...
首页> 外文期刊>Atmospheric chemistry and physics >Measurement report: Strong light absorption induced by aged biomass burning black carbon over the southeastern Tibetan Plateau in pre-monsoon season
【24h】

Measurement report: Strong light absorption induced by aged biomass burning black carbon over the southeastern Tibetan Plateau in pre-monsoon season

机译:测量报告:老年生物量在季风季节东南部燃烧黑碳燃烧黑碳的强光吸收

获取原文
           

摘要

During the pre-monsoon season, biomass burning (BB) activities are intensive in southern Asia. Facilitated by westerly circulation, those BB plumes can be transported to the Tibetan Plateau (TP). Black carbon (BC), the main aerosol species in BB emissions, is an important climate warming agent, and its absorbing property strongly depends on its size distribution and mixing state. To elucidate the influence of those transported BB plumes on the TP, a field campaign was conducted on the southeast edge of the TP during the pre-monsoon season. It was found that the transported BB plumes substantially increased the number concentration of the atmospheric BC particles by a factor of 13 and greatly elevated the number fraction of thickly coated BC from 52?% up to 91?%. Those transported BC particles had slightly larger core size and much thicker coatings than the background BC particles. However, the coating mass was not evenly distributed on BC particles with different sizes. The smaller BC cores were found to have larger shell? / ?core ratios than the larger cores. Besides, the transported BB plumes strongly affected the vertical variation in the BC's abundance and mixing state, resulting in a higher concentration, larger number fraction, and higher aging degree of BC particles in the upper atmosphere. Resulting from both increase in BC loading and aging degree, the transported BB plumes eventually enhanced the total light absorption by a factor of 15, of which 21?% was contributed by the BC aging, and 79?% was contributed from the increase in BC mass. Particularly, the light absorption enhancement induced by the aging process during long-range transport has far exceeded the background aerosol light absorption, which implicates a significant influence of BC aging on climate warming over the TP region.
机译:在季风季季节,生物量燃烧(BB)的活动在南亚的密集。通过Westerly循环促进,这些BB羽毛可以运送到藏高原(TP)。黑碳(BC)是BB排放中的主要气溶胶种类,是一种重要的气候变暖剂,其吸收性能强烈取决于其尺寸分布和混合状态。为了阐明在TP上运输的BB羽毛的影响,在季风季节前TP的东南边缘进行了一个场地运动。发现运输的BB羽羽基本上将大气BC颗粒的数量浓度增加13倍,大大升高了厚涂覆的Bc的数量,从52〜%高达91℃。传送的BC颗粒具有略大较大的芯尺寸和比背景BC颗粒更厚的涂层。然而,涂料质量均匀地分布在具有不同尺寸的BC颗粒上。发现较小的BC核心有更大的壳? /?核心比率比较大的核心。此外,传输的BB羽膜强烈影响了BC的丰度和混合状态的垂直变化,导致高层大气中的较高浓度,更大的数字分数和更高的BC颗粒老化程度。由于BC负载和老化程度的增加而导致的,所传输的BB型羽毛最终增强了15倍的总光吸收,其中21μm是BC老化的贡献,79〜%来自BC的增加贡献大量的。特别是,在远程传输期间,老化过程引起的光吸收增强远远超过了背景气溶胶光吸收,这意味着BC老化对TP区域的气候变暖的显着影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号