Preparation of polydopamine-coated TiO2 composites for photocatalytic removal of gaseous ammonia under 405 nm violet-blue lightopen access
- Authors
- Pak, Seo-Hyun; Park, Jung Hoon; Park, Chan-gyu
- Issue Date
- Jul-2022
- Publisher
- 한국화학공학회
- Keywords
- TiO2; Polydopamine Layer; Photocatalytic Decomposition of Ammonia; 405 nm LED Light
- Citation
- Korean Journal of Chemical Engineering, v.39, no.7, pp 1863 - 1871
- Pages
- 9
- Indexed
- SCIE
SCOPUS
KCI
- Journal Title
- Korean Journal of Chemical Engineering
- Volume
- 39
- Number
- 7
- Start Page
- 1863
- End Page
- 1871
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/2910
- DOI
- 10.1007/s11814-022-1122-3
- ISSN
- 0256-1115
1975-7220
- Abstract
- Although photocatalytic reactions using the ultraviolet (UV) range (particularly UV B (280-320 nm) wavelengths) is well-established, the photocatalytic effect of longer wavelengths (especially that of UVA (>= 380 nm) and visible light (>= 400 nm)) have only recently been studied and utilized for environmental applications. In this work, we coated polydopamine (PDA) and TiO2 on a support and investigated the synergistic effects of the corresponding composites for the photocatalytic removal of gaseous ammonia under 405 nm violet-blue light. The PDA layer with TiO2 was covalently attached on a ceramic ball using the drop-casting method. The roughness and functional groups of the TiO2-PDA coated ball surfaces were verified using an infrared imaging microscope and field emission scanning electron microscope (FE-SEM). The photocatalytic activity of the obtained hybrid TiO2-PDA coated ball for the removal of ammonia was investigated using a UV C and 405 nm LED lamp at 24 degrees C. The results showed that both the TiO2 (control sample) and TiO2-PDA coated balls successfully removed ammonia under similar experimental conditions with the 254 nm UV C lamp. Notably, the TiO2-PDA coated ball exhibited an enhanced ammonia removal efficiency of 72% under 405 nm LED light irradiation. Thus, the TiO2-PDA coated ball is a promising indoor air cleaning technique under LED light irradiation.
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Collections - College of Engineering > Department of Chemical and Biochemical Engineering > 1. Journal Articles

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