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Sterilization efficiency of the photocatalyst against environmental microorganisms in a health care facility

机译:光催化剂对医疗机构中环境微生物的杀菌效率

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The photocatalyst equipment consists of a titanium dioxide membrane and an ultraviolet lamp. The authors studied if the photocatalyst equipment is practically useful in sterilizing environmental microorganisms in the health care facility. The number of microorganisms was compared in the cases of no sterilization (control) and the photocatalyst sterilization. As a result, a statistical difference was observed between control and the photocatalyst sterilization against airborne microorganisms (p < 0.01), but not against surface microorganisms (p > 0.2). The photocatalyst uses an air sucking system, so it may be ineffective against microorganisms tightly attached to surfaces. However, the effectiveness of the photocatalyst to sterilize airborne microorganisms in the health care facility was successfully confirmed. Concerning the humidity effect on the photocatalyst sterilization, the authors compared the number of airborne microorganisms in cases of the control, UV alone and photocatalyst sterilization when humidity was changed. A statistical difference was observed between UV and the photocatalyst sterilization (p < 0.01) when humidity was increased to 60-70%, but not observed between UV and the photocatalyst sterilization (p > 0.2) when humidity was not controlled and was around 10-20%. This indicates that maintaining high humidity levels will present satisfactory sterilization results due to a greater production of OH radicals. From data obtained, no effect of the adsorption on the TiO2 membrane could be observed.
机译:光催化剂设备由二氧化钛膜和紫外线灯组成。作者研究了光催化剂设备是否可用于在医疗机构中对环境微生物进行灭菌。比较未灭菌(对照)和光催化剂灭菌情况下的微生物数量。结果,在对照和对空气传播微生物的光催化剂灭菌之间观察到统计学差异(p <0.01),但对表面微生物则没有统计学差异(p> 0.2)。光催化剂使用吸气系统,因此对紧密附着在表面的微生物可能无效。但是,已成功确认了光催化剂在医疗机构中对空气中的微生物进行灭菌的有效性。关于湿度对光催化剂灭菌的影响,作者比较了在对照组,单独紫外线和湿度变化时光催化剂灭菌情况下空气传播微生物的数量。当湿度增加至60-70%时,在UV和光催化剂杀菌之间观察到统计学差异(p <0.01),而当湿度不受控制且在10-70左右时,在UV和光催化剂杀菌之间未观察到统计学差异(p> 0.2)。 20%。这表明由于较高的OH自由基生成量,保持较高的湿度将提供令人满意的灭菌结果。根据获得的数据,未观察到对TiO 2膜的吸附作用。

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