Quantifying contributions of chlorofluorocarbon banks to emissions and impacts on the ozone layer and climate

Publication date

2020-03-17

Authors

Lickley, Megan
Solomon, Susan
Fletcher, Sarah
Velders, G.J.M.
Daniel, J.S.
Rigby, Matthew
Montzka, S.A.
Kuijpers, Lambert
Stone, Kane

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Document Type

Article
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Abstract

Chlorofluorocarbon (CFC) banks from uses such as air conditioners or foams can be emitted after global production stops. Recent reports of unexpected emissions of CFC-11 raise the need to better quantify releases from these banks, and associated impacts on ozone depletion and climate change. Here we develop a Bayesian probabilistic model for CFC-11, 12, and 113 banks and their emissions, incorporating the broadest range of constraints to date. We find that bank sizes of CFC-11 and CFC-12 are larger than recent international scientific assessments suggested, and can account for much of current estimated CFC-11 and 12 emissions (with the exception of increased CFC-11 emissions after 2012). Left unrecovered, these CFC banks could delay Antarctic ozone hole recovery by about six years and contribute 9 billion metric tonnes of equivalent CO2 emission. Derived CFC-113 emissions are subject to uncertainty, but are much larger than expected, raising questions about its sources.

Keywords

SDG 12 - Responsible Consumption and Production, SDG 13 - Climate Action

Citation

Lickley, M, Solomon, S, Fletcher, S, Velders, G J M, Daniel, J S, Rigby, M, Montzka, S A, Kuijpers, L & Stone, K 2020, 'Quantifying contributions of chlorofluorocarbon banks to emissions and impacts on the ozone layer and climate', Nature Communications, vol. 11, s41467. https://doi.org/10.1038/s41467-020-15162-7