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Direct radiative effect by brown carbon over the Indo-Gangetic Plain

机译:褐碳对印度恒河平原的直接辐射作用

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pstrongAbstract./strong The importance of light-absorbing organic aerosols, often called brown carbon (BrC), has become evident in recent years. However, there have been relatively few measurement-based estimates for the direct radiative effect of BrC so far. In earlier studies, the AErosol RObotic NETwork (AERONET)-measured aerosol absorption optical depth (AAOD) and absorption Angstrom exponent (AAE) were exploited. However, these two pieces of information are clearly not sufficient to separate properly carbonaceous aerosols from dust, while imaginary indices of refraction would contain more and better justified information for this purpose. This is first time that the direct radiative effect (DRE) of BrC is estimated by exploiting the AERONET-retrieved imaginary indices. We estimated it for four sites in the Indo-Gangetic Plain (IGP), Karachi, Lahore, Kanpur and Gandhi College. We found a distinct seasonality, which was generally similar among all the sites, but with slightly different strengths. The monthly warming effect up to 0.5 W msupa??2/sup takes place during the spring season. On the other hand, BrC results in an overall cooling effect in the winter season, which can reach levels close to a??1 W msupa??2/sup. We then estimated similarly also the DRE of black carbon and total aerosol, in order to assess the relative significance of the BrC radiative effect in the radiative effects of other components. Even though BrC impact seems minor in this context, we demonstrated that it is not insignificant. Moreover, we demonstrated that it is crucial to perform spectrally resolved radiative transfer calculations to obtain good estimates for the DRE of BrC./p.
机译:> >摘要。近年来,吸收光的有机气溶胶(通常称为褐碳(BrC))的重要性已变得显而易见。但是,到目前为止,对BrC的直接辐射效应的基于测量的估计相对较少。在较早的研究中,利用了AErosol机器人网络(AERONET)测量的气溶胶吸收光学深度(AAOD)和吸收埃指数(AAE)。然而,这两个信息显然不足以将碳质气溶胶与粉尘正确分离,而虚构的折射率将为此目的包含更多且更好的正当信息。这是第一次通过利用AERONET检索的虚构指数来估算BrC的直接辐射效应(DRE)。我们在印度恒河平原(IGP),卡拉奇,拉合尔,坎普尔和甘地学院的四个地点进行了估算。我们发现了明显的季节性变化,通常在所有站点之间相似,但是优势略有不同。在春季,每月的变暖效应高达0.5 W m a ?? 2 。另一方面,BrC导致冬季的总体降温效果,其可以达到接近a ?? 1 W m a ?? 2 的水平。然后,我们还类似地估算了黑碳和总气溶胶的DRE,以评估BrC辐射效应在其他组分的辐射效应中的相对重要性。尽管在此背景下BrC的影响似乎很小,但我们证明了这一点并不重要。此外,我们证明了进行光谱解析的辐射转移计算以获得良好的BrC DRE估计至关重要。

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