
Adsorbent combination studies have been carried out to remove nitrogen dioxide (NO2) and volatile organic compounds (VOCs: BTEX) out of a subway environment characterized by high flow and low concentration. Optimal conditions for the high removal efficiency of the concerned target compounds were obtained through testing a series of control factors such as adsorbent sorts, thicknesses, and superficial velocity. It was found that the efficiencies increased as the specific surface area of activated carbon and its thickness increased, and external void fraction decreased. Furthermore, mixed activated carbon with granular and constructed contents was extensively tested to reduce pressure drop through the carbon bed. It was found that the performance of higher contents of granular activated carbon was better than that of higher contents of the constructed carbon. When the mixed carbon was applied to the subway ventilation system in order to eliminate NO2 and VOC simultaneously, the removal efficiencies were found to be 75% and 85%, respectively.
nitrogen dioxide, Environmental technology. Sanitary engineering, Environmental sciences, adsorption, volatile organic compounds, activated carbon, GE1-350, TD1-1066, indoor air quality
nitrogen dioxide, Environmental technology. Sanitary engineering, Environmental sciences, adsorption, volatile organic compounds, activated carbon, GE1-350, TD1-1066, indoor air quality
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