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首页> 外文期刊>Journal of Environmental Management >Atmospheric carbonaceous aerosols from Indo-Gangetic Plain and Central Himalaya: Impact of anthropogenic sources
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Atmospheric carbonaceous aerosols from Indo-Gangetic Plain and Central Himalaya: Impact of anthropogenic sources

机译:来自印度恒河平原和喜马拉雅中部的大气碳质气溶胶:人为源的影响

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摘要

In the present-day scenario of growing anthropogenic activities, carbonaceous aerosols contribute significantly (~20-70%) to the total atmospheric particulate matter mass and, thus, have immense potential to influence the Earth's radiation budget and climate on a regional to global scale. In addition, formation of secondary organic aerosols is being increasingly recognized as an important process in contributing to the air-pollution and poor visibility over urban regions. It is, thus, essential to study atmospheric concentrations of carbonaceous species (EC, OC and WSOC), their mixing state and absorption properties on a regional scale. This paper presents the comprehensive data on emission sources, chemical characteristics and optical properties of carbonaceous aerosols from selected urban sites in the Indo-Gangetic Plain (IGP) and from a high-altitude location in the central Himalaya. The mass concentrations of OC, EC and WSOC exhibit large spatio-temporal variability in the IGP. This is attributed to seasonally varying emissions from post-harvest agricultural-waste burning, their source strength, boundary layer dynamics and secondary aerosol formation. The high concentrations of OC and SO_4~(2-), and their characteristic high mass scattering efficiency, contribute significantly to the aerosol optical depth and scattering coefficient. This has implications to the assessment of single scattering albedo and aerosol radiative forcing on a regional scale.
机译:在当今人类活动增多的情况下,碳质气溶胶对大气颗粒物总量的贡献很大(〜20-70%),因此,在区域范围到全球范围内,有巨大的潜力影响地球的辐射预算和气候。另外,越来越多地认识到形成二次有机气溶胶是导致城市地区空气污染和能见度降低的重要过程。因此,至关重要的是研究区域性碳素物质(EC,OC和WSOC)的大气浓度,它们的混合状态和吸收特性。本文介绍了来自印度恒河平原(IGP)特定城市站点和喜马拉雅山中部高海拔位置的碳质气溶胶的排放源,化学特性和光学性质的综合数据。 OC,EC和WSOC的质量浓度在IGP中表现出较大的时空变异性。这归因于收获后农业废物燃烧产生的季节变化排放,其源强度,边界层动力学和二次气溶胶形成。 OC和SO_4〜(2-)的高浓度及其特征性的高质量散射效率极大地影响了气溶胶的光学深度和散射系数。这对区域范围内单个散射反照率和气溶胶辐射强迫的评估具有影响。

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