Wood Gerry O, Snyder Jay L
J Occup Environ Hyg. 2007 May;4(5):363-74. doi: 10.1080/15459620701277468.
A published model for estimating service lives of organic vapor (OV) air-purifying respirator cartridges has been extended to include multiple organic vapors at all humidities. Equilibria among the OVs are calculated using Ideal Adsorbed Solution Theory, whereas the effects of adsorbed water are considered as due to micropore volume exclusion. Solubilities of OVs in water must also be taken into account. Adsorption kinetics of components of mixtures are based on published correlations of the effects of covapors and water vapor. The dynamics of adsorption and competition are incorporated using expanding zones within the carbon bed, taking into account vapor and water displacements. Measurements of breakthrough curves for two ternary OV mixtures at high humidities have been done for a single cartridge type. The service life estimation model, implemented as a spreadsheet and a computer program, has been tested against these data as well as data for OV mixtures from literature sources. Good agreements were obtained between model predictions and experimental breakthrough times at dry conditions and humid conditions.
一个已发表的用于估算有机蒸气(OV)空气净化呼吸器滤毒盒使用寿命的模型已得到扩展,以涵盖所有湿度条件下的多种有机蒸气。使用理想吸附溶液理论计算有机蒸气之间的平衡,而吸附水的影响则被视为由于微孔体积排除所致。还必须考虑有机蒸气在水中的溶解度。混合物各组分的吸附动力学基于已发表的共蒸气和水蒸气影响的相关性。考虑到蒸气和水的置换,利用碳床内的扩展区域纳入吸附和竞争的动态过程。针对单一滤毒盒类型,已对两种三元有机蒸气混合物在高湿度下的穿透曲线进行了测量。作为电子表格和计算机程序实现的使用寿命估算模型,已根据这些数据以及来自文献来源的有机蒸气混合物数据进行了测试。在干燥条件和潮湿条件下,模型预测与实验穿透时间之间取得了良好的一致性。