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不同类型活性炭纤维对甲苯吸附的穿透曲线:在呼吸防护中的应用

Breakthrough curves for toluene adsorption on different types of activated carbon fibers: application in respiratory protection.

作者信息

Balanay Jo Anne G, Floyd Evan L, Lungu Claudiu T

机构信息

1.Environmental Health Sciences Program, Department of Health Education and Promotion, East Carolina University, 300 Curry Court, 3407 Carol Belk Building, Greenville, NC 27858, USA

2.Department of Occupational and Environmental Health, University of Oklahoma, 801 N.E. 13th Street, Room 419, Oklahoma City, OK 73126, USA.

出版信息

Ann Occup Hyg. 2015 May;59(4):481-90. doi: 10.1093/annhyg/meu105. Epub 2014 Dec 20.

Abstract

Activated carbon fibers (ACF) are considered viable alternative adsorbent materials in respirators because of their larger surface area, lighter weight, and fabric form. The purpose of this study was to characterize the breakthrough curves of toluene for different types of commercially available ACFs to understand their potential service lives in respirators. Two forms of ACF, cloth (AC) and felt (AF), with three surface areas each were tested. ACFs were challenged with six toluene concentrations (50-500 p.p.m.) at constant air temperature (23°C), relative humidity (50%), and air flow (16 l min-1) at different bed depths. Breakthrough data were obtained using continuous monitoring by gas chromatography using a gas sampling valve. The ACF specific surface areas were measured by an automatic physisorption analyzer. Results showed unique shapes of breakthrough curves for each ACF form: AC demonstrated a gradual increase in breakthrough concentration, whereas AF showed abrupt increase in concentration from the breakpoint, which was attributed to the difference in fiber density between the forms. AF has steeper breakthrough curves compared with AC with similar specific surface area. AC exhibits higher 10% breakthrough times for a given bed depth due to higher mass per bed depth compared with AF, indicating more adsorption per bed depth with AC. ACF in respirators may be appropriate for use as protection in environments with toluene concentration at the Occupational Safety and Health Administration Permissible Exposure Limit, or during emergency escape for higher toluene concentrations. ACF has shown great potential for application in respiratory protection against toluene and in the development of thinner, lighter, and more efficient respirators.

摘要

活性炭纤维(ACF)因其较大的表面积、较轻的重量和织物形态,被认为是呼吸器中可行的替代吸附材料。本研究的目的是表征不同类型市售ACF对甲苯的穿透曲线,以了解它们在呼吸器中的潜在使用寿命。测试了两种形式的ACF,即布状(AC)和毡状(AF),每种形式又有三种表面积。在恒定空气温度(23°C)、相对湿度(50%)和空气流速(16升/分钟)下,在不同床层深度用六种甲苯浓度(50 - 500 ppm)对ACF进行挑战。使用气体采样阀通过气相色谱连续监测获得穿透数据。用自动物理吸附分析仪测量ACF的比表面积。结果表明,每种ACF形式的穿透曲线形状独特:AC的穿透浓度逐渐增加,而AF从断点起浓度急剧增加,这归因于两种形式之间纤维密度的差异。与具有相似比表面积的AC相比,AF的穿透曲线更陡。由于与AF相比,给定床层深度下AC的单位床层质量更高,所以AC在给定床层深度下具有更高的10%穿透时间,表明AC每单位床层深度的吸附量更大。呼吸器中的ACF可能适合在职业安全与健康管理局允许接触限值的甲苯浓度环境中用作防护,或者在甲苯浓度较高时用于紧急逃生。ACF在针对甲苯的呼吸防护以及开发更薄、更轻、更高效的呼吸器方面显示出巨大的应用潜力。

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