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Heterogeneous photocatalysis using UVA-LEDs for the removal of antibiotics and antibiotic resistant bacteria from urban wastewater treatment plant effluents.

Authors :
Biancullo, Francesco
Moreira, Nuno F.F.
Ribeiro, Ana R.
Manaia, Célia M.
Faria, Joaquim L.
Nunes, Olga C.
Castro-Silva, Sérgio M.
Silva, Adrián M.T.
Source :
Chemical Engineering Journal. Jul2019, Vol. 367, p304-313. 10p.
Publication Year :
2019

Abstract

Graphical abstract Highlights • Antibiotics, bacteria and ARB removal in secondary treated urban wastewater. • Antibiotics are efficiently oxidized by TiO 2 -photocatalysis with UVA-LEDs. • Methanol has a scavenging effect on the removal of the antibiotics. • Efficient inactivation of cultivable bacteria including those antibiotic resistant. • Bacterial regrowth is observed after 3-days storage of treated wastewater. Abstract Secondary urban wastewater samples were spiked with azithromycin (AZT), trimethoprim (TMP), ofloxacin (OFL) and sulfamethoxazole (SMX) at 100 µg L−1 to investigate the efficiency of a TiO 2 -photocatalytic treatment using UVA-LEDs. Different operating parameters were studied, such as the irradiation conditions, catalyst load and the use of methanol as carrier solvent and radical scavenger. The most efficient conditions to treat spiked urban wastewater (4 LEDs symmetrically distributed and 1.00 g L−1 of catalyst) were also assessed on the removal of the antibiotics at real concentrations, as well as on the inactivation and regrowth of bacteria after 3-day storage (total and resistant heterotrophs, Escherichia coli and enterococci). Clindamycin (CLI) was targeted when SMX was not detected. One-hour treatment was enough to reduce the analysed antibiotics to values below the detection limits and to decrease the bacterial load by 2 log-units. Bacterial regrowth was observed for total heterotrophs, after the storage of photocatalytic treated wastewater, to values close to pre-treatment. However, the antibiotic resistance percentage of such stored wastewater was always similar or lower than that of secondary urban wastewater. Thus, the potential of this process as part of the tertiary treatment is demonstrated, but conditions must be adjusted to minimize microbial regrowth. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13858947
Volume :
367
Database :
Academic Search Index
Journal :
Chemical Engineering Journal
Publication Type :
Academic Journal
Accession number :
135350595
Full Text :
https://doi.org/10.1016/j.cej.2019.02.012