| Literature DB >> 29241154 |
Bing Sun1, Yanbin Xin2, Xiaomei Zhu2, Zhiying Gao2, Zhiyu Yan2, Takayuki Ohshima3.
Abstract
In this work, the bacterial inactivation effects of shock waves, ultraviolet (UV) light, and electric field produced by high-voltage pulsed discharge in liquid with needle-plate configurations were studied. The contributions of each effect on the bacterial killing ratio in the discharge process were obtained individually by modifying reactor type and usage of glass, quartz, and black balloons. The results showed that the location from the discharge center axis significantly influenced the effects of shock waves and electric fields, although the effect of UV light was not affected by the location in the reactor. The effects of shock waves and electric fields were improved by decreasing the distance from the discharge center axis. Under this experimental condition, the effects of shock waves, UV light, and electric fields produced by discharges on bacterial inactivation were approximately 36.1%, 30.8%, 12.7%, respectively. Other contributions seemed to be due to activated species.Entities:
Keywords: Bacterial killing; Electric fields; Pulsed discharge in water; Shock waves; Ultraviolet light
Mesh:
Year: 2017 PMID: 29241154 DOI: 10.1016/j.bioelechem.2017.11.011
Source DB: PubMed Journal: Bioelectrochemistry ISSN: 1567-5394 Impact factor: 5.373