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Integrated ozone depletion as a metric for ozone recovery

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Integrated ozone depletion as a metric for ozone recovery. / Pyle, John A.; Keeble, James; Abraham, Nathan Luke et al.
In: Nature, Vol. 608, No. 7924, 24.08.2022, p. 719-723.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Pyle, JA, Keeble, J, Abraham, NL, Chipperfield, MP & Griffiths, PT 2022, 'Integrated ozone depletion as a metric for ozone recovery', Nature, vol. 608, no. 7924, pp. 719-723. https://doi.org/10.1038/s41586-022-04968-8

APA

Pyle, J. A., Keeble, J., Abraham, N. L., Chipperfield, M. P., & Griffiths, P. T. (2022). Integrated ozone depletion as a metric for ozone recovery. Nature, 608(7924), 719-723. https://doi.org/10.1038/s41586-022-04968-8

Vancouver

Pyle JA, Keeble J, Abraham NL, Chipperfield MP, Griffiths PT. Integrated ozone depletion as a metric for ozone recovery. Nature. 2022 Aug 24;608(7924):719-723. doi: 10.1038/s41586-022-04968-8

Author

Pyle, John A. ; Keeble, James ; Abraham, Nathan Luke et al. / Integrated ozone depletion as a metric for ozone recovery. In: Nature. 2022 ; Vol. 608, No. 7924. pp. 719-723.

Bibtex

@article{9b2c90b4242b48e2ab34b7dfd76b53bd,
title = "Integrated ozone depletion as a metric for ozone recovery",
abstract = "The Montreal Protocol is successfully protecting the ozone layer. The main halogen gases responsible for stratospheric ozone depletion have been regulated under the Protocol, their combined atmospheric abundances are declining and ozone is increasing in some parts of the atmosphere1. Ozone depletion potentials2–4, relative measures of compounds{\textquoteright} abilities to deplete stratospheric ozone, have been a key regulatory component of the Protocol in successfully guiding the phasing out in the manufacture of the most highly depleting substances. However, this latest, recovery phase in monitoring the success of the Protocol calls for further metrics. The {\textquoteleft}delay in ozone return{\textquoteright} has been widely used to indicate the effect of different emissions or phase-down strategies, but we argue here that it can sometimes be ambiguous or even of no use. Instead, we propose the use of an integrated ozone depletion (IOD) metric to indicate the impact of any new emission. The IOD measures the time-integrated column ozone depletion and depends only on the emission strength and the whole atmosphere and stratospheric lifetimes of the species considered. It provides a useful complementary metric of the impact of specific emissions of an ozone depleting substance for both the scientific and policy communities.",
author = "Pyle, {John A.} and James Keeble and Abraham, {Nathan Luke} and Chipperfield, {Martyn P.} and Griffiths, {Paul T.}",
note = "Publisher Copyright: {\textcopyright} 2022, The Author(s), under exclusive licence to Springer Nature Limited.",
year = "2022",
month = aug,
day = "24",
doi = "10.1038/s41586-022-04968-8",
language = "English",
volume = "608",
pages = "719--723",
journal = "Nature",
issn = "0028-0836",
publisher = "Nature Publishing Group",
number = "7924",

}

RIS

TY - JOUR

T1 - Integrated ozone depletion as a metric for ozone recovery

AU - Pyle, John A.

AU - Keeble, James

AU - Abraham, Nathan Luke

AU - Chipperfield, Martyn P.

AU - Griffiths, Paul T.

N1 - Publisher Copyright: © 2022, The Author(s), under exclusive licence to Springer Nature Limited.

PY - 2022/8/24

Y1 - 2022/8/24

N2 - The Montreal Protocol is successfully protecting the ozone layer. The main halogen gases responsible for stratospheric ozone depletion have been regulated under the Protocol, their combined atmospheric abundances are declining and ozone is increasing in some parts of the atmosphere1. Ozone depletion potentials2–4, relative measures of compounds’ abilities to deplete stratospheric ozone, have been a key regulatory component of the Protocol in successfully guiding the phasing out in the manufacture of the most highly depleting substances. However, this latest, recovery phase in monitoring the success of the Protocol calls for further metrics. The ‘delay in ozone return’ has been widely used to indicate the effect of different emissions or phase-down strategies, but we argue here that it can sometimes be ambiguous or even of no use. Instead, we propose the use of an integrated ozone depletion (IOD) metric to indicate the impact of any new emission. The IOD measures the time-integrated column ozone depletion and depends only on the emission strength and the whole atmosphere and stratospheric lifetimes of the species considered. It provides a useful complementary metric of the impact of specific emissions of an ozone depleting substance for both the scientific and policy communities.

AB - The Montreal Protocol is successfully protecting the ozone layer. The main halogen gases responsible for stratospheric ozone depletion have been regulated under the Protocol, their combined atmospheric abundances are declining and ozone is increasing in some parts of the atmosphere1. Ozone depletion potentials2–4, relative measures of compounds’ abilities to deplete stratospheric ozone, have been a key regulatory component of the Protocol in successfully guiding the phasing out in the manufacture of the most highly depleting substances. However, this latest, recovery phase in monitoring the success of the Protocol calls for further metrics. The ‘delay in ozone return’ has been widely used to indicate the effect of different emissions or phase-down strategies, but we argue here that it can sometimes be ambiguous or even of no use. Instead, we propose the use of an integrated ozone depletion (IOD) metric to indicate the impact of any new emission. The IOD measures the time-integrated column ozone depletion and depends only on the emission strength and the whole atmosphere and stratospheric lifetimes of the species considered. It provides a useful complementary metric of the impact of specific emissions of an ozone depleting substance for both the scientific and policy communities.

U2 - 10.1038/s41586-022-04968-8

DO - 10.1038/s41586-022-04968-8

M3 - Journal article

C2 - 36002489

AN - SCOPUS:85136460953

VL - 608

SP - 719

EP - 723

JO - Nature

JF - Nature

SN - 0028-0836

IS - 7924

ER -