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The Present and Future of Secondary Organic Aerosol Direct Forcing on Climate

机译:二次有机气溶胶的现在与未来直接迫使气候

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Secondary organic aerosols (SOA), a subset of organic aerosols that are chemically produced in the atmosphere, are included in climate modeling calculations using very simple parameterizations. Estimates on their shortwave forcing on climate span almost two orders of magnitude, being potentially comparable to sulfate direct forcing. In the longwave, a neglected part of the spectrum when it comes to SOA, the direct SOA forcing could exceed that of sulfate and black carbon, although in absolute values, it is much weaker than the shortwave forcing. Critical for these estimates is the vertical distribution of the climate active agents, pointing to SOA temperature-dependent volatility. Over the last few years, research also revealed the highly oxidized character of organic aerosol and its chemical aging in the atmosphere that partially leads to the formation of brown carbon, an absorbing form of organic aerosol. This review summarizes critical advances in the understanding of SOA behavior and properties relevant to direct climate forcing and puts them in perspective with regard to primary organic aerosol and brown carbon. These findings also demonstrate an emerging dynamic picture of organic aerosol that has not yet been integrated in climate modeling. The challenges for the coming years in order to reduce uncertainties in the direct organic aerosol climate impact are discussed. High priority for future model development should be given to the dynamic link between “white” and “brown” organic aerosol and between primary and secondary organic aerosol. The SOA temperature-dependent volatility parameterizations and wavelength-dependent refractive index should be also included.
机译:二次有机气溶胶(SOA),在大气中化学制作的有机气溶胶的子集,包括使用非常简单的参数化的气候建模计算。对气候跨越气候跨度的估计几乎是两个数量级,可能与硫酸盐直接强制相当。在龙波中,在SOA方面忽略了一部分频谱,直接SOA迫使可能超过硫酸盐和黑碳,尽管在绝对值中,它比短波强制较弱。对于这些估计至关重要是气候活性剂的垂直分布,指向SOA温度依赖性挥发性。在过去几年中,研究还揭示了有机气溶胶的高度氧化特性及其在大气中的化学老化,部分导致棕色碳的形成,有机气溶胶的吸收形式。本综述总结了理解与直接气候迫使的SOA行为和物业的关键进展,并将其视角于原发性有机气溶胶和棕色碳。这些发现还展示了尚未综合在气候建模中的有机气溶胶的新兴动态图片。讨论了未来几年以减少直接有机气溶胶气候影响的不确定性的挑战。应优先考虑未来的模型开发,应给予“白色”和“棕色”有机气溶胶和初级有机气溶胶之间的动态联系。还包括SOA温度依赖性波动性参数和波长依赖性折射率。

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