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首页> 外文期刊>Journal of Electrostatics >Electrostatic charge effect on respirable aerosol particle deposition in a cadaver based throat cast replica
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Electrostatic charge effect on respirable aerosol particle deposition in a cadaver based throat cast replica

机译:静电对基于尸体的喉咙铸型中可吸入气溶胶颗粒沉积的影响

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This study investigated the integrated effects of particle size and electrostatic charge on the deposition of inhaled aerosol particles in a polyester resin cadaver based throat cast replica (TCR). Many lung diseases are associated with exposure to atmospheric dust particles and other pollutants. The most harmful respirable particles are smaller than 5 mu m in size which efficiently reach the alveolar region. Since the human throat is an effective filter, we devised a novel idea of charging particles and studying their deposition in the TCR. Aerosol particles were generated from a commercially available nebulizer and charged by a corona charger. Their size and charge distribution were characterized by an Electronic Single Particle Aerodynamic Relaxation Time (ESPART) analyzer. Charged and uncharged particles were allowed to pass through a polyester resin cast of a cadaver based throat, a replica of a human oropharyngeal region. Again their size and charge distribution were characterized. The study results revealed that charging the particles increased agglomeration of smaller (aerodynamic diameter, d(a) < 5 mu m) particles and increased deposition from 9 +/- 0.5% to 31 +/- 0.5%. It also showed that the deposition of charged particles increased with increasing particle size. Electrostatically charging and depositing particulate matters prior to entering into the tracheobronchial region are discussed.
机译:这项研究调查了粒径和静电荷对基于聚酯树脂尸体的喉罩铸造复制品(TCR)中的气溶胶颗粒沉积的综合影响。许多肺部疾病与暴露于大气尘埃颗粒和其他污染物有关。最有害的可吸入颗粒尺寸小于5微米,可有效到达肺泡区域。由于人的喉咙是一种有效的过滤器,因此我们设计了一种新颖的想法,可以带电粒子并研究其在TCR中的沉积。气溶胶颗粒由市售的雾化器产生,并通过电晕充电器充电。它们的大小和电荷分布通过电子单粒子空气动力学弛豫时间(ESPART)分析仪进行表征。使带电和不带电的颗粒通过基于尸体的喉咙的聚酯树脂铸模,该喉咙是人口咽区域的复制品。再次表征了它们的大小和电荷分布。研究结果表明,带电粒子增加了较小(空气动力学直径,d(a)<5μm)粒子的团聚,并使沉积从9 +/- 0.5%增加到31 +/- 0.5%。还表明带电粒子的沉积随着粒度的增加而增加。讨论了进入气管支气管区域之前带电并沉积颗粒物的问题。

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