长江流域资源与环境 >> 2018, Vol. 27 >> Issue (06): 1361-.doi: 10.11870/cjlyzyyhj201806020

• 生态环境 • 上一篇    下一篇

不同海拔高度气溶胶粒子吸湿特征的观测研究——以黄山为例

吴奕霄1,邱阳阳2*,郭   俊1,王珂清1,王   佳1,周学东1   

  1. (1. 江苏省气候中心,江苏 南京 210008;2. 安徽省气象灾害防御技术中心,安徽 合肥230061)
  • 出版日期:2018-06-20

An Observational Study on the Hygroscopic Properties of Aerosol Particles at Different Altitudes#br# ——A Case Study in the Mt. Huangshan

WU Yi-xiao1, QIU Yang-yang2,GUO Jun1,WANG Ke-qing1,WANG Jia1,ZHOU Xue-dong1   

  1. (1.Jiangsu Climate Center, Nanjing 210008,China; 2. Anhui Meteorological Disaster Prevention Center, Hefei 230061, China)
  • Online:2018-06-20

摘要: 利用加湿串联差分迁移分析仪H-TDMA,观测研究了2012年9~10月黄山不同高度40~200 nm大气气溶胶粒子的吸湿增长因子GF(Growth Factor)。结果表明:当粒子到达潮解点之后,颗粒物的GF多为双峰分布,分为GF<1.15的弱吸湿组和GF>1.15的强吸湿组;相同粒径下,强吸湿组离散程度大于弱吸湿组。相对湿度的变化对粒子吸湿增长的影响与粒子大小及化学组分有关,爱根核模态和积聚模态粒子在相同的相对湿度下潮解点不同,硝酸铵和硫酸铵是颗粒物中主要的吸湿成分。气溶胶粒子的吸湿性有明显的日变化。黄山地区环境相对较清洁,实验设置的相对湿度85%较其他地方低,也是气溶胶粒子整体吸湿性小于城市地区的原因之一。对比不同海拔高度下气溶胶粒子的吸湿性,发现随海拔高度的增加,气溶胶的吸湿性减弱。
关键词: 气溶胶粒子;吸湿增长;H-TDMA;黄山

Abstract: In this study, the hygroscopicity of submicron particles was studied from September to October in Mt. Huangshan. A Humidity Tandem Differential Mobility Analyser (H-TDMA) instrument was applied to measure the hygroscopic growth factor (GF) at different altitudes for particles with dry diameter between 40-200 nm. The statistical results show that, the GFs of the aerosol show a distinct bimodal distribution, and classified into less-hygroscopic (LH) group (GF<1.15)and more-hygroscopic (MH) group(GF>1.15). The spread of GF-PDF (σ) are higher in more-hygroscopic group than in less-hygroscopic group with the same size. The change of relative humidity has an effect on particle hygroscopic growth which is associated with particle size and chemical compositions. Aitken nuclei and condensation nuclei have different deliquescence point under the same relative humidity. The main moisture absorption components are ammonium nitrate and ammonium sulfate. Mt. Huangshan is clean and pollution emission source is unitary. the experiment set relative humidity is 85% which is lower than in other places. So the hygroscopicity is less than in the city area. By comparing the hygroscopic growth factor of aerosol particles under the different altitudes, it is found that with increasing altitude, hygroscopicity of particulate matter is reduced.
Key words:aerosol particles; hygroscopic growth; H-TDMA; Mt. Huangshan

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