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首页> 外文期刊>Environmental Science and Pollution Research >Column-integrated aerosol optical properties and direct radiative forcing over the urban-industrial megacity Nanjing in the Yangtze River Delta, China
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Column-integrated aerosol optical properties and direct radiative forcing over the urban-industrial megacity Nanjing in the Yangtze River Delta, China

机译:长江三角洲城市-工业大城市南京的柱积分气溶胶光学特性和直接辐射强迫

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摘要

Aerosol optical properties were measured and analyzed through the ground-based remote sensing Aerosol Robotic Network (AERONET) over an urban-industrial site, Nanjing (32.21A degrees N, 118.72A degrees E, and 62 m above sea level), in the Yangtze River Delta, China, during September 2007-August 2008. The annual averaged values of aerosol optical depth (AOD(500)) and the ngstrom exponent (AE(440-870)) were measured to be 0.94 +/- 0.52 and 1.10 +/- 0.21, respectively. The seasonal averaged values of AOD(500) (AE(440-870)) were noticed to be high in summer (autumn) and low in autumn (spring). The characterization of aerosol types showed the dominance of mixed type followed by the biomass burning and urban-industrial type of aerosol at Nanjing. Subsequently, the curvature (a (2)) obtained from the second-order polynomial fit and the second derivative of AE (alpha') were also analyzed to understand the dominant aerosol type. The single scattering albedo at 440 nm (SSA(440)) varied from 0.88 to 0.93 with relatively lower (higher) values during the summer (spring), suggesting an increase in black carbon and mineral dust (desert dust) aerosols of absorbing (scattering) nature. The averaged monthly and seasonal evolutions of shortwave (0.3-4.0 mu m) direct aerosol radiative forcing (DARF) values were computed from the Santa Barbara DISORT Atmospheric Radiative Transfer (SBDART) model both at the top of atmosphere (TOA) and bottom of atmosphere (SUR) during the study period. Further, the aerosol forcing efficiency (AFE) and the corresponding atmospheric heating rates (AHR) were also estimated from the forcing within the atmosphere (ATM). The derived DARF values, therefore, produced a warming effect within the atmosphere due to strong absorption of solar radiation.
机译:通过地面遥感卫星气溶胶机器人网络(AERONET)在南京的一个城市工业站点(北纬32.21A,东经118.72A,海拔62 m)上测量和分析了气溶胶的光学特性。 2007年9月至2008年8月,是中国的三角洲地区。测得的气溶胶光学深度(AOD(500))和ngstrom指数(AE(440-870))的年平均值为0.94 +/- 0.52和1.10 +分别为0.21。注意到AOD(500)(AE(440-870))的季节性平均值在夏季(秋季)较高,而在秋季(春季)较低。气溶胶类型的表征表明,混合气占主导地位,其次是南京的生物质燃烧和城市工业气溶胶。随后,还分析了从二阶多项式拟合获得的曲率(a(2))和AE的二阶导数(alpha'),以了解主要的气溶胶类型。 440 nm(SSA(440))的单个散射反照率从0.88到0.93,在夏季(春季)相对较低(较高)值,表明黑碳和矿物粉尘(沙漠粉尘)的气溶胶吸收(散射)增加。 )性质。根据圣塔芭芭拉DISORT大气辐射传输(SBDART)模型计算的短波(0.3-4.0μm)直接气溶胶辐射强迫(DARF)的平均每月和季节性变化,包括大气顶部(TOA)和大气底部(SUR)在研究期间。此外,还根据大气中的强迫(ATM)估算了气溶胶的强迫效率(AFE)和相应的大气加热速率(AHR)。因此,由于强烈吸收了太阳辐射,得出的DARF值在大气中产生了变暖效果。

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