Baoping Zhang
Xiamen University
7 Papers
28 Citations
Baoping Zhang is an academic researcher from Xiamen University. The author has contributed to research in topics: Chemistry & Ultraviolet. The author has an hindex of 4, co-authored 7 publications.
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Papers
Effects of single and combined UV-LEDs on inactivation and subsequent reactivation of E. coli in water disinfection.
TL;DR: The variation principle between the single and combined UVB/UVC-LEDs in inactivation efficiency, inhibition of reactivation, synergistic effect and electrical energy consumption in treatment of E. coli is shown, which is useful for the reasonable exploitation of UV- LEDs in water disinfection systems.
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Comparison of the performance of pulsed and continuous UVC-LED irradiation in the inactivation of bacteria.
TL;DR: The comparison between PL and CW in UVC-LED irradiation for inactivating E. coli bacteria was reported and firstly revealed the photoreactivation of the E.Âcoli after the PL U VC-LEDs irradiation.
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Comparison of UV-LED photolytic and UV-LED/TiO2 photocatalytic disinfection for Escherichia coli in water
TL;DR: In this paper, the authors used Escherichia coli (E. coli) as a model microbe and compared the performance of photolytic and photocatalytic disinfection with UV-LED/TiO2.
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Efficacy of UVC-LED in water disinfection on Bacillus species with consideration of antibiotic resistance issue
Liang Shen,Tiffany Maria Griffith,Paul Onkundi Nyangaresi,Yi Qin,Xin Pang,Guolong Chen,Minglun Li,Yinghua Lu,Baoping Zhang +8 more
TL;DR: This study highlights the merits of UVC-LED to effectively inactivate TRB in a prompt, energy-efficient and resistance-reducing way, while future study on TRB regrowth and resistance resilience is needed.
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Advances in application of ultraviolet irradiation for biofilm control in water and wastewater infrastructure.
TL;DR: In this paper, a review of the up-to-date studies about applying UV to control biofilms in water and wastewater infrastructure is presented, and a comprehensive evaluation of the biofilm-targeted UV technologies currently used or potentially useful in water industry is provided, after comparative analyses on single/combined wavelengths, continuous/pulsed irradiation, and instant/chronic disinfection effects.
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