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半球气溶胶垂直分布:人为因素对光学深度和云核的影响。

Hemispheric aerosol vertical profiles: anthropogenic impacts on optical depth and cloud nuclei.

机构信息

School of Ocean and Earth Science and Technology (SOEST), University of Hawaii, Honolulu, HI 96822, USA.

出版信息

Science. 2010 Sep 17;329(5998):1488-92. doi: 10.1126/science.1188838.

Abstract

Understanding the effect of anthropogenic combustion upon aerosol optical depth (AOD), clouds, and their radiative forcing requires regionally representative aerosol profiles. In this work, we examine more than 1000 vertical profiles from 11 major airborne campaigns in the Pacific hemisphere and confirm that regional enhancements in aerosol light scattering, mass, and number are associated with carbon monoxide from combustion and can exceed values in unperturbed regions by more than one order of magnitude. Related regional increases in a proxy for cloud condensation nuclei (CCN) and AOD imply that direct and indirect aerosol radiative effects are coupled issues linked globally to aged combustion. These profiles constrain the influence of combustion on regional AOD and CCN suitable for challenging climate model performance and informing satellite retrievals.

摘要

理解人为燃烧对气溶胶光学深度(AOD)、云及其辐射强迫的影响需要具有区域代表性的气溶胶廓线。在这项工作中,我们研究了来自太平洋半球 11 次主要机载飞行任务的 1000 多个垂直剖面,证实了气溶胶光散射、质量和数量的区域增强与燃烧产生的一氧化碳有关,并且可以超过未受干扰区域的一个数量级以上。与云凝结核(CCN)和 AOD 的代理相关的区域增加表明,气溶胶的直接和间接辐射效应是与全球老化燃烧相关的耦合问题。这些廓线约束了燃烧对区域 AOD 和 CCN 的影响,这对于具有挑战性的气候模型性能和卫星反演非常重要。

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