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Time-series MODIS satellite and in-situ data for spatio-temporal distribution of aerosol pollution assessment over Bucharest metropolitan area

机译:按时间序列划分的MODIS卫星和原位数据,用于布加勒斯特都会区气溶胶污染评估的时空分布

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With the increasing industrialization and urbanization, especially in the metropolis regions, aerosol pollution has highly negative effects on environment. Urbanization is responsible of three major changes that may have impact on the urban atmosphere: replacement of the natural surfaces with buildings and impermeable pavements, heat of anthropogenic origin and air pollution. The importance of aerosols for radiative and atmospheric chemical processes is widely recognized. They can scatter and/or absorb solar radiation leading to changes of the radiation budget. Also, the so-called indirect effect of aerosols describes the cloud-aerosol interactions, which can modify the chemical and physical processes in the atmosphere. Their high spatial variability and short lifetime make spaceborne sensors especially well suited for their observation. Remote sensing is a key application in global-change science and urban climatology. Since the launch of the MODerate resolution Imaging Spectroradiometer (MODIS) there is detailed global aerosol information available, both over land and oceans The aerosol parameters can be measured directly in situ or derived from satellite remote sensing observations. All these methods are important and complementary. The objective of this work was to document the seasonal and inter-annual patterns of the aerosol pollution particulate matter in two size fractions (PM10 and PM2.5) loading and air quality index (AQI) over Bucharest metropolitan area in Romania based on in-situ and MODIS Terra/Aqua satellite time series data over 2010-2012 period. Accurate information of urban air pollution is required for environmental and health policy, but also to act as a basis for designing and stratifying future monitoring networks.
机译:随着工业化和城市化的不断发展,特别是在大都市地区,气溶胶污染对环境产生了极大的负面影响。城市化是可能影响城市大气的三大变化的原因:用建筑物和不透水的人行道取代自然表面,人为来源的热量和空气污染。气雾剂对辐射和大气化学过程的重要性已得到广泛认可。它们会散射和/或吸收太阳辐射,从而导致辐射预算的变化。同样,所谓的气溶胶间接效应描述了云气溶胶相互作用,它可以改变大气中的化学和物理过程。它们的高空间可变性和短寿命使其特别适合于它们的观测。遥感是全球变化科学和城市气候学中的关键应用。自从MODerate分辨率成像光谱仪(MODIS)发射以来,陆上和海洋上都有详细的全球气溶胶信息可用。气溶胶参数可以直接就地测量,也可以从卫星遥感观测中得出。所有这些方法都是重要且互补的。这项工作的目的是根据罗马尼亚的布加勒斯特都市圈,记录罗马尼亚布加勒斯特都会区两个尺寸部分(PM10和PM2.5)的装填量和空气质量指数(AQI)的气溶胶污染颗粒物的季节和年际格局。 2010-2012年期间的原位和MODIS Terra / Aqua卫星时间序列数据。环境和健康政策需要准确的城市空气污染信息,但也要作为设计和分层未来监测网络的基础。

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