使用活性炭布去除加湿气流中的挥发性有机化合物

Mark P. Cal , Mark J. Rood , Susan M. Larson
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引用次数: 123

摘要

研究了相对湿度(RH)对活性炭布(ACC)吸附可溶性(丙酮)和不溶性(苯)挥发性有机化合物(VOCs)的影响。将重量天平与气相色谱仪/质分光光度计结合使用,以确定ACC样品上吸附的水和VOC的单个量。RH值为0 ~ 90%,有机浓度为350 ~ 1000 ppmv。在90%的相对湿度下,水蒸气和丙酮的存在(350和500 ppmv)对丙酮的吸附能力影响不大。气流中的水蒸气对苯(500 ppmv)的吸附量影响不大,直到65% RH左右,随着RH的增加,苯的吸附量迅速下降。这个相对湿度也是关于水蒸汽在ACC孔内发生毛细凝结的位置。水蒸气在ACC孔内凝结,使它们无法吸附苯。增加苯浓度对水蒸气吸附量有显著影响。在86% RH和500 ppmv条件下,吸附284 mg/g水,而在86% RH和1000 ppmv条件下,仅吸附165 mg/g水。水蒸气对苯吸附的抑制作用随着气流中苯浓度的降低而增强。
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Removal of VOCs from humidified gas streams using activated carbon cloth

This research investigates the effects of relative humidity (RH) on the adsorption of soluble (acetone) and insoluble (benzene) volatile organic compounds (VOCs) with activated carbon cloths (ACC). A gravimetric balance was used in conjunction with a gas chromatograph/mass spectrophotometer to determine the individual amounts of water and VOC adsorbed on an ACC sample. RH values from 0 to 90% and organic concentrations from 350 to 1000 ppmv were examined. The presence of water vapor in the gas-stream along with acetone (350 and 500 ppmv) had little effect on the adsorption capacity of acetone even at 90% RH. Water vapor in the gas stream had little effect on the adsorption capacity of benzene (500 ppmv) until about 65% RH, when a rapid decrease resulted in the adsorption capacity of benzene with increasing RH. This RH was also about where capillary condensation of water vapor occurs within ACC pores. Water vapor condenses within the ACC pores, making them unavailable for benzene adsorption. Increasing benzene concentration can have a significant effect on the amount of water vapor adsorbed. At 86% RH and 500 ppmv, 284 mg/g water was adsorbed, while at 86% RH and 1000 ppmv, only 165 mg/g water was adsorbed. Water vapor was more inhibitory for benzene adsorption as benzene concentration in the gas stream decreased.

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