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中国防痨杂志 ›› 2018, Vol. 40 ›› Issue (4): 411-415.doi: 10.3969/j.issn.1000-6621.2018.04.012

• 论著 • 上一篇    下一篇

一种新型医用动态空气消毒机对MTB等病原微生物杀菌效果的研究

刘志永,王帅,张天宇(),土井教生,谭守勇,谢小保,高亚敏,唐运祥,姜火风,谢武   

  1. 510530 中国科学院广州生物医药与健康研究院 呼吸疾病国家重点实验室(刘志永、王帅、张天宇、高亚敏、唐运祥、姜火风);日本国家结核预防会结核病研究所(土井教生);广州市胸科医院(谭守勇);广东省微生物研究所(谢小保);深圳市达柏嘉生物科技有限公司(谢武)
  • 收稿日期:2018-03-11 出版日期:2018-04-10 发布日期:2018-05-14
  • 通信作者: 张天宇 E-mail:zhang_tianyu@gibh.ac.cn

Study on the bactericidal effect using a new type of medical dynamic air disinfector on MTB and other pathogenic microorganisms

Zhi-yong LIU,Shuai WANG,Tian-yu Zhang(),Doi Norio,Shou-yong TAN,Xiao-bao XIE,Ya-min GAO,Yun-xiang TANG,Huo-feng JIANG,Wu XIE   

  1. Tuberculosis Research Laboratory, State Key Laboratory of Respiratory Disease, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou 510530, China
  • Received:2018-03-11 Online:2018-04-10 Published:2018-05-14
  • Contact: Tian-yu Zhang E-mail:zhang_tianyu@gibh.ac.cn

摘要:

目的 评价采用新型角柱状光触媒系统的医用空气消毒机(简称“新型空气消毒机”)在人机共存环境状态下杀菌的效果,研究提高杀灭空气中病原微生物,特别是杀灭结核分枝杆菌(MTB;本实验采用Mycobacterium bovis BCG菌株,即牛型结核分枝杆菌减毒株,简称“BCG”)的空气消毒技术和方法。方法 采用新型空气消毒机,在体积47m 3实验房中对空气中的自然菌进行杀菌试验;设置3个采样点,试验重复 3 次,每次试验结果取3个采样点检测的菌落数均值,分别计算其消亡率。在相邻2个体积为30m 3的气雾室(一个用于试验对照,计算细菌的自然消亡率;一个用于消毒试验,计算对细菌的杀灭率),对空气中的白色葡萄球菌、BCG进行杀菌试验;试验重复 3 次,每次均分别计算其自然消亡率和杀灭率。白色葡萄球菌及BCG杀菌试验气雾室内空气中菌落数应分别达到1×10 5~5× 10 5 CFU / m 3 和3×10 4~8×10 4CFU/m 3结果 空气模拟现场消毒试验采用新型空气消毒机进行空气现场白色葡萄球菌消毒试验,重复3次对照试验空气中白色葡萄球菌自然消亡率分别为20.45%、20.00%、20.36%;重复3次消毒试验杀菌率分别为99.97%、99.96%、99.95%;空气现场自然菌消毒试验重复3次试验空气中自然菌的消亡率分别为93.95%、94.27%、94.32%;空气模拟现场BCG消毒试验,重复3次对照试验空气中BCG自然消亡率分别为35.71%、37.93%、40.58%,重复3次消毒试验杀菌率分别为99.67%、99.61%、99.73%。 结论 采用角柱状光触媒系统的新型医用空气消毒机对空气环境中的病原微生物及MTB有强烈的杀灭作用。

关键词: 分枝杆菌,结核, 消毒, 净化, 卫生用具和设备, 空气微生物学, 评价研究

Abstract:

Objective To evaluate the bactericidal effect of a new type of medical air disinfector (short for new air disinfector) using a new angular column-shaped photocatalyst system under the condition of man-machine co-existing environment, and to study the improvement of killing pathogenic microorganisms in the air. In particular, the air disinfection technique and method of killing Mycobacterium tuberculosis (Mycobacterium bovis BCG strain (short for BCG)) was used in this experiment.Methods A new air disinfector was used to sterilize the natural bacteria in the air in a 47m 3 laboratory room. The test was repeated three times, and the extinction rate was calculated separately each time. In two adjacent aerosol chambers with volume of 30m 3 (one for experimental control, for calculating the natural extinction rate of bacteria, one for disinfection test, for calculating the killing rate of bacteria), the bactericidal test was conducted to sterilize Staphylococcus albus and BCG in air. The experiment was repeated three times, and the natural extinction rate and killing rate were calculated respectively. The number of colonies in the air in the aerosol room of Staphylococcus albus and BCG after sterilization test should be from 1×10 5CFU/m 3 to 5×10 5CFU/m 3 and from 3×10 4CFU/m 3 to 8×10 4CFU/m 3. Results Air simulated field disinfection test using a new type of air disinfector was carried out disinfection test of Staphylococcus albus in air field with repeated three times. The natural extinction rates of Staphylococcus albus in air were 20.45%,20.00% and 20.36%, respectively. The bactericidal rates of three repeated disinfection tests were 99.97%, 99.96% and 99.95%, respectively. With three repeated tests on disinfection of natural bacteria in air field, the extinction rates of natural bacteria in air were 93.95%, 94.27% and 94.32%, respectively. With three repeated tests on disinfection of natural bacteria in air field, the natural extinction rates of BCG in air were 35.71%, 37.93% and 40.58% respectively. The bactericidal rates of three repeated disinfection tests were 99.67%, 99.61% and 99.73%, respectively.Conclusion Pathogenic microorganismcan and MTB in air environment could be killed strongly using a new type of medical air disinfector with angular column-shaped photocatalyst system.

Key words: Mycobacterium tuberculosis, Disinfection, Decontamination, Toilet facilities, Air microbiology, Evaluation studies