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Biofiltration of gas-phase hexane and toluene mixture under intermittent loading conditions
Authors:Morteza Zamir  Rouein Halladj  Mohammad Sadraei  Bahram Nasernejad
Institution:1. Key Laboratory of Natural Resources of Changbai Mountain and Functional Molecules, Ministry of Education, Yanbian University, Yanji 133002, China;2. Analytical and Testing Center, Yanbian University, Yanji 133002, China;3. Department of Environmental Science, Agricultural College, Yanbian University, Yanji 133002, China;1. Department of Civil and Environmental Engineering, Duke University, Durham, NC 27708 United States;2. Department of Environmental Engineering and Earth Sciences, Clemson University, Clemson, SC 29625 United States;1. Department of Chemical Engineering and Environmental Technology, University of Valladolid, Dr. Mergelina, s/n, 47011, Valladolid, Spain;2. Department of Chemical Engineering, Queen''s University, Kingston, Ontario, Canada
Abstract:This paper reports the performance of a compost biofilter subjected to periodic intermittent loads of gas-phase hexane and toluene. The biofilter was operated for 10 h per day, at different empty bed residence times (4, 2 and 1.3 min), and at different inlet concentrations of hexane and toluene, varying between 2 and 3.8 g m?3, respectively. Steady-state removal efficiency profiles, reaching more than 90% for both the pollutants, was observed after 44 days of operation. Periodic operation of the compost biofilter was characterized by an adsorption step, followed by biological conversion of the pollutants by the microorganisms inherent to the compost. After resuming daily biofilter operation, the required times for biochemical reaction to dominate the initial adsorption step was observed to be 2.5 and 1 h, respectively, for toluene and hexane. The maximum elimination capacity due to the biological step was found to be 61.6 g m?3 h?1. The results from this study showed the effectiveness of the biofilter to handle mixtures of gas-phase pollutants, subjected to regular intermittent operations, thus proving their worthiness for industrial use.
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