使用便携式空气悬浮颗粒过滤装置去除在医学相关空间产生的室内气溶胶颗粒

IF 3.2 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Gregory T. Carroll, D. Kirschman
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引用次数: 0

摘要

产生气溶胶的程序使手术室人员暴露在病原体中。在病人气道附近施加局部负压有望减少分散在医护人员附近的生物气溶胶的数量,并应用气溶胶产生程序。雾化生理盐水被用作生物气雾剂的替代品,并由放置在模拟手术室中心附近的气溶胶发生器产生。附近放置了一个粒子计数器来检测气溶胶并确定它们的大小分布。在离气溶胶发射点一定距离的地方放置一个便携式过滤装置,以降低气溶胶的浓度。在距离气溶胶发射点10、20、30和40 cm处存在真空时,根据距离和粒径的不同,0.5、0.7、1.0和3.0 μm颗粒的平均浓度相对于对照降低了87% ~ 99%。粒子捕获的效率取决于真空入口到气溶胶出口的距离。在所有测试距离上,观察到显著的气溶胶减少(p < 0.05),表明便携式过滤装置有可能在不接触患者的情况下增加安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Removal of indoor aerosol particles generated in a medically relevant space using a portable airborne particle filtration device
Aerosol generating procedures expose operating room personnel to pathogens. Applying localized negative pressure within the proximity of a patient’s airway is expected to reduce the amount of bioaerosols dispersed within the vicinity of a healthcare worker applying an aerosol generating procedure. Nebulized saline was used as a proxy for bioaerosols and was produced with an aerosol generator placed near the centre of a simulated operating room. A particle counter was placed nearby to detect aerosols and determine their size distribution. A portable filtration unit was placed at fixed distances from the site of aerosol emittance to reduce the concentration of aerosols. In the presence of vacuum at distances of 10, 20, 30 and 40 cm from the site of aerosol emittance, the reduction in the average concentrations of 0.5, 0.7, 1.0 and 3.0 μm particles relative to the control ranged from 87 to 99% depending on the distance and particle size. The efficiency of particle capture was dependent on the distance of the vacuum inlet to the aerosol outlet. At all distances tested, significant aerosol reduction was observed ( p < 0.05), indicating that the portable filtration unit has the potential to increase safety without contacting the patient.
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来源期刊
Indoor and Built Environment
Indoor and Built Environment 环境科学-工程:环境
CiteScore
6.40
自引率
25.00%
发文量
130
审稿时长
2.6 months
期刊介绍: Indoor and Built Environment publishes reports on any topic pertaining to the quality of the indoor and built environment, and how these might effect the health, performance, efficiency and comfort of persons living or working there. Topics range from urban infrastructure, design of buildings, and materials used to laboratory studies including building airflow simulations and health effects. This journal is a member of the Committee on Publication Ethics (COPE).
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