Biorisk Management Features of a Temporary COVID-19 Hospital.

IF 0.5 Q4 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Applied Biosafety Pub Date : 2023-03-01 Epub Date: 2023-03-06 DOI:10.1089/apb.2022.0018
Benjamin Fontes, Danielle Scavone, Wesley Bridges, Tessa Landgraf, Nanci Fortgang
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引用次数: 0

Abstract

Introduction: Yale University designed and constructed a temporary field hospital for 100 COVID-19 symptomatic patients. Conservative biocontainment decisions were made in design and operational practices. Objectives of the field hospital included the safe flow of patients, staff, equipment and supplies, and obtaining approval by the Connecticut Department of Public Health (CT DPH) for opening as a field hospital.

Methods: The CT DPH regulations for mobile hospitals were used as primary guidance for the design, equipment, and protocols. References for BSL-3 and ABSL-3 design from the National Institutes of Health (NIH) and Tuberculosis isolation rooms from the United States Centers for Disease Control and Prevention (CDC) were also utilized. The final design involved an array of experts throughout the university.

Results and conclusion: Vendors tested and certified all High Efficiency Particulate Air (HEPA) filters and balanced the airflows inside the field hospital. Yale Facilities designed and constructed positive pressure access and exit tents within the field hospital, established appropriate pressure relationships between zones, and added Minimum Efficiency Reporting Value 16 exhaust filters. The BioQuell ProteQ Hydrogen Peroxide decontamination unit was validated with biological spores in the rear sealed section of the biowaste tent. A ClorDiSys Flashbox UV-C Disinfection Chamber was also validated. Visual indicators were placed the doors of the pressurized tents and spaced throughout the facility to verify airflows. The plans created to design, construct and operate the field hospital provide a blueprint for recreating and reopening a field hospital in the future if ever needed at Yale University.

COVID-19 临时医院的生物风险管理特点。
简介耶鲁大学为 100 名有 COVID-19 症状的病人设计并建造了一所临时野战医院。在设计和运营实践中,耶鲁大学做出了保守的生物隔离决定。野战医院的目标包括病人、工作人员、设备和用品的安全流动,以及获得康涅狄格州公共卫生部(CT DPH)批准作为野战医院开放:方法:康涅狄格州公共卫生部关于流动医院的规定被用作设计、设备和协议的主要指导。此外,还参考了美国国立卫生研究院(NIH)的 BSL-3 和 ABSL-3 设计以及美国疾病控制与预防中心(CDC)的结核病隔离室设计。最终的设计涉及到整个大学的一系列专家:供应商对所有高效微粒空气(HEPA)过滤器进行了测试和认证,并平衡了野战医院内的气流。耶鲁大学设施部门在野战医院内设计并建造了正压通道和出口帐篷,在各区之间建立了适当的压力关系,并增加了最低效率报告值 16 排气过滤器。BioQuell ProteQ 过氧化氢净化装置在生物垃圾帐篷后部密封区域进行了生物孢子验证。还对 ClorDiSys Flashbox 紫外线-C 消毒室进行了验证。在加压帐篷的门上和整个设施内都安装了可视指示器,以验证气流。设计、建造和运营野战医院的计划为将来耶鲁大学需要时重建和重新开放野战医院提供了蓝图。
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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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