Triboelectric nanogenerators for enhanced degradation of antibiotics via external electric field. (March 2022)
- Record Type:
- Journal Article
- Title:
- Triboelectric nanogenerators for enhanced degradation of antibiotics via external electric field. (March 2022)
- Main Title:
- Triboelectric nanogenerators for enhanced degradation of antibiotics via external electric field
- Authors:
- Mo, Jilong
Liu, Yanhua
Fu, Qiu
Cai, Chenchen
Lu, Yanxu
Wu, Wanhai
Zhao, Zhenxia
Song, Hainong
Wang, Shuangfei
Nie, Shuangxi - Abstract:
- Abstract: Using clean and random energy to solve the problem of antibiotic water pollution is an effective way to achieve sustainable development of the energy and environment. Wave energy in the aeration tank of aerobic biological technology is often ignored, resulting in serious energy waste. Metal-organic frameworks have been widely explored in the fields of energy utilization and environmental remediation. However, the photocatalytic efficiency is limited by the recombination of electrons and holes. In this work, a crowned triboelectric nanogenerator (C-TENG) was developed to enhance photocatalytic efficiency for degrading antibiotics. C-TENG converts wave energy in the aeration tank into electricity. An external electric field could be generated between two electrodes, which can promote the effective separation of photogenerated electrons and holes. Driven by the water wave with the acceleration of 5 m/s 2, the removal efficiency of tetracycline could reach 95.89% within 80 min. The presence of the external electric field could generate more superoxide radicals (·O2 - ), hydroxyl radicals (·OH) and holes (h + ), which plays an important role in improving photocatalytic efficiency. This work proposes an efficient, environmentally friendly and low-cost antibiotic degradation method, providing an effective way to purify the water. Graphical Abstract: ga1 Highlights: A self-powered photocatalytic degradation system is proposed. The self-powered photocatalytic system has aAbstract: Using clean and random energy to solve the problem of antibiotic water pollution is an effective way to achieve sustainable development of the energy and environment. Wave energy in the aeration tank of aerobic biological technology is often ignored, resulting in serious energy waste. Metal-organic frameworks have been widely explored in the fields of energy utilization and environmental remediation. However, the photocatalytic efficiency is limited by the recombination of electrons and holes. In this work, a crowned triboelectric nanogenerator (C-TENG) was developed to enhance photocatalytic efficiency for degrading antibiotics. C-TENG converts wave energy in the aeration tank into electricity. An external electric field could be generated between two electrodes, which can promote the effective separation of photogenerated electrons and holes. Driven by the water wave with the acceleration of 5 m/s 2, the removal efficiency of tetracycline could reach 95.89% within 80 min. The presence of the external electric field could generate more superoxide radicals (·O2 - ), hydroxyl radicals (·OH) and holes (h + ), which plays an important role in improving photocatalytic efficiency. This work proposes an efficient, environmentally friendly and low-cost antibiotic degradation method, providing an effective way to purify the water. Graphical Abstract: ga1 Highlights: A self-powered photocatalytic degradation system is proposed. The self-powered photocatalytic system has a high photocatalytic efficiency. External electric field plays a significant role in the photocatalytic reaction. A coronal triboelectric nanogenerators convert wave energy in the aeration tank into electricity. … (more)
- Is Part Of:
- Nano energy. Volume 93(2022)
- Journal:
- Nano energy
- Issue:
- Volume 93(2022)
- Issue Display:
- Volume 93, Issue 2022 (2022)
- Year:
- 2022
- Volume:
- 93
- Issue:
- 2022
- Issue Sort Value:
- 2022-0093-2022-0000
- Page Start:
- Page End:
- Publication Date:
- 2022-03
- Subjects:
- Triboelectric nanogenerator -- External electric field -- Photocatalysis -- Tetracycline degradation -- Environmental protection
Nanoscience -- Periodicals
Nanotechnology -- Periodicals
Nanostructured materials -- Periodicals
Power resources -- Technological innovations -- Periodicals
Nanoscience
Nanostructured materials
Nanotechnology
Power resources -- Technological innovations
Periodicals
621.042 - Journal URLs:
- http://www.sciencedirect.com/science/journal/22112855 ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.nanoen.2021.106842 ↗
- Languages:
- English
- ISSNs:
- 2211-2855
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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- British Library DSC - BLDSS-3PM
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