Szczegóły publikacji

Opis bibliograficzny

Impact of use of chemical transformation modules in CALPUFF on the results of air dispersion modelling — Wpływ zastosowania modułów przemian chemicznych w modelu CALPUFF na wyniki modelowania dyspersji zanieczyszczeń w powietrzu / Robert OLENIACZ, Mateusz RZESZUTEK, Marek BOGACKI // Ecological Chemistry and Engineering = Chemia i Inżynieria Ekologiczna. S ; ISSN 1898-6196. — 2016 — vol. 23 iss. 4, s. 605–620. — Bibliogr. s. 618–620, Abstr. — Publikacja dostępna online od: 2016-12-30

Autorzy (3)

Słowa kluczowe

large combustion plantsCALPUFFsecondary inorganic aerosolsair pollution modellingatmospheric chemical transformations

Dane bibliometryczne

ID BaDAP103614
Data dodania do BaDAP2017-01-24
DOI10.1515/eces-2016-0043
Rok publikacji2016
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Creative Commons
Czasopismo/seriaEcological Chemistry and Engineering = Chemia i Inżynieria Ekologiczna, S

Abstract

Assessment of the impact on air quality for combustion sources should be carried out using advanced modelling systems with chemical transformation modules taken into account, especially for the facilities characterized by significant emission of gaseous air pollutants (including SO2). This approach increases the reliability of the obtained evaluation results by modelling the formation of secondary inorganic aerosol (SIA) in the air which can substantially contribute to PM10. This paper assesses in this regard selected chemical transformation modules (MESOPUFF, RIVAD/ARM3, ISORROPIA/RIVAD) available in the CALPUFF model (v. 6.42) and its application in the atmospheric dispersion modelling of air emissions from a coal-fired large combustion plant (LCP) not equipped with a flue gas desulphurization (FGD) system. It has been proven that consideration an additional mechanism of secondary sulfate aerosol formation in aqueous phase in the ISORROPIA/RIVAD module (AQUA option) causes a significant increase in the annual average concentration of PM10 in the air compared to the other considered options, along with the calculation variant which excludes chemical transformation mechanisms. Type of the selected chemical transformation module has no significant effect on the results of modelled NO, NO2 and NOx concentrations in the air. However, it can lead to different SO2 results, especially for annual averaged, and in some points, for the hourly averaged concentrations.

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artykuł
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Assessment of chemical transformation modules for secondary inorganic aerosol formation in CALPUFF model — Ocena modułów przemian chemicznych tworzenia się wtórnych aerozoli nieorganicznych w modelu CALPUFF / Robert OLENIACZ, Mateusz RZESZUTEK, Marek BOGACKI // Proceedings of ECOpole / Society of Ecological Chemistry and Engineering ; ISSN 1898-617X. — 2016 — vol. 10 iss. 1, s. 57–66. — Bibliogr. s. 64–65, Abstr. — ECOpole'15 Conference, Jarnoltowek, 14–16.10.2015
fragment książki
#98274Data dodania: 13.6.2016
Impact of a coal-fired CHP plant without flue gas desulfurization (FGD) system on secondary inorganic aerosol formation in air / Robert OLENIACZ, Mateusz RZESZUTEK, Marek BOGACKI // W: SEED 2016 : the international conference on the Sustainable Energy and Environment Development : Kraków, Poland, May 17th–19th, 2016 : book of abstracts / ed. Mariusz Filipowicz, Tadeusz Olkuski, Katarzyna Styszko. — Kraków : Wydawnictwo Instytutu Zrównoważonej Energetyki, 2016 + Dysk Flash. — ISBN: 978-83-944254-0-1. — S. 170. — Bibliogr. s. 170