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Measurement and analysis of black carbon aerosols over a tropical semi-arid station in Kadapa, India

机译:印度卡达帕热带半干旱站黑碳气溶胶的测量与分析

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This paper presents aerosol light absorption measurements using a seven channel Aethalometer (AE-42), recorded during September 2011-November 2012 over a tropical semi-arid site in Kadapa, India. The annual average black carbon (BC) mass concentration ([BC]) during the studied period was 2.20 +/- 0.78 mu g m(-3) which is in agreement when compared to other sites of similar environment. Strong seasonal variation was observed with high values during winter (2.87 +/- 0.81 mu g m(-3)) and low in monsoon (1.30 +/- 031 mu g m(-3)) season, which could be attributed to regional synoptic meteorology and long range transport. The two peaks in diurnal variations of [BC] were observed during morning between 06:00 and 08:00 h local time (LT) and in the evening around 19:00-21:00 h LT, with a minimum peak in the afternoon (similar to 16:00 h LT) which is strongly correlated with the boundary layer dynamics, local and regional sources, and associated meteorology. The relationships between measured [BC] and the corresponding meteorological parameters for the studied region were also analysed. The estimated monthly mean spectral absorption coefficient values range from 0.56 to 1.15 with an average of 0.90, which suggests high BC/OC ratio and possible source of emission of aerosols is fossil fuel burning. Trajectory cluster analysis showed significant impact of long range transport of BC aerosols towards the observational site during the period of study. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了使用七通道湿度计(AE-42)进行的气溶胶光吸收测量,该测量仪于2011年9月至2012年11月在印度卡达帕的热带半干旱地点记录。在研究期间,年平均黑碳(BC)质量浓度([BC])为2.20 +/- 0.78μg m(-3),与相似环境的其他站点相比,这是一致的。观测到强烈的季节变化,冬季高值(2.87 +/- 0.81μgm(-3))而季风时低(1.30 +/- 031μgm(-3)),这可能归因于区域性天气学和远程运输。 [BC]日变化的两个峰值在当地时间(LT)的早上06:00至08:00之间和LT的晚上19:00-21:00之间观察到,下午则最小。 (类似于LT 16:00 h LT),这与边界层动力学,本地和区域源以及相关的气象学密切相关。还分析了所测区域的[BC]与相应气象参数之间的关系。估计的每月平均光谱吸收系数值介于0.56至1.15之间,平均值为0.90,这表明较高的BC / OC比,并且气溶胶排放的可能来源是化石燃料燃烧。轨迹聚类分析表明,在研究期间,BC气溶胶向观察点的远距离迁移具有重大影响。 (C)2015 Elsevier B.V.保留所有权利。

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