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印度热带半干旱地区阿南塔布尔一个近地面站点气溶胶的粒径分级质量浓度和粒径分布:远距离传输的影响

Size segregated mass concentration and size distribution of near surface aerosols over a tropical Indian semi-arid station, Anantapur: Impact of long range transport.

作者信息

Raghavendra Kumar K, Narasimhulu K, Balakrishnaiah G, Suresh Kumar Reddy B, Rama Gopal K, Reddy R R, Moorthy K Krishna, Suresh Babu S

机构信息

Aerosol & Atmospheric Research Laboratory, Department of Physics, Sri Krishnadevaraya University, Anantapur - 515 055, India.

出版信息

Sci Total Environ. 2009 Oct 15;407(21):5589-604. doi: 10.1016/j.scitotenv.2009.06.039. Epub 2009 Jul 29.

DOI:10.1016/j.scitotenv.2009.06.039
PMID:19640569
Abstract

Regular measurements of size segregated as well as total mass concentration and size distribution of near surface composite aerosols, made using a ten-channel Quartz Crystal Microbalance (QCM) cascade impactor during the period of September 2007-May 2008 are used to study the aerosol characteristics in association with the synoptic meteorology. The total mass concentration varied from 59.70+/-1.48 to 41.40+/-1.72 microg m(-3), out of which accumulation mode dominated by approximately 50%. On a synoptic scale, aerosol mass concentration in the accumulation (submicron) mode gradually increased from an average low value of approximately 26.92+/-1.53 microg m(-3) during the post monsoon season (September-November) to approximately 34.95+/-1.32 microg m(-3) during winter (December-February) and reaching a peak value of approximately 43.56+/-1.42 microg m(-3) during the summer season (March-May). On the contrary, mass concentration of aerosols in the coarse (supermicron) mode increased from approximately 9.23+/-1.25 microg m(-3)during post monsoon season to reach a comparatively high value of approximately 25.89+/-1.95 microg m(-3) during dry winter months and a low value of approximately 8.07+/-0.76 microg m(-3) during the summer season. Effective radius, a parameter important in determining optical (scattering) properties of aerosol size distribution, varied between 0.104+/-0.08 microm and 0.167+/-0.06 microm with a mean value of 0.143+/-0.01 microm. The fine mode is highly reduced during the post monsoon period and the large and coarse modes continue to remain high (replenished) so that their relative dominance increases. It can be seen that among the two parameters measured, correlation of total mass concentration with air temperature is positive (R(2)=0.82) compared with relative humidity (RH) (R(2)=0.75).

摘要

2007年9月至2008年5月期间,使用十通道石英晶体微天平(QCM)级联撞击器对近地表复合气溶胶按粒径分类的质量浓度、总质量浓度及粒径分布进行定期测量,以研究气溶胶特征与天气气象的关系。总质量浓度在59.70±1.48至41.40±1.72微克/立方米之间变化,其中积聚模态占主导,约为50%。在天气尺度上,积聚(亚微米)模态的气溶胶质量浓度从季风后季节(9月至11月)的平均低值约26.92±1.53微克/立方米逐渐增加到冬季(12月至2月)的约34.95±1.32微克/立方米,并在夏季(3月至5月)达到峰值约43.56±1.42微克/立方米。相反,粗(超微米)模态的气溶胶质量浓度从季风后季节的约9.23±1.25微克/立方米增加到干燥冬季月份的相对较高值约25.89±1.95微克/立方米,并在夏季降至约8.07±0.76微克/立方米的低值。有效半径是决定气溶胶粒径分布光学(散射)特性的一个重要参数,在0.104±0.08微米至0.167±0.06微米之间变化,平均值为0.143±0.01微米。在季风后时期,细模态大幅减少,而大模态和粗模态持续保持较高(补充)水平,因此它们的相对占比增加。可以看出,在所测量的两个参数中,总质量浓度与气温的相关性为正(R² = 0.82),而与相对湿度(RH)的相关性为(R² = 0.75)。

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