Literature DB >> 29769666

An unexpected and persistent increase in global emissions of ozone-depleting CFC-11.

Stephen A Montzka1, Geoff S Dutton2,3, Pengfei Yu3,4, Eric Ray3,4, Robert W Portmann4, John S Daniel4, Lambert Kuijpers5, Brad D Hall2, Debra Mondeel2,3, Carolina Siso2,3, J David Nance2,3, Matt Rigby6, Alistair J Manning7, Lei Hu2,3, Fred Moore2,3, Ben R Miller2,3, James W Elkins2.   

Abstract

The Montreal Protocol was designed to protect the stratospheric ozone layer by enabling reductions in the abundance of ozone-depleting substances such as chlorofluorocarbons (CFCs) in the atmosphere1-3. The reduction in the atmospheric concentration of trichlorofluoromethane (CFC-11) has made the second-largest contribution to the decline in the total atmospheric concentration of ozone-depleting chlorine since the 1990s 1 . However, CFC-11 still contributes one-quarter of all chlorine reaching the stratosphere, and a timely recovery of the stratospheric ozone layer depends on a sustained decline in CFC-11 concentrations 1 . Here we show that the rate of decline of atmospheric CFC-11 concentrations observed at remote measurement sites was constant from 2002 to 2012, and then slowed by about 50 per cent after 2012. The observed slowdown in the decline of CFC-11 concentration was concurrent with a 50 per cent increase in the mean concentration difference observed between the Northern and Southern Hemispheres, and also with the emergence of strong correlations at the Mauna Loa Observatory between concentrations of CFC-11 and other chemicals associated with anthropogenic emissions. A simple model analysis of our findings suggests an increase in CFC-11 emissions of 13 ± 5 gigagrams per year (25 ± 13 per cent) since 2012, despite reported production being close to zero 4 since 2006. Our three-dimensional model simulations confirm the increase in CFC-11 emissions, but indicate that this increase may have been as much as 50 per cent smaller as a result of changes in stratospheric processes or dynamics. The increase in emission of CFC-11 appears unrelated to past production; this suggests unreported new production, which is inconsistent with the Montreal Protocol agreement to phase out global CFC production by 2010.

Entities:  

Year:  2018        PMID: 29769666     DOI: 10.1038/s41586-018-0106-2

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  26 in total

1.  Why Do Antarctic Ozone Recovery Trends Vary?

Authors:  Susan E Strahan; Anne R Douglass; Megan R Damon
Journal:  J Geophys Res Atmos       Date:  2019-08-16       Impact factor: 4.261

2.  Illegal CFC emissions have stopped since scientists raised alarm.

Authors:  Jeff Tollefson
Journal:  Nature       Date:  2021-02       Impact factor: 49.962

3.  Huge gaps in detection networks plague emissions monitoring.

Authors:  Ray F Weiss; A R Ravishankara; Paul A Newman
Journal:  Nature       Date:  2021-07       Impact factor: 49.962

4.  The Way Forward for Montreal Protocol Science.

Authors:  Paul A Newman
Journal:  Collect C R Geosci       Date:  2018-10-17       Impact factor: 2.241

5.  Coordination cages as permanently porous ionic liquids.

Authors:  Lillian Ma; Cally J E Haynes; Angela B Grommet; Anna Walczak; Christopher C Parkins; Cara M Doherty; Louis Longley; Arnaud Tron; Artur R Stefankiewicz; Thomas D Bennett; Jonathan R Nitschke
Journal:  Nat Chem       Date:  2020-02-10       Impact factor: 24.427

Review 6.  Environmental effects of stratospheric ozone depletion, UV radiation and interactions with climate change: UNEP Environmental Effects Assessment Panel, update 2019.

Authors:  G H Bernhard; R E Neale; P W Barnes; P J Neale; R G Zepp; S R Wilson; A L Andrady; A F Bais; R L McKenzie; P J Aucamp; P J Young; J B Liley; R M Lucas; S Yazar; L E Rhodes; S N Byrne; L M Hollestein; C M Olsen; A R Young; T M Robson; J F Bornman; M A K Jansen; S A Robinson; C L Ballaré; C E Williamson; K C Rose; A T Banaszak; D -P Häder; S Hylander; S -Å Wängberg; A T Austin; W -C Hou; N D Paul; S Madronich; B Sulzberger; K R Solomon; H Li; T Schikowski; J Longstreth; K K Pandey; A M Heikkilä; C C White
Journal:  Photochem Photobiol Sci       Date:  2020-05-20       Impact factor: 3.982

7.  Unexpected nascent atmospheric emissions of three ozone-depleting hydrochlorofluorocarbons.

Authors:  Martin K Vollmer; Jens Mühle; Stephan Henne; Dickon Young; Matthew Rigby; Blagoj Mitrevski; Sunyoung Park; Chris R Lunder; Tae Siek Rhee; Christina M Harth; Matthias Hill; Ray L Langenfelds; Myriam Guillevic; Paul M Schlauri; Ove Hermansen; Jgor Arduini; Ray H J Wang; Peter K Salameh; Michela Maione; Paul B Krummel; Stefan Reimann; Simon O'Doherty; Peter G Simmonds; Paul J Fraser; Ronald G Prinn; Ray F Weiss; L Paul Steele
Journal:  Proc Natl Acad Sci U S A       Date:  2021-02-02       Impact factor: 11.205

8.  The chemists policing Earth's atmosphere for rogue pollution.

Authors:  Jane Palmer
Journal:  Nature       Date:  2020-01       Impact factor: 69.504

9.  Environmental effects of stratospheric ozone depletion, UV radiation, and interactions with climate change: UNEP Environmental Effects Assessment Panel, Update 2020.

Authors:  R E Neale; P W Barnes; T M Robson; P J Neale; C E Williamson; R G Zepp; S R Wilson; S Madronich; A L Andrady; A M Heikkilä; G H Bernhard; A F Bais; P J Aucamp; A T Banaszak; J F Bornman; L S Bruckman; S N Byrne; B Foereid; D-P Häder; L M Hollestein; W-C Hou; S Hylander; M A K Jansen; A R Klekociuk; J B Liley; J Longstreth; R M Lucas; J Martinez-Abaigar; K McNeill; C M Olsen; K K Pandey; L E Rhodes; S A Robinson; K C Rose; T Schikowski; K R Solomon; B Sulzberger; J E Ukpebor; Q-W Wang; S-Å Wängberg; C C White; S Yazar; A R Young; P J Young; L Zhu; M Zhu
Journal:  Photochem Photobiol Sci       Date:  2021-01-20       Impact factor: 4.328

10.  Control Models and Spatiotemporal Characteristics of Air Pollution in the Rapidly Developing Urban Agglomerations.

Authors:  Longwu Liang; Zhenbo Wang
Journal:  Int J Environ Res Public Health       Date:  2021-06-07       Impact factor: 3.390

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