Ketorolac removal through photoelectrocatalysis using TiO2 nanotubes in water system

被引:2
作者
Rodriguez, Sebastian Oyarzabal [1 ]
Coy-Aceves, Luis Erick [1 ]
Morales, Jesus Eduardo Daniel [1 ]
Sanchez-Salas, Jose Luis [1 ]
Martinez-Huitle, Carlos Alberto [2 ]
Ramirez-Rodrigues, Milena Maria [3 ]
Cerro-Lopez, Monica [1 ]
机构
[1] Univ Las Amer Puebla, Chem & Biol Sci Dept, Electrocatalysis Lab, Sta Catarina Martir S-N, Cholula 72810, Puebla, Mexico
[2] Univ Fed Rio Grande do Norte, Inst Chem, Renewable Energies & Environm Sustainabil Res Grp, Campus Univ,Ave Salgado Filho 3000, BR-59078970 Natal, RN, Brazil
[3] Tecnol Monterrey, Dept Bioengn, Reserva Terr Atlixcayotl, Via Atlixcayotl 5718, Puebla 72453, Mexico
关键词
Titanium dioxide nanotubes; TiO2; nanotubes; Ketorolac; Emerging pollutants; Degradation; Photoelectrocatalysis; NONSTEROIDAL ANTIINFLAMMATORY DRUG; EMERGING CONTAMINANTS; PHARMACEUTICAL CONTAMINANTS; PHOTOCATALYTIC DEGRADATION; OXIDATIVE STRESS; GRAPHENE OXIDE; TROMETHAMINE; GENOTOXICITY; ELIMINATION; OZONE;
D O I
10.1007/s11356-023-30510-y
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Ketorolac, a highly persistent NSAID of environmental concern, was significantly removed from water (80% removal) through photoelectrocatalysis where titanium dioxide nanotubes prepared by Ti foil electrochemical anodization at 30 V were used as photoanodes. Fifteen milligrams per liter of ketorolac solutions in a 0.05 M Na2SO4 aqueous medium was subjected to irradiation from a 365-nm light with an intensity of 1 mWcm(-2) and under an applied potential of 1.3 V (vs. Hg/Hg2SO4/sat.K2SO4) at pH 6.0. When each process (photo and electrocatalysis) was carried out separately, less than 20% drug removal was achieved as monitored through UV-vis spectrophotometry. Through scavenging experiments, direct oxidation on the photogenerated holes and oxidation by hydroxyl radical formation were found to play a key role on ketorolac's degradation. Chemical oxygen demand (COD) analyses also showed a significant COD decreased (68%) since the initial COD value was 31.3 mg O-2/L and the final COD value was 10.1 mg O-2/L. A 48% mineralization was also achieved, as shown by total organic carbon (TOC) analyses. These results showed that electrodes based on titania nanotubes are a promising alternative material for simultaneous photocatalytic and electrocatalytic processes in water remediation.
引用
收藏
页码:118536 / 118544
页数:9
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