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一种微型静电除尘器呼吸器能有效去除环境 SARS-CoV-2 生物气溶胶。

A Miniaturized Electrostatic Precipitator Respirator Effectively Removes Ambient SARS-CoV-2 Bioaerosols.

机构信息

Infectious Disease Aerobiology, Division of Microbiology, Tulane National Primate Research Center, Covington, LA 70433, USA.

Section of Otolaryngology, Yale-New Haven Hospital, New Haven, CT 06520, USA.

出版信息

Viruses. 2022 Apr 6;14(4):765. doi: 10.3390/v14040765.

Abstract

UNLABELLED

The inhalation of ambient SARS-CoV-2-containing bioaerosols leads to infection and pandemic airborne transmission in susceptible populations. Filter-based respirators effectively reduce exposure but complicate normal respiration through breathing zone pressure differentials; therefore, they are impractical for long-term use.

OBJECTIVES

We tested the comparative effectiveness of a prototyped miniaturized electrostatic precipitator (mEP) on a filter-based respirator (N95) via the removal of viral bioaerosols from a simulated, inspired air stream. : Each respirator was tested within a 16 L environmental chamber housed within a Class III biological safety cabinet within biosafety level 3 containment. SARS-CoV-2-containing bioaerosols were generated in the chamber, drawn by a vacuum through each respirator, and physical particle removal and viral genomic RNA were measured distal to the breathing zone of each device.

MEASUREMENTS AND MAIN RESULTS

The mEP respirator removed particles (96.5 ± 0.4%), approximating efficiencies of the N95 (96.9 ± 0.6%). The mEP respirator similarly decreased SARS-CoV-2 viral RNA (99.792%) when compared to N95 removal (99.942%), as a function of particle removal from the airstream distal to the breathing zone of each respirator.

CONCLUSIONS

The mEP respirator approximated the performance of a filter-based N95 respirator for particle removal and viral RNA as a constituent of the SARS-CoV-2 bioaerosols generated for this evaluation. In practice, the mEP respirator could provide equivalent protection from ambient infectious bioaerosols as the N95 respirator without undue pressure drop to the wearer, thereby facilitating its long-term use in an unobstructed breathing configuration.

摘要

未加标签

环境 SARS-CoV-2 含生物气溶胶的吸入导致易感人群感染和大流行空气传播。基于过滤的呼吸器通过呼吸区压力差有效地减少暴露,但使正常呼吸复杂化;因此,它们不适合长期使用。

目的

我们通过从模拟的吸入气流中去除病毒生物气溶胶,测试了原型小型静电沉淀器(mEP)对基于过滤的呼吸器(N95)的比较效果。:每个呼吸器都在一个 16L 的环境室中进行测试,该环境室位于三级生物安全柜内的三级生物安全罩内。在室内产生含有 SARS-CoV-2 的生物气溶胶,通过真空吸入每个呼吸器,并在每个设备的呼吸区外测量物理颗粒去除和病毒基因组 RNA。

测量和主要结果

mEP 呼吸器去除颗粒(96.5±0.4%),接近 N95(96.9±0.6%)的效率。mEP 呼吸器同样减少了 SARS-CoV-2 病毒 RNA(99.792%),与 N95 去除(99.942%)相比,这是由于每个呼吸器呼吸区外的气流中颗粒去除的函数。

结论

mEP 呼吸器模拟了基于过滤的 N95 呼吸器在去除颗粒和 SARS-CoV-2 生物气溶胶中病毒 RNA 方面的性能,这些气溶胶是为此评估生成的。在实践中,mEP 呼吸器可以为佩戴者提供与 N95 呼吸器相同的环境传染性生物气溶胶防护,而不会给佩戴者带来过大的压力下降,从而便于其在不受阻碍的呼吸配置中长期使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40c8/9025737/6122ef6b8dfe/viruses-14-00765-g001.jpg

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