Nonlinear enhancement of radiative absorption by black carbon in response to particle mixing structure

Black carbon (BC) strongly absorbs solar radiation, contributing to global warming. Absorption enhancement of BC particles is difficult to quantify due to an inadequate representation of their complex morphology and mixing structures, as well as interaction with radiation. Here, we apply a 3D method accounting for detailed BC mixing structures to predict the absorption enhancement of individual BC particles (E-abs) and the total BC particle population (E-abs,E- bulk). The diverse range of mixing structures in individual BC particles leads to variable E-abs that could hardly be predicted by empirical approximations. We find that the volume proportion of the BC embedded in coating (F) determines E-abs when the particle to BC core diameter ratio (D-p/D-c) is larger than 2.0. Our findings reveal the potential mechanism behind the differences in observed and modeled E-abs,E- bulk. The framework builds a bridge connecting the microscopic mixing structure of individual BC particle with E-abs,E- bulk.

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Author Wang, Yuanyuan
Li, Weijun
Huang, Jin
Liu, Lei
Pang, Yuner
He, Cenlin
Liu, Fengshan
Liu, Dantong
Bi, Lei
Zhang, Xiaoye
Shi, Zongbo
Publisher UCAR/NCAR - Library
Publication Date 2021-12-28T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T18:16:27.081052
Metadata Record Identifier edu.ucar.opensky::articles:25011
Metadata Language eng; USA
Suggested Citation Wang, Yuanyuan, Li, Weijun, Huang, Jin, Liu, Lei, Pang, Yuner, He, Cenlin, Liu, Fengshan, Liu, Dantong, Bi, Lei, Zhang, Xiaoye, Shi, Zongbo. (2021). Nonlinear enhancement of radiative absorption by black carbon in response to particle mixing structure. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7cr5xwv. Accessed 31 January 2025.

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