A portable system for CO2 and pressure monitoring inside the dead space of face masks

A. Vallan, A. Carullo, L. Midolo, A. Ferri
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引用次数: 2

Abstract

This paper presents a portable system designed to monitor physical and chemical quantities inside the dead space of face masks that are commonly used to prevent the diffusion of SARS-CoV-2 infection. The system is a “side stream” analyzer that continuously samples the gas inside the gap between the mask and the user mouth and provides, in real time, the temporal evolution of CO2 concentration, differential pressure and temperature. These quantities are related to the mask behaviour in term of breath resistance, CO2 accumulation and overheating that, in turn, can cause physiological side effects and a feeling of discomfort. These effects become more relevant when the masks are employed during physical activities, such as team sports, and for this reason the system has been designed to have a reduced weight and dimensions as well as a reduced invasiveness of the sampling line. The paper also proposes a measurement procedure for the evaluation of the CO2 inspired volume in real conditions during the physical activity. At the current stage, the proposed procedure is only able to provide qualitative measurements, but it can work in real conditions and it does not require bulky and expensive facilities as the ones required by the actual international standards for the certification of respiratory protective devices.
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一种在面罩死区监测二氧化碳和压力的便携式系统
本文介绍了一种便携式系统,用于监测通常用于防止SARS-CoV-2感染扩散的口罩死区内的物理和化学量。该系统是一个“侧流”分析仪,可以连续地对面罩和用户嘴之间的间隙内的气体进行采样,并实时提供二氧化碳浓度、压差和温度的时间演变。这些量与呼吸阻力、二氧化碳积累和过热等口罩行为有关,而这些行为反过来又会导致生理副作用和不适感。当口罩在体育活动中使用时,例如团队运动,这些影响变得更加相关,因此,该系统被设计为具有减轻重量和尺寸以及减少采样线的侵入性。本文还提出了一种评估体育运动中实际条件下CO2吸入量的测量方法。在目前阶段,拟议的程序只能提供定性测量,但它可以在实际条件下工作,并且不需要像实际国际标准所要求的那样笨重和昂贵的设备来认证呼吸防护装置。
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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