Department of Mechanical Engineering, Texas A&M University, College Station, Texas, United States of America.
LTEOIL LLC, Houston, Texas, United States of America.
PLoS One. 2022 Feb 25;17(2):e0262818. doi: 10.1371/journal.pone.0262818. eCollection 2022.
This paper reports a plasma reactive oxygen species (ROS) method for decontamination of PPE (N95 respirators and gowns) using a surface DBD source to meet the increased need of PPE due to the COVID-19 pandemic. A system is presented consisting of a mobile trailer (35 m3) along with several Dielectric barrier discharge sources installed for generating a plasma ROS level to achieve viral decontamination. The plasma ROS treated respirators were evaluated at the CDC NPPTL, and additional PPE specimens and material functionality testing were performed at Texas A&M. The effects of decontamination on the performance of respirators were tested using a modified version of the NIOSH Standard Test Procedure TEB-APR-STP-0059 to determine particulate filtration efficiency. The treated Prestige Ameritech and BYD brand N95 respirators show filtration efficiencies greater than 95% and maintain their integrity. The overall mechanical and functionality tests for plasma ROS treated PPE show no significant variations.
本文报道了一种利用表面介质阻挡放电源对 PPE(N95 口罩和长袍)进行消毒的等离子体活性氧(ROS)方法,以满足因 COVID-19 大流行而增加的 PPE 需求。该系统包括一个移动拖车(35 立方米)和几个介质阻挡放电源,用于产生等离子体 ROS 水平以实现病毒消毒。等离子体 ROS 处理过的口罩在美国 CDC NPPTL 进行了评估,并在德克萨斯 A&M 进行了其他 PPE 样本和材料功能测试。使用 NIOSH 标准测试程序 TEB-APR-STP-0059 的修改版本测试了口罩的过滤效率,以测试消毒对口罩性能的影响。经过处理的 Prestige Ameritech 和 BYD 品牌 N95 口罩的过滤效率大于 95%,且保持完整性。经过等离子体 ROS 处理的 PPE 的整体机械和功能测试没有显示出显著变化。