Modeling of Organic Fouling in an Ultrafiltration Cell Using Different Three-Dimensional Printed Turbulence Promoters

Designing turbulence promoters with optimal geometry and using them for ultrafiltration systems has been a key challenge in mitigating membrane fouling. In this study, six different turbulence promoters were created using three-dimensional printing technology and applied in dead-end ultrafiltration....

Teljes leírás

Elmentve itt :
Bibliográfiai részletek
Szerzők: Kertész Szabolcs
Szpisják-Gulyás Nikolett
Al-Tayawi Aws Nawfal Ahmed
Huszár Gabriella
Lennert József Richárd
Csanádi József
Beszédes Sándor
Hodúr Cecilia
Szabó Tamás
László Zsuzsanna
Dokumentumtípus: Cikk
Megjelent: 2023
Sorozat:MEMBRANES (BASEL) 13 No. 3
Tárgyszavak:
doi:10.3390/membranes13030262

mtmt:33660260
Online Access:http://publicatio.bibl.u-szeged.hu/26737
Leíró adatok
Tartalmi kivonat:Designing turbulence promoters with optimal geometry and using them for ultrafiltration systems has been a key challenge in mitigating membrane fouling. In this study, six different turbulence promoters were created using three-dimensional printing technology and applied in dead-end ultrafiltration. Three-dimensional-printed (3DP) turbulence promoter configurations were integrated into a classical batch ultrafiltration cell. The effects of these configurations and the stirring speeds on the permeate filtration flux, organic rejections, and membrane resistances were investigated. The fouling control efficiency of the 3DP promoters was evaluated using two polyethersulfone membranes in a stirred ultrafiltration cell with model dairy wastewater. The Hermia and resistance-in-series models were studied to further investigate the membrane fouling mechanism. Of the Hermia models, the cake layer model best described the fouling in this membrane filtration system. It can be concluded that the 3DP turbulence promoters, combined with intense mechanical stirring, show great promise in terms of permeate flux enhancement and membrane fouling mitigation. Using a well-designed 3DP turbulence promoter improves the hydrodynamic flow conditions on the surface of the stirred membrane separation cells based on computational fluid dynamics modeling. Therefore, the factors effecting the fabrication of 3DP turbulence promoters are important, and further research should be devoted to revealing them.
Terjedelem/Fizikai jellemzők:14
ISSN:2077-0375