The Hitchhiker's Guide to Hydrogen Peroxide Fumigation, Part 2: Verifying and Validating Hydrogen Peroxide Fumigation Cycles.

IF 0.5 Q4 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Daniel Kümin, Monika Gsell Albert, Benjamin Weber, K. Summermatter
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引用次数: 6

Abstract

Introduction: Part 1 of this two-part series describes the use of hydrogen peroxide as a fumigant and compares it with other fumigants on the market. Technical requirements are outlined while considering physical and biological limitations of the system. This second part focuses primarily on the use of process controls to verify and validate hydrogen peroxide fumigations. Finally, a model encompassing the entire fumigation process is presented. Methods: Part 2 of the series focuses on the authors' long-time personal experiences in room and filter fumigation using various fumigation systems and is supplemented with relevant literature searches. Results: The reader is introduced to the planning and implementation of fumigation process validations. Biological indicators help users develop safe and efficient processes. Chemical indicators can be used as process controls, while measuring physical parameters will help avoid condensation of hydrogen peroxide. How many biological and chemical indicators and what type should be applied for cycle development are additionally explained. Discussion: It is important to consider numerous technical requirements when planning to implement hydrogen peroxide fumigation at an institution. Also, considerable thought needs to go into the verification and validation of the fumigation process. Conclusions: Part 1 of this series presents an overview of different fumigation systems based on hydrogen peroxide on the market and their technical requirements. Part 2 focuses on validation and verification of hydrogen peroxide fumigation while considering the entire fumigation process. The two parts together will serve users as a guide to establishing hydrogen peroxide fumigations at their facilities.
双氧水熏蒸指南,第2部分:验证和验证双氧水熏蒸循环。
简介:这个由两部分组成的系列的第1部分描述了过氧化氢作为熏蒸剂的使用,并将其与市场上其他熏蒸剂进行了比较。在考虑系统的物理和生物限制的同时概述了技术要求。第二部分主要侧重于使用过程控制来验证和验证过氧化氢熏蒸。最后,提出了一个包含整个熏蒸过程的模型。方法:本系列的第2部分主要介绍作者长期使用各种熏蒸系统进行室内和过滤器熏蒸的个人经验,并辅以相关文献检索。结果:介绍了熏蒸工艺验证的策划与实施。生物指标帮助用户开发安全高效的流程。化学指标可以作为过程控制,而测量物理参数将有助于避免过氧化氢的冷凝。另外还说明了循环开发应采用多少生物和化学指标以及何种类型。讨论:当计划在一个机构实施双氧水熏蒸时,考虑许多技术要求是很重要的。此外,需要对熏蒸过程的验证和确认进行大量的思考。结论:本系列的第1部分概述了市场上基于过氧化氢的不同熏蒸系统及其技术要求。第2部分侧重于在考虑整个熏蒸过程的同时验证和验证过氧化氢熏蒸。这两部分将共同为用户提供在其设施中建立过氧化氢熏蒸的指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Biosafety
Applied Biosafety Environmental Science-Management, Monitoring, Policy and Law
CiteScore
2.50
自引率
13.30%
发文量
27
期刊介绍: Applied Biosafety (APB), sponsored by ABSA International, is a peer-reviewed, scientific journal committed to promoting global biosafety awareness and best practices to prevent occupational exposures and adverse environmental impacts related to biohazardous releases. APB provides a forum for exchanging sound biosafety and biosecurity initiatives by publishing original articles, review articles, letters to the editors, commentaries, and brief reviews. APB informs scientists, safety professionals, policymakers, engineers, architects, and governmental organizations. The journal is committed to publishing on topics significant in well-resourced countries as well as information relevant to underserved regions, engaging and cultivating the development of biosafety professionals globally.
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