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Light absorption enhancement of black carbon in a pyrocumulonimbus cloud

delete2024-07-25
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OA
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P
Payton Beeler
J
Joshin Kumar
J
Joshua P. Schwarz
K
Kouji Adachi
L
Laura Fierce
A
A. E. Perring
J
Joseph M. Katich
R
Rajan K. Chakrabarty *
DOI:10.1038/s41467-024-50070-0delete
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Abstract

Abstract

En 中文
Pyrocumulonimbus (pyroCb) firestorm systems have been shown to inject significant amounts of black carbon (BC) to the stratosphere with a residence time of several months. Injected BC warms the local stratospheric air, consequently perturbing transport and hence spatial distributions of ozone and water vapor. A distinguishing feature of BC-containing particles residing within pyroCb smoke is their thick surface coatings made of condensed organic matter. When coated with non-refractory materials, BC's absorption is enhanced, yet the absorption enhancement factor (Eabs) for pyroCb BC is not well constrained. Here, we perform particle-scale measurements of BC mass, morphology, and coating thickness from inside a pyroCb cloud and quantify Eabs using an established particle-resolved BC optics model. We find that the population-averaged Eabs for BC asymptotes to 2.0 with increasing coating thickness. This value denotes the upper limit of Eabs for thickly coated BC in the atmosphere. Our results provide observationally constrained parameterizations of BC absorption for improved radiative transfer calculations of pyroCb events. In situ particle-scale measurements show that black carbon absorption enhancement asymptotes to 2.0 inside a pyrocumulonimbus cloud. This value denotes the upper limit of absorption enhancement for thickly coated black carbon in the atmosphere.
Keywords:
MIXING STATE
BROWN CARBON
DEPENDENCE
PARTICLES
CYCLE
SOOT
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Journal

Nature Communications cover
Nature Communications
IF:
15.7
Papers:
9.2W
Citations:
91.2W

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M
meteorological research institute - japan
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725
Papers: 792
Citations: 1
N
national oceanic atmospheric admin (noaa) - usa
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1.4W
Papers: 1.1W
Citations: 10
P
Pacific Northwest National Laboratory
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9.0K
Papers: 6.3K
Citations: 14
U
united states department of energy (doe)
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11.2W
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Citations: 246
W
washington university (wustl)
Scholars:
5.4W
Papers: 4.5W
Citations: 70
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