Journal of Environmental Engineering · 2003 · 46 citations · 31 references
Sewage Sludge TreatmentEngineeringDegradation ReactionBiological Waste TreatmentAnaerobic DigestionWastewater TreatmentBiodegradationChemical EngineeringBioremediationWater TreatmentEnvironmental MicrobiologyMixture PhenolAnaerobic BiodegradabilityIndustrial WastewaterWaste ManagementPhenolic CompoundsEnvironmental EngineeringEnvironmental RemediationBatch SystemsMicrobiological Degradation
The anaerobic biodegradability of mixtures of phenolic compounds was studied under continuous and batch systems. Continuous experiments were carried out in up-flow anaerobic sludge bed (UASB) reactors degrading a mixture of phenol and p-cresol as the main carbon and energy sources. The total chemical oxygen demand (COD) removal above 90% was achieved even at organic loading rates as high as 7 kg COD/m3/day. Batch experiments were conducted with mixtures of phenolic compounds (phenol, p-cresol, and o-cresol) to determine the specific biodegradation rates using unadapted and adapted anaerobic granular sludge. Phenol and p-cresol were mineralized by adapted sludge with rates several orders of magnitude higher than unadapted sludge. Additionally, an UASB reactor was operated with the mixture phenol, p-cresol, and o-cresol. After 54 days of operation, 80% of o-cresol (supplied at 132 mg/L) was eliminated. The phenol biodegradation was not affected by the presence of o-cresol. These results demonstrate that major phenolic components in petrochemical effluents can be biodegraded simultaneously during anaerobic treatment.
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