首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Global trends of columnar and vertically distributed properties of aerosols with emphasis on dust, polluted dust and smoke - inferences from 10-year long CALIOP observations
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Global trends of columnar and vertically distributed properties of aerosols with emphasis on dust, polluted dust and smoke - inferences from 10-year long CALIOP observations

机译:气溶胶柱的全球趋势和垂直分布的气溶胶性能,重点是灰尘,污染的粉尘和烟雾 - 从10年的长期卡利普观测

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In this paper, the decadal datasets available from the space-borne lidar, Cloud Aerosol Lidar with Orthogonal Polarization (CALIOP) onboard Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO) are analyzed in order to understand the spatial and vertical distributions of aerosols at a global scale. Decadal (September 2006 August 2016) Level 3 night time Standard All-sky data products, created using quality controlled Level 2 datasets are utilized in the study. Columnar aerosol properties are discussed in conjugation with vertical properties of the three major aerosol types i.e. dust, polluted dust and smoke. It is found that the global mean aerosol optical depth (AOD) amounts to 0.10, with AOD values of 0.13 and 0.09 for land and ocean respectively, during the last decade. Mean aerosol extinction coefficients are also reported for four altitude bins i.e. 0-1 km, 1-2 km, 2-3 km and 3-4 km above mean sea level (a.m.s.l.). It is observed that dust and smoke particles have stronger vertical transport compared to polluted dust particles, which are generally found to be confined within the lower altitudes. In order to observe the changes in aerosol loading over different parts of the globe, de-seasonalized trends of AOD and vertical extinction coefficients are computed using linear regression technique. Globally, the total columnar particle load shows a significant negative trend during the last decade. In particular, trends of total particle loading (AOD and extinction) are decreasing over North America, South America, East China and Australia. However, the smoke emissions (columnar and vertically distributed) have increased over India, Russia, North America, Australia and Central Africa. This is of concern in the context of rising temperatures accompanied with increasing wildfires throughout the globe. Additionally, enhanced levels of polluted dust over the developing regions of Africa and Asia are also revealed.
机译:在本文中,分析了从空间传播利达提供的Decadal DataSets,云气溶胶激光雷达与正交极化(Caliop)船上云 - 气溶胶LIDAR和红外探测器卫星观测(Calipso)进行了分析,以了解气溶胶的空间和垂直分布在全球范围内。 Decadal(2006年9月2016年8月)3级夜间时间标准的全天数据产品,使用质量控制级别2数据集创建的全天数据产品。柱状气溶胶特性以三种主要气溶胶类型的垂直性质缀合,即灰尘,污染的灰尘和烟雾。结果发现,在过去十年中,全球平均气溶胶光学深度(AOD)的含量为0.10,AOD值分别为0.13和0.09的土地和海洋。意味着烟雾消光系数也被报告为四个高度箱,即0-1公里,1-2公里,2-3公里和3-4公里,平均海平面(即)。观察到,与污染的粉尘颗粒相比,灰尘和烟雾颗粒具有更强的垂直运输,其通常被发现在较低的高度内限制。为了观察到全球不同部分的气溶胶加载的变化,使用线性回归技术计算AOD和垂直消光系数的去核心化趋势。在全球范围内,总柱状粒子负荷在过去十年中显示出显着的负趋势。特别是,全粒子加载(AOD和灭绝)的趋势正在降低北美,南美,华东和澳大利亚。然而,烟雾排放(柱状和垂直分布)在印度,俄罗斯,北美,澳大利亚和中非增加。这在伴随着全球野火的上升的温度范围内,这是令人担忧的。此外,还揭示了非洲和亚洲发展中地区的污染尘埃水平。

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