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Factors impacting allergen-containing particle resuspension.

机译:影响含变应原的颗粒重悬的因素。

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摘要

An experimental apparatus equipped with a simulated walking-induced floor disturbance system was used to explore the influence of occupant activity on the aerosolization of allergen-containing particles. Controlled air-swirls and field measured vibrations were imposed over floor samples previously loaded with physically and chemically characterized allergen-containing dusts, while timed optical particles counters continuously sampled air for transient, size resolved resuspension rate determination. Different laboratory-produced, allergen-containing dusts (originated in cats, dogs, dust mite and German cockroaches) were compared with an anthrax surrogate (Bacillus thuringiensis) and reference crushed quartz dust in controlled and characterized experiments during which, floor dust load, floor type, humidity level, air swirl and floor vibration intensity were varied.; 2k fractional factorial and Box-Behnken statistical designs were created to identify and model environmental factors significantly affecting particle resuspension.; Research dusts were obtained in a laboratory by a combination of milling and sieving of allergen-containing parent material, characterized for particle size distribution (optical counter analysis), surface properties (SEM analysis), and allergen content (ELISA analysis).; Results indicate aerodynamic disturbances, relative to mechanical, dominated particle resuspension behavior. High dust surface roughness (cat and dog fur dusts) and high floor surface roughness (carpet) facilitated particle aerosolization. Humidity significantly impacted some types of dusts (quartz and dust mite) but not others (cat and dog fur dust). Dust load had an indirect impact on particle resuspension rates, significantly impacting fur-based dusts. Between 0.3 and 7 mum, particle size did not impact particle resuspension. Average resuspension rates and factors ranged, respectively, from 10-10 to 10-4 min-1 and 10-10 to 10 -4 m-1, which have phenomenological consistency with previous, large room or chamber investigations.
机译:使用装备有模拟步行诱发的地板干扰系统的实验设备来研究乘员活动对含变应原颗粒雾化的影响。将受控的空气涡流和现场测量的振动施加到预先装载有物理和化学特征的含过敏原粉尘的地板样本上,而定时的光学粒子则对连续采样的空气进行计数,以进行瞬时,尺寸分辨的悬浮速率测定。在受控和定性实验中,将实验室生产的不同含过敏原粉尘(源自猫,狗,螨虫和德国蟑螂)与炭疽替代物(苏云金芽孢杆菌)进行比较,并参考粉碎的石英粉尘,在此过程中,地板粉尘负荷,地板类型,湿度水平,空气涡流和地板振动强度均变化。创建2k分数阶乘和Box-Behnken统计设计,以识别和建模对粒子重悬浮有重大影响的环境因素。在实验室中,通过研磨和筛分含过敏原的母体材料,获得了研究粉尘,其特征在于粒径分布(光学计数分析),表面性质(SEM分析)和过敏原含量(ELISA分析)。结果表明,相对于机械主导的颗粒再悬浮行为,存在空气动力学干扰。高的灰尘表面粗糙度(猫和狗的毛皮灰尘)和高的地板表面粗糙度(地毯)有助于微粒雾化。湿度显着影响某些类型的灰尘(石英和尘螨),但不影响其他类型的灰尘(猫和狗的毛皮灰尘)。粉尘负荷对颗粒物的悬浮率有间接影响,对基于毛皮的粉尘有重大影响。在0.3和7μm之间,粒度不影响颗粒重悬浮。平均重悬率和因子分别为10-10至10-4 min-1和10-10至10 -4 m-1,与以前的大型房间或房间研究具有现象学上的一致性。

著录项

  • 作者

    Gomes, Carlos Andres Sousa.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Mechanical.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 278 p.
  • 总页数 278
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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