的大气NH_3浓度,特别是在北京奥运会和残奥会期间。连续监测结果表明,北京市城区大气中NH_3浓度变化具有明显的昼夜周期性。首先,一般的昼夜变化规律是浓度在白天降低到最小值,然后在白天升高到最大值 此外,北京奥运会开始时NH_3的峰值浓度明显下降,然后在残奥会期间不断下降。所获得的NH_3最大值在20.31μg/ m〜3〜 48.54μg/ m〜3,日平均浓度在12.6μg/ m〜3〜27.5μg/ M〜3之间。在这三个月中,北京市政府采取了联合行动,实施了奥林匹克空气质量保证计划(AQASO)。以及中国北方的五个邻近省/市。在北京实行了自动限制和减少植物喷出量等措施。总而言之,这种开放式TDLAS仪器具有高分辨率,高灵敏度,无需气体采样的快速响应时间,适用于在线痕量大气中的气体检测。相关性研究也证实了为改善空气质量而采取的措施(包括限制氨的形成)的积极作用。

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