Asghar Atif H, Ahmed Omar B, Galaly Ahmed Rida
Department of Environmental and Health Research, The Custodian of the Two Holy Mosques Institute for Hajj and Umrah Research, Umm Al-Qura University, Makkah 24381, Saudi Arabia.
Department of Engineering Science, Faculty of Community, Umm Al-Qura University, Makkah 24381, Saudi Arabia.
Membranes (Basel). 2021 Jan 9;11(1):46. doi: 10.3390/membranes11010046.
The acceleration of inactivating viable cells of Escherichia coli (), by using new direct and indirect innovative methods, is the targeted method of using an atmospheric pressure plasma jet (APPJ) operated by an AC high-voltage power source with variable frequency up to 60 kHz and voltage ranging from 2.5 to 25 kV. Discharges using dry argon (0% O) discharges and different wet argon discharges using admixtures with O/Ar ratios ranging from 0.25% to 1.5% were studied. The combined effects of dry and wet argon discharges, direct and indirect exposure using a mesh controller, and hollow magnets were studied to reach a complete bacterial inactivation in short application times. Survival curves showed that the inactivation rate increased as the wettability increased. The application of magnetized non-thermal plasma discharge with a 1.5% wetness ratio causes a fast inactivation rate of microbes on surfaces, and a dramatic decrease of the residual survival of the bacterial ratio due to an increase in the jet width and the enhanced ability of fast transport of the charges to viable cells, especially at the edge of the Petri dish. The membrane damage of mechanism factors in the activation process by APPJ is discussed.
通过使用新型直接和间接创新方法,加速灭活大肠杆菌()的活细胞,是一种靶向方法,采用由交流高压电源操作的大气压等离子体射流(APPJ),该电源频率可变高达60kHz,电压范围为2.5至25kV。研究了使用干燥氩气(0%O)放电以及使用O/Ar比率范围为0.25%至1.5%的混合物的不同湿氩气放电。研究了干燥和湿氩气放电、使用网状控制器的直接和间接暴露以及空心磁体的综合作用,以在短应用时间内实现完全细菌灭活。存活曲线表明,随着润湿性增加,失活率提高。应用湿度比为1.5%的磁化非热等离子体放电会导致表面微生物快速失活率,并且由于射流宽度增加以及电荷向活细胞快速传输能力增强,细菌比率的残余存活率会急剧下降,特别是在培养皿边缘。讨论了APPJ激活过程中机制因素的膜损伤。