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Transport of Aerosols in Underground Mine Workings in Terms of SARS-CoV-2 Virus Threat

机译:在SARS-COV-2病毒威胁方面在地下矿井工作中运输气溶胶

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摘要

This paper presents a method of implementation and the results of aerosol dispersion tests in underground mine workings. Numerous tests were carried out to determine the potential risk of SARS-CoV-2 coronavirus infection in the underground environment of the mines. The influence of selected parameters of mine air on the possibility and method of aerosol transmission through ventilation routes was experimentally determined in real conditions. The concentration of additional aerosols in the class of ultrafine and fine aerosols increased with the distance from the generator, while the concentration of coarse particles decreased. Assuming the consumption of the solution with which aerosols were generated, even at a small level of 1 cm3/min., the number of additional aerosols was several hundred particles in one cubic centimeter of air at a distance of 50–70 m from the generator. The concentration of ultrafine particles in the range of 40–20,000 nm increased from 122 particles/cm3 to 209 particles/cm3 at air temperature of 12 °C and relative humidity of 95–96%, and from 90 particles/cm3 to 243 particles/cm3 at air temperature of 17 °C and relative humidity of 76–82%, with the increasing distance from the generator (10 m to 50 m).
机译:本文介绍了地下矿井工作中的实施方法和气溶胶分散试验结果。进行了许多测试,以确定矿山地下环境中SARS-COV-2冠状病毒感染的潜在风险。通过通风路线对矿空气对矿空气的影响和气溶胶传输的可能性和方法的影响实际上是实验的。超细和细气溶胶类中额外气溶胶的浓度随着从发电机的距离而增加,而粗颗粒的浓度降低。假设产生气溶胶的溶液的消耗,即使在1cm 3 / min的较小水平,也是额外的气溶胶的数量在一个立方厘米的空气中,在发电机的距离为50-70μm 。 40-20,000nm范围内的超细颗粒的浓度从122颗粒/ cm 3至209颗粒/ cm3增加,在12℃和95-96%的相对湿度下,以及90颗粒/ cm3至243颗粒/ CM3在空气温度为17°C和相对湿度为76-82%,距发电机的距离增加(10μm至50μm)。

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