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Development and Improvement of an Effective Method for Air and Surfaces Disinfection with Ozone Gas as a Decontaminating Agent

机译:开发与改进空气和表面与臭氧气体消毒作为去污剂的有效方法

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摘要

Background and objectives: Ozone has been one of the most investigated and discussed sanitization methods. This paper reports a procedure to sanitize air hospital environments, in particular chirurgical surgery rooms that require high levels of disinfection. The purpose of this work was the development and implementation of a cleansing and sanitizing procedure for critical clinical settings with ozone, to prevent hospital infections by the elimination of all toxic and harmful microorganisms in the air, and ensure safe use for operators and patients. Materials and Methods: The protocol for the study involved a structured selection of a representative environment of healthcare structures such as high, medium, and low-risk settings in air and examples of hospital furniture. Results: The concentration of ozone was measured during sanitization treatment and the estimation of the total microbial count in the air and on different surfaces before and after the sanitization operations was performed. The results demonstrated a significant reduction in the microbial count that always fell below the threshold value. Conclusions: Currently, there are no air treatment strategies available for inactivating airborne organisms during hospital outbreaks, which is most probably due to the lack of approved protocols.
机译:背景和目标:臭氧是最受调查和讨论的消毒方法之一。本文报告了一种程序消毒空中医院环境,特别是需要高水平消毒的手术外科室。这项工作的目的是开发和实施用于臭氧的关键临床环境的清洁和消毒程序,以防止医院感染通过消除空气中的所有有毒和有害的微生物,并确保对运营商和患者的安全使用。材料和方法:研究方案涉及在空气和医院家具的空气和低风险环境中的医疗保健结构的代表性环境的结构化选择。结果:在消毒处理期间测量臭氧的浓度,并在进行消毒操作之前和之后估计空气中的总微生物计数和不同表面。结果表明,微生物计数显着降低总是低于阈值。结论:目前,在医院爆发期间没有可用于在医院爆发期间灭活空气有机体的空气处理策略,这可能是由于缺乏批准的方案。

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