首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Adsorption Performance of Activated-Carbon-Loaded Nonwoven Filters Used in Filtering Facepiece Respirators
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Adsorption Performance of Activated-Carbon-Loaded Nonwoven Filters Used in Filtering Facepiece Respirators

机译:用于面罩呼吸器的活性炭非织造过滤器的吸附性能

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摘要

Filtering nonwovens loaded with activated carbon are among the most popular materials used in the construction of filtering facepiece respirators (FFRs) with anti-odour properties that can be used for respiratory protection at workplaces where the occupational exposure limits of harmful substances are not exceeded. Such FFRs, in addition to a polymer filter material of varying effectiveness, also contain a layer of activated-carbon-loaded nonwoven filter, which limits the quantity of chemical compounds entering the breathing zone. The aim of this work was to analyse the influence of challenge concentration (20–120 ppm), relative humidity (2–70%), flow rate (20–55 L/min), and flow pattern (steady-state and pulsating) on the breakthrough of polymer/carbon nonwovens. A commercial activated-carbon-loaded nonwoven filter was used in this study. Its morphology and textural parameters were determined using optical microscopy, image processing, and nitrogen adsorption/desorption measurements at 77 K. Breakthrough experiments were carried out using cyclohexane vapours to assess adsorption characteristics of polymer/carbon media. The results showed that the breakthrough times decreased with increasing challenge concentration (up to 30%), relative humidity (up to 73%), and flow rate (up to 72%). The pulsating flow pattern was found to be more favourable in terms of odour reduction efficiency (up to 30%). The results indicate that all of these factors should be considered during selection and performance assessment of respirators used for odour relief.
机译:载有活性炭的过滤式无纺布是用于制造具有防臭特性的过滤式面罩呼吸器(FFR)的最流行材料,可用于不超过有害物质职业暴露极限的工作场所进行呼吸防护。除了具有不同功效的聚合物过滤器材料外,此类FFR还包含负载活性炭的非织造过滤器层,这限制了进入呼吸区域的化学化合物的数量。这项工作的目的是分析挑战浓度(20–120 ppm),相对湿度(2–70%),流速(20–55 L / min)和流动模式(稳态和脉动)的影响聚合物/碳非织造布的突破。在这项研究中,使用了载有活性炭的无纺布商业过滤器。使用光学显微镜,图像处理和在77 K下的氮吸附/解吸测量确定其形态和质地参数。使用环己烷蒸气进行突破性实验,以评估聚合物/碳介质的吸附特性。结果表明,突破时间随着挑战浓度(高达30%),相对湿度(高达73%)和流量(高达72%)的增加而减少。发现在减少气味的效率方面(高达30%),脉动流型更有利。结果表明,在选择和减轻用于除臭的呼吸器的性能时应考虑所有这些因素。

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