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Application of two-stage biofilter system for the removal of odorous compounds
Authors:Gwi-Taek Jeong  Donn-Hee Park  Gwang-Yeon Lee  Jin-Myeong Cha
Institution:1. Engineering Research Institute, Chonnam National University, 500-757, Gwangju, Korea
2. School of Biological Sciences and Technology, Chonnam National University, 500-757, Gwangju, Korea
3. Faculty of Applied Chemical Engineering, Chonnam National University, 500-757, Gwangju, Korea
4. Biotechnology Research Institute, Chonnam National University, 500-757, Gwangju, Korea
5. Research Institute for Catalysis, Chonnam National University, 500-757, Gwangju, Korea
6. Institute of Bioindustrial Technology, Chonnam National University, 500-757, Gwangju, Korea
7. Department of Ophthalmic Optics, Dong-A College, 526-872, Jeonnam, Korea
8. B & E Tech Co., Ltd., 519-831, Jeonnam, Korea
Abstract:Biofiltration is a biological process which is considered to be one of the more successful examples of biotechnological applications to environmental engineering, and is most commonly used in the removal of odoriferous compounds. In this study, we have attempted to assess the efficiency with which both single and complex odoriferous compounds could be removed, using one- or two-stage biofiltration systems. The tested single odor gases, limonene, α-pinene, and iso-butyl alcohol, were separately evaluated in the biofilters. Both limonene and α-pinene were removed by 90% or more EC (elimination capacity), 364 g/m3/h and 321 g/m3/h, respectively, at an input concentration of 50 ppm and a retention time of 30 s. The iso-butyl alcohol was maintained with an effective removal yield of more than 90% (EC 375 g/m3/h) at an input concentration of 100 ppm. The complex gas removal scheme was applied with a 200 ppm inlet concentration of ethanol, 70 ppm of acetaldehyde, and 70 ppm of toluene with residence time of 45 s in a one- or two-stage biofiltration system. The removal yield of toluene was determined to be lower than that of the other gases in the one-stage biofilter. Otherwise, the complex gases were sufficiently eliminated by the two-stage biofiltration system.
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