Journal of Environmental Science and Health Part A Environmental Science and Engineering and Toxicology · 1993 · 19 citations · 6 references
Sewage Sludge TreatmentEngineeringBiological Nutrient RemovalLand ApplicationBiological Waste TreatmentMunicipal WastewaterWastewater TreatmentSaline WastewaterNonsaline WastewaterBioremediationWater TreatmentModel A2/oEnvironmental MicrobiologyAquacultural SystemsWater QualityWastewater ManagementWaste ManagementAnimal Waste ManagementEnvironmental EngineeringEnvironmental Remediation
Abstract The effect of a saline wastewater on the performance of a biological nutrient removal system was investigated using a model A2/O activated sludge system. The system was operated at a 13 day sludge age with a salinity level of 4,000 mg/l and compared with a similarly operated system with a salinity level of 200 mg/l. Mass balance calculations and the student t‐test were used for data analysis. It was found that a COD removal efficiency of 90 percent can be achieved when treating wastewater having an influent salinity of 4,000 mg/l. Nitrogen could be removed from the saline wastewater with the same efficiency as for the nonsaline wastewater. Excess biological phosphorus removal efficiency decreased from 82 percent to 25 percent at salinity levels of 200 and 4,000 mg/l, respectively. Key words: nutrient removalsalinitynitrogenphosphorusactivated sludge Notes Author from whom reprints should be requested
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Standard methods: For the examination of water and waste water
Analytical Biochemistry · 1990 · 72.5K citations · Full text
Sewage and industrial wastes in 1945.
Mohlman Fw · PubMed · 1946 · 293 citations
Industrial Wastes, Industrial Wastewater Management, Engineering +7