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《Journal of Fudan University(Natural Science)》 2015-04
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Aerosol Optical Properties Derived from Ground-based Measurement during a Haze Pollution Episode in Nanning

SHI Chanzhen;MO Zhaoyu;CHEN Zhiming;LIU Huilin;WANG Shanshan;ZHOU Bin;Department of Environmental Science and Engineering of Fudan University;Scientific Research Academy of Guangxi Environmental Protection;Shanghai Institute of Measurement and Testing Technology;School of Environment and Architecture,University of Shanghai for Science and Technology;  
Based on sun-photometer and micro-pulse lidar(MPL),aerosol optical properties were studied during a haze pollution episode over Nanning in October,2014.Aerosol optical depth(AOD)was found to increase(1.23±0.19 at 440nm)significantly during the episode,which was 2.2and 1.3times as high as clean(0.57±0.14)and developing(0.98±0.25)period,respectively.ngstrm exponent was inversed to increase along with AOD during haze,which demonstrated the ascending optical extinction contribution from fine aerosol.It was revealed that size distribution show bimodal pattern. The higher volume concentration of haze condition(23μm3/μm2)than clean and developing period outlined the domination of fine mode during pollution.From MPL,the planet boundary layer height was measured to be 430±105m,375±97mand 710±245m.The corresponding near surface extinction ratio was inversed as 0.14km-1,0.27km-1 and 0.05km-1.During the severe haze pollution episode,the extreme optical extinction ratio(0.36km-1)was found at midnight near surface,which should be a result of unfavorable dispersion condition and particle accumulation.In clean day,the maximum extinction ratio was shown after noon at middle PBL,which may be related with mixing effect and secondary aerosol formation.
【Fund】: 国家自然科学基金(21477021 21277029 40975076 41405117);; 广西壮族自治区环境保护厅科研项目
【CateGory Index】: X513
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