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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Influence of aerosols and surface reflectance on satellite NO2 retrieval: seasonal and spatial characteristics and implications for NOx emission constraints
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Influence of aerosols and surface reflectance on satellite NO2 retrieval: seasonal and spatial characteristics and implications for NOx emission constraints

机译:气溶胶和表面反射率对卫星No2检索的影响:季节性和空间特征及对NOx排放约束的影响

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Satellite retrievals of vertical column densities (VCDs) of tropospheric nitrogen dioxide (NO2) normally do not explicitly account for aerosol optical effects and surface reflectance anisotropy that vary with space and time. Here, we conduct an improved retrieval of NO2 VCDs over China, called the POMINO algorithm, based on measurements from the Ozone Monitoring Instrument (OMI), and we test the importance of a number of aerosol and surface reflectance treatments in this algorithm. POMINO uses a parallelized LIDORT-driven AMFv6 package to derive tropospheric air mass factors via pixel-specific radiative transfer calculations with no look-up tables, taking slant column densities from DOMINO v2. Prerequisite cloud optical properties are derived from a dedicated cloud retrieval process that is fully consistent with the main NO2 retrieval. Aerosol optical properties are taken from GEOS-Chem simulations constrained by MODIS aerosol optical depth (AOD) data. MODIS bi-directional reflectance distribution function (BRDF) data are used for surface reflectance over land. For the present analysis, POMINO level-2 data for 2012 are aggregated into monthly means on a 0.25° long. × 0.25° lat. grid. POMINO-retrieved annual mean NO2 VCDs vary from 15–25 × 1015 cm?2 over the polluted North China Plain (NCP) to below 1015 cm?2 over much of western China. Using POMINO to infer Chinese emissions of nitrogen oxides leads to annual anthropogenic emissions of 9.05 TgN yr?1, an increase from 2006 (Lin, 2012) by about 19 %. Replacing the MODIS BRDF data with the OMLER v1 monthly climatological albedo data affects NO2 VCDs by up to 40 % for certain locations and seasons. The effect on constrained NOx emissions is small. Excluding aerosol information from the retrieval process (this is the traditional "implicit" treatment) enhances annual mean NO2 VCDs by 15–40 % over much of eastern China. Seasonally, NO2 VCDs are reduced by 10–20 % over parts of the NCP in spring and over northern China in winter, despite the general enhancements in summer and fall. The effect on subsequently constrained annual emissions is between ?5 and +30 % with large seasonal and spatial dependence. The implicit aerosol treatment also tends to exclude days with high pollution, since aerosols are interpreted as effective clouds and the respective OMI pixels are often excluded by cloud screening; this is a potentially important sampling bias. Therefore an explicit treatment of aerosols is important for space-based NO2 retrievals and emission constraints. A comprehensive independent measurement network with sufficient spatial and temporal representativeness is needed to further evaluate the different satellite retrieval approaches.
机译:对流层氮素二氧化氮(NO2)的垂直柱密度(VCD)的卫星检索通常不会明确占气溶胶光学效应和表面反射率各向异性,这些各向异性随空间和时间而变化。在这里,我们对中国的NO 2 VCDS的改进检索,称为填料监测仪(OMI)的测量,以及在该算法中测试许多气溶胶和表面反射率处理的重要性。 POMINO使用并行化典型的驱动AMFV6封装通过像素特异性辐射转移计算来导出对流层空气质量因子,没有查找表,从Domino V2采用倾斜色谱柱密度。先决条件云光学属性来自专用云检索过程,该过程与主NO2检索完全一致。通过MODIS气溶胶光学深度(AOD)数据约束的Geos-Chem模拟中取气溶胶光学性质。 MODIS双向反射率分布函数(BRDF)数据用于陆地的表面反射率。对于本分析,2012年的Pomino级别-2数据将在0.25°长的月度范围内聚集成月度。 ×0.25°LAT。网格。填充的年度平均值No2 No2 VCD在污染的华北平原(NCP)超过1015厘米(NCP)超过1015厘米?2在中国西部地区的15-25×1015厘米。利用粉铝推断中国氮氧化物排放导致年度人为排放量为9.05吨,从2006年增加(林,2012)增加约19%。用OMLER V1每月Climatological Albedo数据替换Modis BRDF数据,某些位置和季节的NO 2 VCD达到高达40%。对受限制的NOx排放的影响很小。从检索过程中排除气溶胶信息(这是传统的“隐含的”治疗),在中国东部的大部分地区将年度平均下跌15-40%增强15-40%。季节性地,NO2 VCD在春季和中国北方的NCP部分减少了10-20%,尽管夏季和秋季一般改进。对随后约束年排放的影响是在季节性和空间依赖性的5和+30%之间。隐式气溶胶处理也倾向于以高污染排除天数,因为气溶胶被解释为有效的云,并且通常被云筛选常规的众多像素被排除;这是一个潜在的重要采样偏见。因此,基于空间的NO2检索和排放限制,显性处理气溶胶是重要的。需要具有足够的空间和时间代表性的综合独立测量网络,以进一步评估不同的卫星检索方法。

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