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Soft x-ray enhanced electrostatic precipitation of biological aerosols: Attenuation of microbial respiratory infections and allergic airway disease in murine models.

机译:软X射线增强了生物气溶胶的静电沉淀:鼠模型中微生物呼吸道感染和过敏性气道疾病的减轻。

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摘要

Human exposure to infectious microbial agents, allergens, and ultrafine particles is greatly influenced by the quality of indoor air. High-efficiency particulate air filters remove airborne particles >0.3 mum with 99.97% efficiency, but are expensive to operate and maintain. Electrostatic precipitation has been used as an inexpensive approach to remove large particles from an airstream, but has a collection efficiency minimum in the sub-micrometer size range resulting in a penetration window that coincides with the size range of select biological aerosols. Incorporation of soft X-ray irradiation as an in-situ component of the electrostatic precipitation process greatly improves the capture efficiency of submicrometer particles. Here, the removal capabilities of soft X-ray enhanced electrostatic precipitation technology targeting infectious agents (poxviruses, M. bovis-BCG, and B. anthracis ), allergens, and ultrafine particles is demonstrated. When optimized for combined efficient particle removal with limited ozone production, this technology could be incorporated into stand-alone indoor air cleaners or scaled for installation in aircraft cabin, office, and residential HVAC systems. Such systems could also be used for protection against intentionally aerosolized bioagents.
机译:人体暴露于传染性微生物,过敏原和超细​​颗粒会极大地影响室内空气的质量。高效的微粒空气过滤器以> 99.97%的效率去除了大于0.3微米的空气中悬浮微粒,但操作和维护成本很高。静电沉淀法已被用作从气流中除去大颗粒的廉价方法,但在亚微米尺寸范围内具有最低的收集效率,从而导致渗透窗与某些生物气雾剂的尺寸范围相吻合。将软X射线辐射纳入静电沉淀过程的原位组件可大大提高亚微米颗粒的捕获效率。在这里,展示了针对感染物(痘病毒,牛分枝杆菌-BCG和炭疽芽孢杆菌),过敏原和超细​​颗粒的软X射线增强型静电沉淀技术的去除能力。当针对结合有效的高效除尘技术和有限的臭氧产生进行优化时,该技术可以整合到独立的室内空气净化器中,也可以扩展到安装在飞机机舱,办公室和住宅HVAC系统中。这样的系统还可用于防止故意雾化的生物制剂。

著录项

  • 作者

    Kettleson, Eric Matthew.;

  • 作者单位

    Washington University in St. Louis.;

  • 授予单位 Washington University in St. Louis.;
  • 学科 Biology Microbiology.;Engineering Environmental.;Environmental Health.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:10

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