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- W3198881221 endingPage "132104" @default.
- W3198881221 startingPage "132104" @default.
- W3198881221 abstract "Recently, the heterogeneous advanced reduction processes (ARPs) for bromate (BrO3-) degradation have attracted considerable attention due to its stable performance and easy combination with UV disinfection. In this study, a UV/TiO2-Bi advanced reduction process (ARP) was established for BrO3- removal without adding external sacrificial agents. In the UV/TiO2-Bi ARP, Bi nanoparticles (NPs) doped on the TiO2 acted as hole trapping centers, while TiO2 NPs were used as reduction centers for the reduction of BrO3-, which enhanced the charge carrier separation. The UV/TiO2-Bi-1% ARP exhibited the highest BrO3- removal rate without the addition of sacrificial agents in the reaction solution compared to UV/TiO2 ARP and the UV/TiO2-Bi ARP at other Bi/Ti ratios. The result of 72% removal of 200 µg/L BrO3- at 60 min by 0.2 g/L TiO2-Bi-1% in tap water at pH 6.8 and 7.71 mg/L dissolved oxygen (DO) demonstrates the promising potential of the UV/TiO2-Bi ARP for the removal of BrO3- in practical applications. Compared to the 99.5% removal in deionized (DI) water at 60 min, lower BrO3- reduction in tap water was likely attributed to the consumption of photo-generated electrons by NO3– and the adsorption of natural organic matter on the surface of TiO2-Bi-1% nanocomposites. The study provides not only a novel BrO3- removal system with good photo-reduction performance, but also some guidance for the influence of constituents in raw water on the treatment of BrO3-." @default.
- W3198881221 created "2021-09-13" @default.
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- W3198881221 date "2022-02-01" @default.
- W3198881221 modified "2023-10-16" @default.
- W3198881221 title "Advanced reduction of bromate by UV/TiO2-Bi process without external sacrificial agents: Mechanism and applications" @default.
- W3198881221 cites W153570576 @default.
- W3198881221 cites W1965674798 @default.
- W3198881221 cites W1974150923 @default.
- W3198881221 cites W1978326768 @default.
- W3198881221 cites W1978422337 @default.
- W3198881221 cites W1981166326 @default.
- W3198881221 cites W1986011589 @default.
- W3198881221 cites W2001495107 @default.
- W3198881221 cites W2006261482 @default.
- W3198881221 cites W2007202295 @default.
- W3198881221 cites W2008468921 @default.
- W3198881221 cites W2013742361 @default.
- W3198881221 cites W2016613982 @default.
- W3198881221 cites W2018712783 @default.
- W3198881221 cites W2018776679 @default.
- W3198881221 cites W2025521668 @default.
- W3198881221 cites W2030487083 @default.
- W3198881221 cites W2030488692 @default.
- W3198881221 cites W2038217698 @default.
- W3198881221 cites W2043695984 @default.
- W3198881221 cites W2055916458 @default.
- W3198881221 cites W2064060218 @default.
- W3198881221 cites W2064443079 @default.
- W3198881221 cites W2069661857 @default.
- W3198881221 cites W2076736437 @default.
- W3198881221 cites W2079702653 @default.
- W3198881221 cites W2082281150 @default.
- W3198881221 cites W2083237286 @default.
- W3198881221 cites W2085917799 @default.
- W3198881221 cites W2110257009 @default.
- W3198881221 cites W2136291684 @default.
- W3198881221 cites W2137751240 @default.
- W3198881221 cites W2155294299 @default.
- W3198881221 cites W2195720567 @default.
- W3198881221 cites W2272979899 @default.
- W3198881221 cites W2302272091 @default.
- W3198881221 cites W2318731439 @default.
- W3198881221 cites W2328128232 @default.
- W3198881221 cites W2338077860 @default.
- W3198881221 cites W2399929481 @default.
- W3198881221 cites W2414998833 @default.
- W3198881221 cites W2514481927 @default.
- W3198881221 cites W2536592366 @default.
- W3198881221 cites W2549945909 @default.
- W3198881221 cites W2579783898 @default.
- W3198881221 cites W2740701705 @default.
- W3198881221 cites W2756775282 @default.
- W3198881221 cites W2790310324 @default.
- W3198881221 cites W2792964813 @default.
- W3198881221 cites W2796235465 @default.
- W3198881221 cites W2807091655 @default.
- W3198881221 cites W2883398390 @default.
- W3198881221 cites W2899821813 @default.
- W3198881221 cites W2900136551 @default.
- W3198881221 cites W2902662646 @default.
- W3198881221 cites W2919217919 @default.
- W3198881221 cites W2919612750 @default.
- W3198881221 cites W2920780420 @default.
- W3198881221 cites W2924476356 @default.
- W3198881221 cites W2942832961 @default.
- W3198881221 cites W2943892438 @default.
- W3198881221 cites W2982794543 @default.
- W3198881221 cites W2986138293 @default.
- W3198881221 cites W3003112108 @default.
- W3198881221 cites W3015815459 @default.
- W3198881221 cites W3023666029 @default.
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- W3198881221 cites W3083111444 @default.
- W3198881221 cites W3110680033 @default.
- W3198881221 cites W3115561428 @default.
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- W3198881221 doi "https://doi.org/10.1016/j.cej.2021.132104" @default.
- W3198881221 hasPublicationYear "2022" @default.
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