Pregled bibliografske jedinice broj: 996908
Investigation of the Sulfur Dioxide Absorption in Water Droplets
Investigation of the Sulfur Dioxide Absorption in Water Droplets // Proceedings of the European Combustion Meeting – 2019
Lisabon, Portugal, 2019. str. - (poster, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)
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Naslov
Investigation of the Sulfur Dioxide Absorption in
Water Droplets
Autori
Bešenić, Tibor ; Baleta, Jakov ; Vujanović , Milan ; Pachler, Klaus ; Tatcshl, Reinhard
Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni
Izvornik
Proceedings of the European Combustion Meeting – 2019
/ - , 2019
Skup
European Combustion Meeting ECM2019
Mjesto i datum
Lisabon, Portugal, 14.04.2019. - 17.04.2019
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
desulfurization ; spray absorption ; mass transfer coefficient ; water chemistry
Sažetak
Flue gas desulfurization in spray towers is an efficient sulfur dioxide removal method for the combustion flue gases. It is based on the absorption mechanism of sulfur dioxide in droplets falling in the stream of flue gases, removing the pollutants due to concentration differences. To describe all the relevant phenomena, a lumped-parameter absorption model for the falling pure water droplet has been implemented. The main factors limiting the absorption are the mass transfer of pollutants through the gas-droplet interface and the aqueous phase chemistry in droplet. Mass transfer coefficient modeling is the most significant parameter regulating the absorption dynamic into the droplet, while the in-droplet chemistry regulates the maximum quantity of dissolved pollutants. The implemented model was used on the single droplet and compared with the available literature data. With the stricter legislation regulating the allowed emissions for marine and stationary applications, the model can be used for prediction of sulfur dioxide uptake on a single droplet scale, and as a basis for further development of the more complex sulfur dioxide absorption models.
Izvorni jezik
Engleski
Znanstvena područja
Kemijsko inženjerstvo, Strojarstvo