Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements

Perfluorocarbons (PFCs) are very potent and long-lived greenhouse gases in the atmosphere, released predominantly during aluminium production and semiconductor manufacture. They have been targeted for emission controls under the United Nations Framework Convention on Climate Change. Here we present...

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Published in:Atmospheric Chemistry and Physics
Main Authors: Trudinger, Cathy M., Fraser, Paul J., Etheridge, David M., Sturges, William T., Vollmer, Martin K., Rigby, Matt, Martinerie, Patricia, Mühle, Jens, Worton, David R., Krummel, Paul B., Steele, L. Paul, Miller, Benjamin R., Laube, Johannes, Mani, Francis S., Rayner, Peter J., Harth, Christina M., Witrant, Emmanuel, Blunier, Thomas, Schwander, Jakob, O'Doherty, Simon, Battle, Mark
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:https://ueaeprints.uea.ac.uk/id/eprint/60772/
https://ueaeprints.uea.ac.uk/id/eprint/60772/1/Published_manuscript.pdf
https://doi.org/10.5194/acp-16-11733-2016
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spelling ftuniveastangl:oai:ueaeprints.uea.ac.uk:60772 2023-06-06T11:54:52+02:00 Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements Trudinger, Cathy M. Fraser, Paul J. Etheridge, David M. Sturges, William T. Vollmer, Martin K. Rigby, Matt Martinerie, Patricia Mühle, Jens Worton, David R. Krummel, Paul B. Steele, L. Paul Miller, Benjamin R. Laube, Johannes Mani, Francis S. Rayner, Peter J. Harth, Christina M. Witrant, Emmanuel Blunier, Thomas Schwander, Jakob O'Doherty, Simon Battle, Mark 2016-09-21 application/pdf https://ueaeprints.uea.ac.uk/id/eprint/60772/ https://ueaeprints.uea.ac.uk/id/eprint/60772/1/Published_manuscript.pdf https://doi.org/10.5194/acp-16-11733-2016 en eng https://ueaeprints.uea.ac.uk/id/eprint/60772/1/Published_manuscript.pdf Trudinger, Cathy M., Fraser, Paul J., Etheridge, David M., Sturges, William T., Vollmer, Martin K., Rigby, Matt, Martinerie, Patricia, Mühle, Jens, Worton, David R., Krummel, Paul B., Steele, L. Paul, Miller, Benjamin R., Laube, Johannes, Mani, Francis S., Rayner, Peter J., Harth, Christina M., Witrant, Emmanuel, Blunier, Thomas, Schwander, Jakob, O'Doherty, Simon and Battle, Mark (2016) Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements. Atmospheric Chemistry and Physics, 16 (18). pp. 11733-11754. ISSN 1680-7324 doi:10.5194/acp-16-11733-2016 cc_by Article PeerReviewed 2016 ftuniveastangl https://doi.org/10.5194/acp-16-11733-2016 2023-04-13T22:31:58Z Perfluorocarbons (PFCs) are very potent and long-lived greenhouse gases in the atmosphere, released predominantly during aluminium production and semiconductor manufacture. They have been targeted for emission controls under the United Nations Framework Convention on Climate Change. Here we present the first continuous records of the atmospheric abundance of CF4 (PFC-14), C2F6 (PFC-116) and C3F8 (PFC-218) from 1800 to 2014. The records are derived from high-precision measurements of PFCs in air extracted from polar firn or ice at six sites (DE08, DE08-2, DSSW20K, EDML, NEEM and South Pole) and air archive tanks and atmospheric air sampled from both hemispheres. We take account of the age characteristics of the firn and ice core air samples and demonstrate excellent consistency between the ice core, firn and atmospheric measurements. We present an inversion for global emissions from 1900 to 2014. We also formulate the inversion to directly infer emission factors for PFC emissions due to aluminium production prior to the 1980s. We show that 19th century atmospheric levels, before significant anthropogenic influence, were stable at 34.1 ± 0.3 ppt for CF4 and below detection limits of 0.002 and 0.01 ppt for C2F6 and C3F8, respectively. We find a significant peak in CF4 and C2F6 emissions around 1940, most likely due to the high demand for aluminium during World War II, for example for construction of aircraft, but these emissions were nevertheless much lower than in recent years. The PFC emission factors for aluminium production in the early 20th century were significantly higher than today but have decreased since then due to improvements and better control of the smelting process. Mitigation efforts have led to decreases in emissions from peaks in 1980 (CF4) or early-to-mid-2000s (C2F6 and C3F8) despite the continued increase in global aluminium production; however, these decreases in emissions appear to have recently halted. We see a temporary reduction of around 15 % in CF4 emissions in 2009, presumably ... Article in Journal/Newspaper ice core South pole University of East Anglia: UEA Digital Repository South Pole Atmospheric Chemistry and Physics 16 18 11733 11754
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collection University of East Anglia: UEA Digital Repository
op_collection_id ftuniveastangl
language English
description Perfluorocarbons (PFCs) are very potent and long-lived greenhouse gases in the atmosphere, released predominantly during aluminium production and semiconductor manufacture. They have been targeted for emission controls under the United Nations Framework Convention on Climate Change. Here we present the first continuous records of the atmospheric abundance of CF4 (PFC-14), C2F6 (PFC-116) and C3F8 (PFC-218) from 1800 to 2014. The records are derived from high-precision measurements of PFCs in air extracted from polar firn or ice at six sites (DE08, DE08-2, DSSW20K, EDML, NEEM and South Pole) and air archive tanks and atmospheric air sampled from both hemispheres. We take account of the age characteristics of the firn and ice core air samples and demonstrate excellent consistency between the ice core, firn and atmospheric measurements. We present an inversion for global emissions from 1900 to 2014. We also formulate the inversion to directly infer emission factors for PFC emissions due to aluminium production prior to the 1980s. We show that 19th century atmospheric levels, before significant anthropogenic influence, were stable at 34.1 ± 0.3 ppt for CF4 and below detection limits of 0.002 and 0.01 ppt for C2F6 and C3F8, respectively. We find a significant peak in CF4 and C2F6 emissions around 1940, most likely due to the high demand for aluminium during World War II, for example for construction of aircraft, but these emissions were nevertheless much lower than in recent years. The PFC emission factors for aluminium production in the early 20th century were significantly higher than today but have decreased since then due to improvements and better control of the smelting process. Mitigation efforts have led to decreases in emissions from peaks in 1980 (CF4) or early-to-mid-2000s (C2F6 and C3F8) despite the continued increase in global aluminium production; however, these decreases in emissions appear to have recently halted. We see a temporary reduction of around 15 % in CF4 emissions in 2009, presumably ...
format Article in Journal/Newspaper
author Trudinger, Cathy M.
Fraser, Paul J.
Etheridge, David M.
Sturges, William T.
Vollmer, Martin K.
Rigby, Matt
Martinerie, Patricia
Mühle, Jens
Worton, David R.
Krummel, Paul B.
Steele, L. Paul
Miller, Benjamin R.
Laube, Johannes
Mani, Francis S.
Rayner, Peter J.
Harth, Christina M.
Witrant, Emmanuel
Blunier, Thomas
Schwander, Jakob
O'Doherty, Simon
Battle, Mark
spellingShingle Trudinger, Cathy M.
Fraser, Paul J.
Etheridge, David M.
Sturges, William T.
Vollmer, Martin K.
Rigby, Matt
Martinerie, Patricia
Mühle, Jens
Worton, David R.
Krummel, Paul B.
Steele, L. Paul
Miller, Benjamin R.
Laube, Johannes
Mani, Francis S.
Rayner, Peter J.
Harth, Christina M.
Witrant, Emmanuel
Blunier, Thomas
Schwander, Jakob
O'Doherty, Simon
Battle, Mark
Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements
author_facet Trudinger, Cathy M.
Fraser, Paul J.
Etheridge, David M.
Sturges, William T.
Vollmer, Martin K.
Rigby, Matt
Martinerie, Patricia
Mühle, Jens
Worton, David R.
Krummel, Paul B.
Steele, L. Paul
Miller, Benjamin R.
Laube, Johannes
Mani, Francis S.
Rayner, Peter J.
Harth, Christina M.
Witrant, Emmanuel
Blunier, Thomas
Schwander, Jakob
O'Doherty, Simon
Battle, Mark
author_sort Trudinger, Cathy M.
title Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements
title_short Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements
title_full Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements
title_fullStr Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements
title_full_unstemmed Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements
title_sort atmospheric abundance and global emissions of perfluorocarbons cf4, c2f6 and c3f8 since 1800 inferred from ice core, firn, air archive and in situ measurements
publishDate 2016
url https://ueaeprints.uea.ac.uk/id/eprint/60772/
https://ueaeprints.uea.ac.uk/id/eprint/60772/1/Published_manuscript.pdf
https://doi.org/10.5194/acp-16-11733-2016
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op_relation https://ueaeprints.uea.ac.uk/id/eprint/60772/1/Published_manuscript.pdf
Trudinger, Cathy M., Fraser, Paul J., Etheridge, David M., Sturges, William T., Vollmer, Martin K., Rigby, Matt, Martinerie, Patricia, Mühle, Jens, Worton, David R., Krummel, Paul B., Steele, L. Paul, Miller, Benjamin R., Laube, Johannes, Mani, Francis S., Rayner, Peter J., Harth, Christina M., Witrant, Emmanuel, Blunier, Thomas, Schwander, Jakob, O'Doherty, Simon and Battle, Mark (2016) Atmospheric abundance and global emissions of perfluorocarbons CF4, C2F6 and C3F8 since 1800 inferred from ice core, firn, air archive and in situ measurements. Atmospheric Chemistry and Physics, 16 (18). pp. 11733-11754. ISSN 1680-7324
doi:10.5194/acp-16-11733-2016
op_rights cc_by
op_doi https://doi.org/10.5194/acp-16-11733-2016
container_title Atmospheric Chemistry and Physics
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