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Investigating atmospheric photochemistry in the Johannesburg-Pretoria megacity using a box model

dc.contributor.authorLourens, Alexander S.M.
dc.contributor.authorBeukes, J. Paul
dc.contributor.authorVan Zyl, Pieter G.
dc.contributor.authorButler, Tim M.
dc.contributor.authorFourie, Gerhard D.
dc.contributor.authorLawrence, Mark G.
dc.contributor.researchID10092390 - Beukes, Johan Paul
dc.contributor.researchID10710361 - Van Zyl, Pieter Gideon
dc.contributor.researchID13097628 - Lourens, Alexandra Susanna Maritz
dc.date.accessioned2016-04-15T12:13:31Z
dc.date.available2016-04-15T12:13:31Z
dc.date.issued2016
dc.description.abstractUrban air pollution has become a major concern over the past decades. One of the largest conurbations in Sub-Saharan Africa is developed around the cities of Johannesburg and Pretoria (Jhb-Pta megacity). In this study, a photochemical box model with a detailed representation of ozone (O3) formation chemistry was used to investigate the state of current air quality and photochemical processes in the Jhb-Pta megacity, as well as scenarios that could possibly mitigate air pollution. Results indicated that the Jhb-Pta megacity is within a VOC-limited (or NOx-saturated) regime. Major sources of NOx include transport from the Mpumalanga Highveld and local traffic emissions. O3 levels in the Jhb-Pta megacity will be more effectively reduced if VOC (volatile organic compound) emissions are decreased. A reduction of NOx emissions leads to an increase in O3 because of a decrease in titration through the reaction with NO. The same effect was observed in various cities worldwide where O3 levels increased when NOx emissions were reduced during emission control strategies. The effect of reducing vehicular emissions in the Jhb-Pta megacity on the production of O3 was also investigated. A significant increase of approximately 23 ppb O3 was observed when emissions of VOCs, NOx and CO were reduced by changing from Euro-0 to Euro-3 vehicles. It is therefore recommended that VOC emissions are decreased together with the implementation of Euro-3 and cleaner vehicles in the futureen_US
dc.description.sponsorshipSasol Research & Development; National Research Foundation, South Africaen_US
dc.identifier.citationLourens, A.S.M. et al. 2016. Investigating atmospheric photochemistry in the Johannesburg-Pretoria megacity using a box model. South African journal of science, 112 (1/2):1-11. [https://doi.org/10.17159/10.17159/sajs.2016/2015-0169]en_US
dc.identifier.issn0038-2353
dc.identifier.issn1996-7489 (Online)
dc.identifier.urihttp://hdl.handle.net/10394/16946
dc.identifier.urihttps://doi.org/10.17159/10.17159/sajs.2016/2015-0169
dc.identifier.urihttps://www.sajs.co.za/article/view/4158
dc.language.isoenen_US
dc.publisherASSAfen_US
dc.subjectMegacitiesen_US
dc.subjectAir pollutionen_US
dc.subjectPhotochemical box modelen_US
dc.subjectOzoneen_US
dc.subjectNOxen_US
dc.titleInvestigating atmospheric photochemistry in the Johannesburg-Pretoria megacity using a box modelen_US
dc.typeArticleen_US

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