...
首页> 外文期刊>Polymer Degradation and Stability >Extended use of face masks during the COVID-19 pandemic -Thermal conditioning and spray-on surface disinfection
【24h】

Extended use of face masks during the COVID-19 pandemic -Thermal conditioning and spray-on surface disinfection

机译:在Covid-19流行病期间延长使用面部面罩 - 热调节和喷涂表面消毒

获取原文
获取原文并翻译 | 示例
           

摘要

The current COVID-19 pandemic has resulted in globally constrained supplies for face masks and personal protective equipment (PPE). Production capacity is limited in many countries and the future course of the pandemic will likely continue with shortages for high quality masks and PPE in the foreseeable future. Hence, expectations are that mask reuse, extended wear and similar approaches will enhance the availability of personal protective measures. Repeated thermal disinfection could be an important option and likely easier implemented in some situations, at least on the small scale, than UV illumination, irradiation or hydrogen peroxide vapor exposure. An overview on thermal responses and ongoing filtration performance of multiple face mask types is provided. Most masks have adequate material properties to survive a few cycles (i.e. 30 min disinfection steps) of thermal exposure in the 75°C regime. Some are more easily affected, as seen by the fusing of plastic liner or warping, given that preferred conditioning temperatures are near the softening point for some of the plastics and fibers used in these masks. Hence adequate temperature control is equally important. As guidance, disinfectants sprayed via dilute solutions maintain a surface presence over extended time at 25 and 37°C. Some spray-on alcohol-based solutions containing disinfectants were gently applied to the top surface of masks. Neither moderate thermal aging (less than 24 h at 80 and 95°C) nor gentle application of surface disinfectant sprays resulted in measurable loss of mask filter performance. Subject to bio-medical concurrence (additional checks for virus kill efficiency) and the use of low risk non-toxic disinfectants, such strategies, either individually or combined, by offering additional anti-viral properties or short term refreshing, may complement reuse options of professional masks or the now ubiquitous custom-made face masks with their often unknown filtration effectiveness.
机译:目前的Covid-19大流行导致了面部面罩和个人防护设备(PPE)的全球受限制的供应。在许多国家的生产能力有限,大流行过程可能会在可预见的未来在可预见的未来继续缺乏高质量面具和PPE的短缺。因此,期望是掩模重用,扩展磨损和类似方法将提高个人保护措施的可用性。重复的热消毒可能是重要的选择,并且可能更容易在某些情况下实现,至少在小规模上,而不是紫外线照明,照射或过氧化氢蒸气暴露。提供了关于热响应和持续过滤性能的概述。大多数掩模具有足够的材料特性,以在75°C方案中存活几个循环(即30分钟消毒步骤)的热暴露。有些人更容易受到塑料衬垫或翘曲所看到的,因为优选的调节温度接近这些掩模中使用的一些塑料和纤维的软化点。因此,适当的温度控制同样重要。作为引导,通过稀释溶液喷涂的消毒剂在25和37℃下延长延长的表面存在。一些喷涂含有消毒剂的基于酒精的醇溶溶液轻轻地施加到掩模的顶部表面上。既不适度的热老化(少于80℃,95°C)也不低于表面消毒喷雾剂的温和施加导致掩模过滤器性能的可测量损失。受生物医疗同意(额外检查病毒杀死效率)和使用低风险无毒消毒剂,通过提供额外的抗病毒性质或短期刷新,单独或组合的这种策略可以补充重用选项专业面具或现在无处不在的定制面部面具,其往往未知过滤效果。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2020年第9期|109251.1-109251.16|共16页
  • 作者单位

    Sandia National Laboratories Organic Materials Science Dept.1853 Albuquerque NM 87185-1411 USA;

    Sandia National Laboratories Organic Materials Science Dept.1853 Albuquerque NM 87185-1411 USA;

    Sandia National Laboratories Aerosol Characterization Team in Depts. 6633/6775 Albuquerque NM 87185- 1104 USA;

    Sandia National Laboratories Aerosol Characterization Team in Depts. 6633/6775 Albuquerque NM 87185- 1104 USA;

    Sandia National Laboratories Aerosol Characterization Team in Depts. 6633/6775 Albuquerque NM 87185- 1104 USA;

    Sandia National Laboratories Aerosol Characterization Team in Depts. 6633/6775 Albuquerque NM 87185- 1104 USA;

    Institute of Health and Biomedical Innovation Science and Engineering Faculty and the Centre for Materials Science Queensland University of Technology Brisbane Queensland 4000 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    COVID-19; PPE/Mask supplies; Extended use and performance; Thermal and surface disinfection; Filtration efficiency;

    机译:新冠肺炎;PPE /掩模用品;扩展使用和性能;热和表面消毒;过滤效率;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号