Black carbon scavenging by low-level Arctic clouds

Author:

Zieger PaulORCID,Heslin-Rees Dominic,Karlsson Linn,Koike MakotoORCID,Modini RobinORCID,Krejci RadovanORCID

Abstract

AbstractBlack carbon (BC) from anthropogenic and natural sources has a pronounced climatic effect on the polar environment. The interaction of BC with low-level Arctic clouds, important for understanding BC deposition from the atmosphere, is studied using the first long-term observational data set of equivalent black carbon (eBC) inside and outside of clouds observed at Zeppelin Observatory, Svalbard. We show that the measured cloud residual eBC concentrations have a clear seasonal cycle with a maximum in early spring, due to the Arctic haze phenomenon, followed by cleaner summer months with very low concentrations. The scavenged fraction of eBC was positively correlated with the cloud water content and showed lower scavenged fractions at low temperatures, which may be due to mixed-phase cloud processes. A trajectory analysis revealed potential sources of eBC and the need to ensure that aerosol-cloud measurements are collocated, given the differences in air mass origin of cloudy and non-cloudy periods.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

Reference58 articles.

1. AMAP Assessment 2021: Impacts of short-lived climate forcers on Arctic climate, air quality, and human health. (Arctic monitoring and assessment programme (AMAP), Tromsø, Norway, 2021).

2. Quinn, P. K. et al. The impact of black carbon on Arctic climate. AMAP Technical Report No. 4. Tech. Rep. (Arctic Monitoring and Assessment Programme (AMAP), Oslo, 2011).

3. Shindell, D. et al. Simultaneously mitigating near-term climate change and improving human health and food security. Science 335, 183–189 (2012).

4. Sand, M. et al. Response of Arctic temperature to changes in emissions of short-lived climate forcers. Nat. Clim. Change 6, 286–289 (2016).

5. Hansen, J. & Nazarenko, L. Soot climate forcing via snow and ice albedos. Proc. Natl Acad. Sci. USA 101, 423–428 (2004).

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