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References
1. Akingunola et al., A chemical transport model study of plume rise and particle size distribution
for the Athabasca oil sands. Atm. Chem. Phys. 18, 8667–8688 (2018)
2. J. Chen et al., Impact of urban land use and anthropogenic heat on air quality in urban environments, in Proceeding of 36th ITM on Air Pollution Modelling and Its Application, this vol.,
(2018)
3. A. Fraser et al., How important is biomass burning in Canada to mercury contamination? Atm.
Chem. Phys. 18, 7263–7286 (2018)
4. Gordon et al., A comparison of plume rise algorithms to stack plume measurements in the
Athabasca oil sands. Atm. Chem Phys. Discuss., in review (2017). https://doi.org/10.5194/
acp-2017-1093
5. P.A. Makar et al., Feedbacks between air pollution and weather, part 1: effects on weather.
Atm. Env. 115, 442–469 (2015)
6. P.A. Makar et al., Feedbacks between air pollution and weather, part 2: effects on chemistry.
Atm. Env. 115, 499–526 (2015)
7. Makar et al., Coupled chemistry-meteorology: simulations at 2.5 km resolution, in GAW report,
No 226 (2016), https://www.wmo.int/pages/prog/arep/gaw/documents/Final_GAW_226_10_
May.pdf (Baklanov et al.)
8. P.A. Makar et al., The effects of forest canopy shading and turbulence on boundary layer ozone.
Nat. Comm. (2017). https://doi.org/10.1038/ncomms15243
9. P.A. Makar et al., Estimates of exceedances of critical loads for acidifying deposition in Alberta
and Saskatchwan. Atm. Chem. Phys. 18, 9897–9927 (2018)
10. M.D. Moran et al., Particulate-matter forecasting with GEM-MACH15, a new Canadian airquality forecast model, in Air Pollution Modelling and Its Application XX, ed. by D.G. Steyn,
S.T. Rao (Springer, Dordrecht, 2010), pp. 289–292
11. C.A. Stroud et al., Impact of aircraft-derived organic gaseous and particle emissions on air
quality predictions: an Athabasca oil sands case study. Atm. Chem. Phys. 18, 13531–13545
(2018)
12. Whaley et al., Contributions of natural and anthropogenic sources to ambient ammonia in the
Athabasca oil sands and north-western Canada, Atm. Chem. Phys. 2011–2034 (2018)
13. Zhang et al., Emissions preparation and analysis for multiscale air quality modelling over the
Athabasca oil sands region of Alberta, Canada. Atm. Chem. Phys. 18, 10459–10481 (2018)
P. Makar et al.
References
1. Akingunola et al., A chemical transport model study of plume rise and particle size distribution
for the Athabasca oil sands. Atm. Chem. Phys. 18, 8667–8688 (2018)
2. J. Chen et al., Impact of urban land use and anthropogenic heat on air quality in urban environments, in Proceeding of 36th ITM on Air Pollution Modelling and Its Application, this vol.,
(2018)
3. A. Fraser et al., How important is biomass burning in Canada to mercury contamination? Atm.
Chem. Phys. 18, 7263–7286 (2018)
4. Gordon et al., A comparison of plume rise algorithms to stack plume measurements in the
Athabasca oil sands. Atm. Chem Phys. Discuss., in review (2017). https://doi.org/10.5194/
acp-2017-1093
5. P.A. Makar et al., Feedbacks between air pollution and weather, part 1: effects on weather.
Atm. Env. 115, 442–469 (2015)
6. P.A. Makar et al., Feedbacks between air pollution and weather, part 2: effects on chemistry.
Atm. Env. 115, 499–526 (2015)
7. Makar et al., Coupled chemistry-meteorology: simulations at 2.5 km resolution, in GAW report,
No 226 (2016), https://www.wmo.int/pages/prog/arep/gaw/documents/Final_GAW_226_10_
May.pdf (Baklanov et al.)
8. P.A. Makar et al., The effects of forest canopy shading and turbulence on boundary layer ozone.
Nat. Comm. (2017). https://doi.org/10.1038/ncomms15243
9. P.A. Makar et al., Estimates of exceedances of critical loads for acidifying deposition in Alberta
and Saskatchwan. Atm. Chem. Phys. 18, 9897–9927 (2018)
10. M.D. Moran et al., Particulate-matter forecasting with GEM-MACH15, a new Canadian airquality forecast model, in Air Pollution Modelling and Its Application XX, ed. by D.G. Steyn,
S.T. Rao (Springer, Dordrecht, 2010), pp. 289–292
11. C.A. Stroud et al., Impact of aircraft-derived organic gaseous and particle emissions on air
quality predictions: an Athabasca oil sands case study. Atm. Chem. Phys. 18, 13531–13545
(2018)
12. Whaley et al., Contributions of natural and anthropogenic sources to ambient ammonia in the
Athabasca oil sands and north-western Canada, Atm. Chem. Phys. 2011–2034 (2018)
13. Zhang et al., Emissions preparation and analysis for multiscale air quality modelling over the
Athabasca oil sands region of Alberta, Canada. Atm. Chem. Phys. 18, 10459–10481 (2018)
