Abstract
Anaerobic granules degrading pentachlorophenol (PCP) with specific PCP removal activity up to 14.6 mg/g of volatile suspended solids per day were developed in a laboratory-scale anaerobic upflow sludge blanket reactor at 28 degrees C, by using a mixture of acetate, propionate, butyrate, and methanol as the carbon source. The reactor was able to treat synthetic wastewater containing 40 to 60 mg of PCP per liter at a volumetric loading rate of up to 90 mg/liter of reactor volume per day, with a hydraulic retention time of 10.8 to 15 h. PCP removal of more than 99% was achieved. Results of adsorption of PCP by granular biomass indicated that the PCP removal by the granules was due to biodegradation rather than adsorption. A radiotracer assay demonstrated that the PCP-degrading granules mineralized [14C]PCP to 14CH4 and 14CO2. Toxicity test results indicated that syntrophic propionate degraders and acetate-utilizing methanogens were more sensitive to PCP than syntrophic butyrate degraders. The PCP-degrading granules also exhibited a higher tolerance to the inhibition caused by PCP for methane production and degradation of acetate, propionate, and butyrate, compared with anaerobic granules unadapted to PCP.
MeSH Terms
Acetates
Adsorption
Bacteria, Anaerobic/metabolism
Biodegradation, Environmental
Butyrates
Feasibility Studies
Methane/metabolism
Methanol
Microspheres
Pentachlorophenol/metabolism,pharmacokinetics
Propionates
Waste Disposal, Fluid
Water Pollutants, Chemical/metabolism,pharmacokinetics
Chemicals
Acetates
Butyrates
Propionates
Water Pollutants, Chemical
Pentachlorophenol
Methane
Methanol
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Wu W M
Michigan Biotechnology Institute, Lansing 48909.
Bhatnagar L
Zeikus J G
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