用于医疗器械快速灭菌的低温等离子体装置研究
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TH777

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西安交通大学“中央高校基本科研业务费”综合交叉项目(xjj2014104)资助


Research on low-temperature plasma device for rapid sterilization of medical instruments
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    摘要:

    现有低温等离子体技术存在放电范围小、放电电压高等局限性,不适用于大尺寸医疗器械的消毒灭菌。 本文研制了一 种灭菌装置,在较低击穿电压下(大气压氦气 325 V,大气压空气 585 V)产生了大面积等离子体,且创新性地在印刷电路板上实 现了气体放电。 通过 COMSOL 等离子体仿真以及实际放电实验,同时实现了低气压与大气压环境下的均匀辉光放电,放电实 验结果表明:相对气压在-70~ -50 kPa 范围内,击穿电压值最低。 通过灭菌实验,验证了此灭菌装置产生等离子体的灭菌效 能,并对影响灭菌效果的因素进行了探究,灭菌实验结果表明:电源频率是影响灭菌效果的最关键因素,灭菌时间其次,氦气气 压对灭菌效果影响最小。 对于一定浓度的大肠杆菌,6 min 即可达到完全灭菌。

    Abstract:

    The existing low-temperature plasma technology has limitations of small discharge range and high discharge voltage, which is not suitable for the disinfection and sterilization of large-sized medical devices. In this article, a sterilization device is developed that generates large-area plasma at lower breakdown voltage values (atmospheric helium 325 V, and atmospheric air 585 V) and innovatively achieves gas discharge on the printed circuit board. Through the plasma simulation in COMSOL software and actual discharge experiment, the uniform glow discharge is achieved under both low and atmospheric pressure environment. The discharge experiment results show that the breakdown voltage is the lowest when the relative air pressure is in the range of - 70 to - 50 kPa. Through sterilization experiments, the sterilization efficiency of the generated plasma is verified, and the factors affecting the sterilization effect are explored. Results of the sterilization experiment show that the frequency of the power supply is the most critical factor affecting the sterilization effect, following by the sterilization time, which the helium pressure has minimal effect on sterilization. The complete sterilization can be achieved in 6 min for a certain concentration of Escherichia coli.

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李 兵,辛 朝,尚中昱,李 昂,姜 涛.用于医疗器械快速灭菌的低温等离子体装置研究[J].仪器仪表学报,2022,43(9):62-71

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  • 在线发布日期: 2023-02-06
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