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Peroxy acetyl nitrate (PAN) measurements at northern midlatitude mountain sites in April: A constraint on continental source-receptor relationships

Publication ,  Journal Article
Fiore, AM; Fischer, EV; Milly, GP; Pandey Deolal, S; Wild, O; Jaffe, DA; Staehelin, J; Clifton, OE; Bergmann, D; Collins, W; Dentener, F ...
Published in: Atmospheric Chemistry and Physics
October 28, 2018

Abundance-based model evaluations with observations provide critical tests for the simulated mean state in models of intercontinental pollution transport, and under certain conditions may also offer constraints on model responses to emission changes. We compile multiyear measurements of peroxy acetyl nitrate (PAN) available from five mountaintop sites and apply them in a proof-of-concept approach that exploits an ensemble of global chemical transport models (HTAP1) to identify an observational emergent constraint. In April, when the signal from anthropogenic emissions on PAN is strongest, simulated PAN at northern midlatitude mountaintops correlates strongly with PAN source-receptor relationships (the response to 20% reductions in precursor emissions within northern midlatitude continents; hereafter, SRRs). This finding implies that PAN measurements can provide constraints on PAN SRRs by limiting the SRR range to that spanned by the subset of models simulating PAN within the observed range. In some cases, regional anthropogenic volatile organic compound (AVOC) emissions, tracers of transport from different source regions, and SRRs for ozone also correlate with PAN SRRs. Given the large observed interannual variability in the limited available datasets, establishing strong constraints will require matching meteorology in the models to the PAN measurements. Application of this evaluation approach to the chemistry-climate models used to project changes in atmospheric composition will require routine, long-term mountaintop PAN measurements to discern both the climatological SRR signal and its interannual variability.

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Published In

Atmospheric Chemistry and Physics

DOI

EISSN

1680-7324

ISSN

1680-7316

Publication Date

October 28, 2018

Volume

18

Issue

20

Start / End Page

15345 / 15361

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3702 Climate change science
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences
  • 0201 Astronomical and Space Sciences
 

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Fiore, A. M., Fischer, E. V., Milly, G. P., Pandey Deolal, S., Wild, O., Jaffe, D. A., … Zeng, G. (2018). Peroxy acetyl nitrate (PAN) measurements at northern midlatitude mountain sites in April: A constraint on continental source-receptor relationships. Atmospheric Chemistry and Physics, 18(20), 15345–15361. https://doi.org/10.5194/acp-18-15345-2018
Fiore, A. M., E. V. Fischer, G. P. Milly, S. Pandey Deolal, O. Wild, D. A. Jaffe, J. Staehelin, et al. “Peroxy acetyl nitrate (PAN) measurements at northern midlatitude mountain sites in April: A constraint on continental source-receptor relationships.” Atmospheric Chemistry and Physics 18, no. 20 (October 28, 2018): 15345–61. https://doi.org/10.5194/acp-18-15345-2018.
Fiore AM, Fischer EV, Milly GP, Pandey Deolal S, Wild O, Jaffe DA, et al. Peroxy acetyl nitrate (PAN) measurements at northern midlatitude mountain sites in April: A constraint on continental source-receptor relationships. Atmospheric Chemistry and Physics. 2018 Oct 28;18(20):15345–61.
Fiore, A. M., et al. “Peroxy acetyl nitrate (PAN) measurements at northern midlatitude mountain sites in April: A constraint on continental source-receptor relationships.” Atmospheric Chemistry and Physics, vol. 18, no. 20, Oct. 2018, pp. 15345–61. Scopus, doi:10.5194/acp-18-15345-2018.
Fiore AM, Fischer EV, Milly GP, Pandey Deolal S, Wild O, Jaffe DA, Staehelin J, Clifton OE, Bergmann D, Collins W, Dentener F, Doherty RM, Duncan BN, Fischer B, Gilge S, Hess PG, Horowitz LW, Lupu A, MacKenzie IA, Park R, Ries L, Sanderson MG, Schultz MG, Shindell DT, Steinbacher M, Stevenson DS, Szopa S, Zellweger C, Zeng G. Peroxy acetyl nitrate (PAN) measurements at northern midlatitude mountain sites in April: A constraint on continental source-receptor relationships. Atmospheric Chemistry and Physics. 2018 Oct 28;18(20):15345–15361.

Published In

Atmospheric Chemistry and Physics

DOI

EISSN

1680-7324

ISSN

1680-7316

Publication Date

October 28, 2018

Volume

18

Issue

20

Start / End Page

15345 / 15361

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3702 Climate change science
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences
  • 0201 Astronomical and Space Sciences