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X CO2 retrieval error over deserts near critical surface albedo

机译:关键地表反照率附近的沙漠X CO2反演误差

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Large retrieval errors in column?¢????weighted CO 2 mixing ratio (X CO2 ) over deserts are evident in the Orbiting Carbon Observatory 2 version 7 L2 products. We argue that these errors are caused by the surface albedo being close to a critical surface albedo ( ???± c ). Over a surface with albedo close to ???± c , increasing the aerosol optical depth (AOD) does not change the continuum radiance. The spectral signature caused by changing the AOD is identical to that caused by changing the absorbing gas column. The degeneracy in the retrievals of AOD and X CO2 results in a loss of degrees of freedom and information content. We employ a two?¢????stream?¢????exact single scattering radiative transfer model to study the physical mechanism of X CO2 retrieval error over a surface with albedo close to ???± c . Based on retrieval tests over surfaces with different albedos, we conclude that over a surface with albedo close to ???± c , the X CO2 retrieval suffers from a significant loss of accuracy. We recommend a bias correction approach that has significantly improved the X CO2 retrieval from the California Laboratory for Atmospheric Remote Sensing data in the presence of aerosol loading.
机译:在轨道碳天文台2 7 L2型产品中,柱上的加权CO 2混合比(X CO2)的检索误差很大。我们认为,这些误差是由于表面反照率接近临界表面反照率(Δ±c)引起的。在反照率接近±c的表面上,增加气溶胶光学深度(AOD)不会改变连续辐射。改变AOD所引起的光谱特征与改变吸收气柱所引起的光谱特征相同。 AOD和X CO2检索中的简并性导致自由度和信息含量的损失。我们采用两个精确的单散射辐射传输模型,研究了反照率接近±c的表面上X CO2检索误差的物理机理。基于对具有不同反照率的表面的检索测试,我们得出结论,在反照率接近±c的表面上,X CO2检索会遭受准确性的重大损失。我们建议使用一种偏差校正方法,该方法可以显着改善在有气溶胶负载的情况下从加利福尼亚实验室的大气遥感数据中获取X CO2的能力。

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