磁场增强冷等离子体灭菌

Q1 Medicine
Madeline A. Mackinder , Keliang Wang , Bocong Zheng , Maheshwar Shrestha , Qi Hua Fan
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引用次数: 6

摘要

冷等离子体灭菌是一种有效的医疗部件和器械灭菌方法。本文报道了利用磁化等离子体实现低温灭菌。在石英管中使用氩气和氧气的混合物产生射频介质阻挡放电。将等量的大肠杆菌涂在载玻片上,在有磁场和没有磁场的情况下,将其暴露在不同压力下的等离子体余辉中。光学发射光谱用于识别存在的等离子体种类。磁场对等离子体的强度和灭菌效率有显著的促进作用。工艺气体压力为100 mTorr,灭菌时间小于1分钟,样品温度低于32°C,最有效的处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic field enhanced cold plasma sterilization

Cold plasma sterilization offers an efficient way to sterilize medical components and instruments. This paper reports using a magnetized plasma to realize low-temperature sterilization. A radio frequency dielectric barrier discharge is created in a quartz tube using a mixture of argon and oxygen gas. A uniform amount of Escherichia coli is applied onto glass slides and exposed to the plasma afterglow at different pressures with and without a magnetic field. Optical emission spectroscopy is used to identify the plasma species present. The magnetic field significantly promotes the intensity of the plasma and the sterilization efficiency. A process gas pressure of 100 mTorr presents the most effective treatment with a sterilization time less than one minute and sample temperature below 32 °C.

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来源期刊
Clinical Plasma Medicine
Clinical Plasma Medicine MEDICINE, RESEARCH & EXPERIMENTAL-
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