Department of Physics, Tripura University, Suryamaninagar 799022, India.
Space Physics Laboratory, Vikram Sarabhai Space Centre, Thiruvananthapuram 695022, India.
Sci Total Environ. 2017 Feb 15;580:499-508. doi: 10.1016/j.scitotenv.2016.11.200. Epub 2016 Dec 27.
Northeast India (NEI) is located within the boundary of the great Himalayas in the north and the Bay of Bengal (BoB) in the southwest, experiences the mixed influence of the westerly dust advection from the Indian desert, anthropogenic aerosols from the highly polluted Indo-Gangetic Plains (IGP) and marine aerosols from BoB. The present study deals with the estimation and characterization of aerosol radiative forcing over a semi-continental site Tripura, which is a strategic location in the western part of NEI having close proximity to the outflow of the IGP. Continuous long term measurements of aerosol black carbon (BC) mass concentrations and columnar aerosol optical depth (AOD) are used for the estimation of aerosol radiative forcing in each monthly time scale. The study revealed that the surface forcing due to aerosols was higher during both winter and pre-monsoon seasons, having comparable values of 32W/m and 33.45W/m respectively. The atmospheric forcing was also higher during these months due to increased columnar aerosol loadings (higher AOD ~0.71) shared by abundant BC concentrations (SSA ~0.7); while atmospheric forcing decreased in monsoon due to reduced magnitude of BC (SSA ~0.94 in July) as well as columnar AOD. The top of the atmosphere (TOA) forcing is positive in pre-monsoon and monsoon months with the highest positive value of 3.78W/m in June 2012. The results are discussed in light of seasonal source impact and transport pathways from adjacent regions.
印度东北部(NEI)位于喜马拉雅山脉的北部和孟加拉湾(BoB)的西南部边界内,受到来自印度沙漠的西风尘输送、来自高度污染的印度恒河平原(IGP)的人为气溶胶以及来自 BoB 的海洋气溶胶的混合影响。本研究涉及对位于 NEI 西部的战略位置特里普拉的半大陆站点的气溶胶辐射强迫进行估计和特征描述,该站点靠近 IGP 的流出区域。气溶胶黑碳(BC)质量浓度和柱状气溶胶光学深度(AOD)的连续长期测量用于估算每个月时间尺度的气溶胶辐射强迫。研究表明,由于气溶胶的存在,冬季和前季风季节的地表强迫更高,分别为 32W/m 和 33.45W/m。由于 SS A(0.7)较高的大量 BC(0.71 的柱气溶胶负荷),这些月份的大气强迫也更高;而在季风期间,由于 BC 幅度降低(7 月 SS A~0.94)以及柱 AOD 降低,大气强迫降低。在季风前和季风期间,大气顶(TOA)强迫为正,2012 年 6 月的最高正值为 3.78W/m。结果根据相邻地区的季节性源影响和传输途径进行了讨论。