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Environ Technol ; 36(13-16): 2105-14, 2015.
Article in English | MEDLINE | ID: mdl-25749282

ABSTRACT

An innovative and patented process for medium-high strength sewage which comprises an anaerobic step followed by a hybrid anoxic-aerobic chamber and a final ultrafiltration stage was characterized in terms of methane fugitive emissions as well as odours. The operation at ambient temperature implies higher methane content in the liquid anaerobic effluent, which finally causes concentrations around 0.01-2.4% in the off-gas released in the anoxic-aerobic chamber (1.25% average). Mass balances indicate that these emissions account for up to 30-35% of the total methane generated in the anaerobic reactor. A conventional biofilter (BF) operated at an empty bed residence time of 4 min was used to treat these emissions for 70 d. In spite of the fluctuations in the methane inlet concentrations derived from the operation of the wastewater treatment plant (WWTP), it was possible to operate at pseudo-steady-state conditions, achieving average removal efficiencies of 76.5% and maximum elimination capacities of 30.1 g m(-3) h(-1). Odour removal was quantified as 99.1%. Fluorescence in situ hybridization probes as well as metabolic activity assays demonstrated the suitability of the biomass developed in the WWTP as inoculum to start up the BF due to the presence of methanotrophic bacteria.


Subject(s)
Bacteria, Anaerobic/metabolism , Methane/isolation & purification , Odorants/prevention & control , Sewage/microbiology , Water Pollutants, Chemical/isolation & purification , Water Purification/instrumentation , Equipment Design , Equipment Failure Analysis , Methane/metabolism , Odorants/analysis , Water Purification/methods
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