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Classification of Aerosols in an Urban Environment on the Basis of Optical Measurements

机译:基于光学测量的城市环境中气溶胶的分类

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The present study investigates various types of aerosol in the Lahore city of Pakistan using Aerosol Robotic Network (AERONET) data over a six year period from 2007 to 2012. Aerosol optical depths (AODs) observed was in the range 0.2–1.12. An analysis of seasonal variations in AOD has indicated that the highest AOD values occurred in summer and the lowest in winter. The urban aerosols of the study area were classified on the basis of optical parameters such as AOD, Extinction Angstrom Exponent (EAE), Absorption Angstrom Exponent (AAE), Single Scattering Albedo (SSA), Asymmetry Parameter (ASY) and Refractive Index (RI). The AAE values were in the range from 0.25 to 3.2. Real Refractive Index (RRI) and Imaginary part of the Refractive Index (IRI) values were in the range from 1.5 to 1.6 and 0 to 0.005 respectively. The major contributions to the atmospheric aerosols over Lahore were from urban industrial emissions, fossil fuel burning and road/soil dust. Higher RRI values reflected larger re-suspended road dust particles and long-range transported particles, while lower values reflected increased anthropogenic absorbing carbonaceous aerosols over the area. The AERONET retrieved SSA (0.80–0.89) and ASY (0.70–0.83) values suggested a predominance of urban industrial, vehicular and dust aerosols over Lahore. The Derivative of Angstrom Exponent (DAE) was derived at a wavelength of 500 nm and was found to indicate a predominance of fine aerosols across all seasons, particularly during summer and autumn seasons. Back-trajectory analyses using the Hybrid Single Particle Lagrangian Integrated Trajectory (HYSPLIT) model revealed that the major air masses over Lahore originated from India, Iran and Afghanistan.
机译:本研究使用气溶胶机器人网络(AERONET)数据从2007年至2012年调查了巴基斯坦拉合尔市的各种类型的气溶胶。观测到的气溶胶光学深度(AOD)范围为0.2-1.12。对AOD季节性变化的分析表明,AOD最高值发生在夏季,而冬季则最低。根据光学参数对研究区域的城市气溶胶进行了分类,例如AOD,消光埃斯特指数(EAE),吸收埃斯特指数(AAE),单散射反照率(SSA),非对称参数(ASY)和折射率(RI) )。 AAE值在0.25到3.2的范围内。实际折射率(RRI)和虚部折射率(IRI)值分别在1.5到1.6和0到0.005的范围内。拉合尔上空的大气气溶胶的主要贡献来自城市工业排放物,化石燃料燃烧和道路/土壤尘埃。较高的RRI值反映了较大的重悬道路尘埃颗粒和远距离运输的颗粒,而较低的RRI值反映了该地区人为吸收的碳质气溶胶的吸收增加。 AERONET检索到的SSA(0.80–0.89)和ASY(0.70–0.83)值表明,拉合尔地区的城市工业,车辆和粉尘气溶胶占主导地位。埃数导数(DAE)的导数是在500 nm的波长处得出的,并且被发现表明在所有季节,特别是在夏季和秋季,细小气溶胶占主导地位。使用混合单粒子拉格朗日综合轨迹(HYSPLIT)模型进行的后向轨迹分析显示,拉合尔上空的主要空气质量来自印度,伊朗和阿富汗。

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