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首页> 外文期刊>Journal of occupational and environmental hygiene >Evaluation of respirator filters for asbestos fibers.
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Evaluation of respirator filters for asbestos fibers.

机译:石棉纤维呼吸器过滤器的评估。

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摘要

Fiber aerosols are known to have different aerodynamic behaviors than spherical particles and usually carry higher electrostatic charges. We investigated the effects of flow rate and charge status of filter cartridges on the penetration of spherical and fiber aerosols. Four types of test respirator filters were selected: two for passive respirators, one for a powered respirator, and one disposable respirator. Surface charges on respirator filters were determined using a noncontact field electrostatic field meter. Penetration tests were performed for filter cartridges before and after charge neutralization. The surface charge measurements on the respirator filters showed that some filters, including those used in disposable face masks, are charged to enhance the collection efficiency. Only high-efficiency particulate air filters performed consistently for both spherical test aerosols and the three types of asbestos fibers. The surface charge potential of filter cartridges and flow rate did not appear toaffect the performance of these filters. In contrast to the high-efficiency filters, the aerosol penetration performance of low-efficiency filters and face masks deteriorated when the charge potential on the filter was removed. Our data also showed that the surface charges decreased in a high-temperature, high-humidity environment and disappeared after 1 week. Deposition of spherical particles and fibers in the charged disposable facemask filter was enhanced. For charged-neutralized, low-efficiency filter cartridges, asbestos fibers may penetrate more than spherical particles with a mean particle size of 0.3 microm diameter.
机译:已知纤维气溶胶与球形颗粒相比具有不同的空气动力学行为,并且通常携带较高的静电荷。我们研究了滤筒的流速和充气状态对球形和纤维气溶胶渗透的影响。选择了四种类型的测试呼吸器过滤器:两种用于被动呼吸器,一种用于动力呼吸器,以及一种一次性呼吸器。使用非接触场静电场仪确定呼吸过滤器上的表面电荷。在电荷中和之前和之后对滤芯进行渗透测试。在呼吸过滤器上进行的表面电荷测量表明,某些过滤器(包括用于一次性口罩的过滤器)已带电以提高收集效率。对于球形测试气雾剂和三种类型的石棉纤维,只有高效的颗粒空气过滤器才能始终如一地运行。滤筒的表面电荷势和流速似乎并未影响这些过滤器的性能。与高效过滤器相反,当去除过滤器上的电势时,低效过滤器和面罩的气溶胶渗透性能会下降。我们的数据还表明,在高温高湿环境中,表面电荷下降,并在1周后消失。带电一次性口罩过滤器中球形颗粒和纤维的沉积得到了增强。对于带电中和的低效率滤芯,石棉纤维可能会渗透超过平均粒径为0.3微米的球形颗粒。

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