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Biodegradation ; 9(3-4): 233-45, 1998.
Article in English | MEDLINE | ID: mdl-10022067

ABSTRACT

This paper reviews the operation of a full-scale, fixed-bed digester treating a citric acid production wastewater with a COD:sulphate ratio of 3-4:1. Support matrix pieces were removed from the digester at intervals during the first 5 years of operation in order to quantify the vertical distribution of biomass within the digester. Detailed analysis of the digester biomass after 5 years of operation indicated that H2 and propionate-utilising SRB had outcompeted hydrogenophilic methanogens and propionate syntrophs. Acetoclastic methanogens were shown to play the dominant role in acetate conversion. Butyrate and ethanol-degrading syntrophs also remained active in the digester after 5 years of operation. Laboratory-scale hybrid reactor treatment at 55 degrees C of a diluted molasses influent, with and without sulphate supplementation, showed that the reactors could be operated with high stability at volumetric loading rates of 24 kgCOD.m-3.d-1 (12 h HRT). In the presence of sulphate (2 g/l-1; COD/sulphate ratio of 6:1), acetate conversion was severely inhibited, resulting in effluent acetate concentrations of up to 4000 mg.l-1.


Subject(s)
Bacteria, Anaerobic/metabolism , Chemical Industry , Citric Acid , Sulfur-Reducing Bacteria/metabolism , Waste Disposal, Fluid , Biodegradation, Environmental , Biomass , Butyrates/metabolism , Methane/metabolism , Oxygen/analysis , Propionates/metabolism , Sulfates/analysis , Temperature
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