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Simultaneous removal of benzene, toluene and xylenes mixture by a constructed microbial consortium during biofiltration
Authors:Sung-Chang Choi  Young-Sook Oh
Affiliation:(1) Division of Life Sciences, Hallym University, Chunchon, 200-702, Korea;(2) Department of Environmental Engineering & Biotechnology, Myongji University, Yongin, 449-728, Korea
Abstract:A bacterial consortium with complementary metabolic capabilities was formulated and specific removal rates were 0.14, 0.35, 0.04, and 0.39 h–1 for benzene, toluene, o-xylene, and m,p-xylene, respectively. When immobilized on a porous peat moss biofilter, removal of all five (= BTX) components was observed with rates of 1.8–15.4 g m–3 filter bed h–1. Elimination capacities with respect to the inlet gas concentrations of BTX and airflow rates showed diffusive regimes in the tested concentration range of (0.1–5.3 g m–3) and airflow (0.55–1.82 m3 m–2 h–1) except for o-xylene which reached its critical gas concentration at 0.3 g m–3.
Keywords:biofiltration  BTX  elimination capacity  peat  VOC
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