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Microbial inactivation using plasma-activated water obtained by gliding electric discharges

机译:使用通过滑动放电获得的等离子体活化水使微生物失活

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摘要

Aim: To evaluate the microbial disinfection efficacy of a plasmachemical solu-tion obtained by the activation of water with gliding electric discharges.Methods and Results: Distilled water was activated for 5 min by a nonthermalquenched plasma of the glidarc type operating in humid air and at atmosphericpressure. The plasma-activated water (PAW) was then used to treat planktonicand adherent cells of Staphylococcus epidermidis, Leuconostoc mesenteroides (asmodels of Gram-positive bacteria), Hafnia alvei (a Gram-negative bacteria) andSaccharomyces cerevisiae (as a yeast model). The treatments were less efficienton adherent cells than on planktonic cells in the case of bacteria, but not ofS. cerevisiae. Inactivation was more effective for bacteria than for the yeast.Conclusions: Significant reductions in microbial populations were achieved inall cases, demonstrating the effectiveness of this new approach to treat conta-minated media.Significance and Impact of the Study: PAW is a promising solution withpotential application to the decontamination of equipment and surfaces.
机译:目的:评估通过滑行放电活化水而获得的等离子化学溶液的微生物消毒效果。方法和结果:在潮湿空气中,在潮湿环境下,通过非热淬灭的glidarc型等离子体将蒸馏水活化5分钟。气压。然后将血浆活化水(PAW)用于处理表皮葡萄球菌,中肠白斑球菌(革兰氏阳性细菌的模型),Hafnia alvei(革兰氏阴性细菌的模型)和啤酒酵母(作为酵母模型)的浮游和粘附细胞。对于细菌,对贴壁细胞的处理效率不如对浮游细胞有效,但对S则不是。啤酒酵母。灭活对细菌的作用比对酵母的作用更有效。结论:在所有情况下,微生物种群的数量均显着减少,证明了这种新方法可有效处理受污染的介质。研究的意义和影响:PAW是一种有潜力的有前途的解决方案应用于设备和表面的去污。

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