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城市站点黑碳气溶胶的特征及源解析

Characteristics and source apportionment of black carbon aerosols over an urban site.

作者信息

Rajesh T A, Ramachandran S

机构信息

Space and Atmospheric Sciences Division, Physical Research Laboratory, Navrangpura, Ahmedabad, -380009, India.

Department of Physics, Sardar Patel University, Vallabh Vidyanagar, Anand, -388120, India.

出版信息

Environ Sci Pollut Res Int. 2017 Mar;24(9):8411-8424. doi: 10.1007/s11356-017-8453-3. Epub 2017 Feb 10.

Abstract

Aethalometer based source apportionment model using the measured aerosol absorption coefficients at different wavelengths is used to apportion the contribution of fossil fuel and wood burning sources to the total black carbon (BC) mass concentration. Temporal and seasonal variabilities in BC mass concentrations, equivalent BC from fossil fuel (BC ), and wood burning (BC ) are investigated over an urban location in western India during January 2014 to December 2015. BC, BC , and BC mass concentrations exhibit strong diurnal variation and are mainly influenced by atmospheric dynamics. BC was higher by a factor of 2-4 than BC and contributes maximum to BC mass throughout the day, confirming consistent anthropogenic activities. Diurnal contribution of BC and BC exhibits opposite variation due to differences in emission sources over Ahmedabad. Night time BC values are about a factor of 1.4 higher than day time BC values. The annual mean percentage contributions of day time and night time are 42 and 58 %, respectively. BC, BC , and BC mass concentrations exhibit large and significant variations during morning, afternoon, evening, and night time. During afternoon, mass concentration values are minimum throughout the year because of the fully evolved boundary layer and reduced anthropogenic activities. BC exhibits a strong seasonal variability with postmonsoon high (8.3 μg m ) and monsoon low (1.9 μg m ). Annual mean BC and BC contributions are 80 and 20 %, respectively, to total BC, which suggests that major contribution of BC in Ahmedabad comes from fossil fuel emissions. The results show that the study location is dominated by fossil fuel combustion as compared to the emissions from wood burning. The results obtained represent a regional value over an urban regime which can be used as inputs on source apportionment to model BC emissions in regional and global climate models.

摘要

基于不同波长下测量的气溶胶吸收系数的黑碳测定仪源解析模型,用于划分化石燃料和木材燃烧源对总黑碳(BC)质量浓度的贡献。在2014年1月至2015年12月期间,对印度西部一个城市地区的BC质量浓度、化石燃料等效BC(BC )和木材燃烧等效BC(BC )的时间和季节变化进行了研究。BC、BC 和BC 质量浓度呈现出强烈的日变化,主要受大气动力学影响。BC 比BC 高2至4倍,并且全天对BC质量的贡献最大,这证实了一致的人为活动。由于艾哈迈达巴德排放源的差异,BC 和BC 的日贡献呈现相反的变化。夜间BC值比白天BC值高约1.4倍。白天和夜间的年平均百分比贡献分别为42%和58%。BC、BC 和BC 质量浓度在早晨、下午、傍晚和夜间呈现出较大且显著的变化。在下午,由于边界层充分发展和人为活动减少,全年的质量浓度值最低。BC呈现出强烈的季节变化,季风后较高(8.3μg/m ),季风期间较低(1.9μg/m )。BC 和BC 对总BC的年平均贡献分别为80%和20%,这表明艾哈迈达巴德的BC主要来自化石燃料排放。结果表明,与木材燃烧排放相比,该研究地点以化石燃料燃烧为主。所获得的结果代表了城市区域的区域值,可作为源解析的输入,用于区域和全球气候模型中BC排放的建模。

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