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Can rapid pressure decrease induced by supercavitation efficiently eradicate Legionella pneumophila bacteria?

机译:超空化诱导的压力快速降低能否有效根除嗜肺军团菌细菌?

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The presence of Legionella pneumophila bacteria in engineered water systems can pose a significant health risk. Current prevention and outbreak treatments are cost and environmentally ineffective. Moreover they do not prevent rapid bacteria recolonization. Although cavitation was already suggested as a possible water treatment technique a systematic study has not yet been performed. In the present experimental campaign we set out to evaluate the efficiency of removal of L. pneumophila by three types of cavitationthe most commonly used acoustic cavitation, the aggressive developed hydrodynamic cavitation, and the supercavitation. We show that it is probably not the pressure peaks or the high local temperatures that cause the eradication of the bacteria, but the rapid pressure decrease which was initiated in supercavitating flow regime. Results of the study show promising ground for further optimization of a methodology for L. pneumophila removal by cavitation.
机译:在工程用水系统中,军团菌嗜肺军团菌的存在会构成重大的健康风险。当前的预防和暴发治疗成本高昂且对环境不利。而且,它们不能防止细菌快速繁殖。尽管已经建议将气蚀作为一种可能的水处理技术,但尚未进行系统的研究。在目前的实验活动中,我们着手评估通过以下三种类型的空化作用去除肺炎链球菌的效率:最常用的声空化,积极发展的流体动力空化和超空化。我们表明,造成根除细菌的可能不是压力峰值或较高的局部温度,而是在超空化流态中引起的压力快速下降。研究结果显示了通过空化进一步优化嗜肺乳杆菌的方法的前景。

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