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Microsecond-Pulsed Dielectric Barrier Discharge Plasma-Treated Mist for Inactivation of Escherichia coli In Vitro

机译:微秒脉冲电介质阻挡放电等离子体处理雾灭活大肠杆菌的体外

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In this paper, we demonstrate a plasma misting system capable of inactivating Escherichia coli O157:H7 (E.coli) in a 4 ft(3) (approximately 100 L) volume with potential for future use in decontaminating fresh produce. Water droplets, with an average diameter of 5 mu m, are generated via ultrasonic nebulizers and carried by compressed air. These micrometer-sized droplets flowthrough a set of three cylindrical, microsecond-pulsed dielectric barrier discharges (DBDs). We observe the Coulombic fission of droplets up to a critical radius into submicrometer droplets (Sauter mean of approximately 0.3 mu m), measured by a laser diffraction analyzer. E.coli, on agar plates, is inactivated by this mist in a time and flowrate-dependent manner. We hypothesize that the observed antimicrobial effect correlates with the concentration of submicrometer droplets. The observed formation of submicrometer droplets from this volumetric DBD is similar to the bursting of droplets observed with electrospray devices using corona discharges.
机译:在本文中,我们演示了一种等离子雾化系统,该系统能够灭活4 ft(3)(约100 L)体积的大肠杆菌O157:H7(E.coli),并有潜力在未来用于净化新鲜农产品。通过超声波雾化器产生平均直径为5微米的水滴,并由压缩空气携带。这些微米级的液滴流经一组三个圆柱形的微秒脉冲介电势垒放电(DBD)。我们观察到通过激光衍射分析仪测量到的临界半径的液滴的库仑裂变为亚微米级液滴(苏特平均值约为0.3微米)。琼脂平板上的大肠杆菌被这种雾以时间和流量依赖的方式灭活。我们假设观察到的抗菌作用与亚微米液滴的浓度相关。从该体积DBD观察到的亚微米液滴的形成类似于使用电晕放电装置使用电喷雾装置观察到的液滴破裂。

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