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Modification of a plant-scale semi-centralized wastewater treatment system to enhance nitrogen and phosphorus removal from black water
by
Bi, Xuejun
, Liu, Changqing
, Gu, Ruihuan
, Yin, Zhixuan
, Yang, Benliang
, Niu, Xinyuan
in
Aeration
/ Aerobic processes
/ Alternative energy sources
/ Anaerobic processes
/ Anoxia
/ Bioreactors
/ black water
/ Blackwater
/ Carbon
/ Carbon sources
/ Chemical oxygen demand
/ chemical-enhanced pretreatment
/ Denitrification
/ dosing of carbon source
/ Efficiency
/ Energy conservation
/ Energy consumption
/ Horticulture
/ Membrane separation
/ Nitrification
/ Nitrogen
/ nitrogen and phosphorus transformation
/ Nitrogen removal
/ Nutrient removal
/ Oxygen requirement
/ Phosphorus
/ Phosphorus removal
/ Pollutants
/ Potential energy
/ Prolongation
/ Reactors
/ Recycling
/ Removal
/ Resource recovery
/ reversed a2o process
/ Sewage
/ Sludge
/ Waste Disposal, Fluid - methods
/ Wastewater treatment
/ Water pollution
/ Water Purification - methods
/ Water treatment
2023
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Modification of a plant-scale semi-centralized wastewater treatment system to enhance nitrogen and phosphorus removal from black water
by
Bi, Xuejun
, Liu, Changqing
, Gu, Ruihuan
, Yin, Zhixuan
, Yang, Benliang
, Niu, Xinyuan
in
Aeration
/ Aerobic processes
/ Alternative energy sources
/ Anaerobic processes
/ Anoxia
/ Bioreactors
/ black water
/ Blackwater
/ Carbon
/ Carbon sources
/ Chemical oxygen demand
/ chemical-enhanced pretreatment
/ Denitrification
/ dosing of carbon source
/ Efficiency
/ Energy conservation
/ Energy consumption
/ Horticulture
/ Membrane separation
/ Nitrification
/ Nitrogen
/ nitrogen and phosphorus transformation
/ Nitrogen removal
/ Nutrient removal
/ Oxygen requirement
/ Phosphorus
/ Phosphorus removal
/ Pollutants
/ Potential energy
/ Prolongation
/ Reactors
/ Recycling
/ Removal
/ Resource recovery
/ reversed a2o process
/ Sewage
/ Sludge
/ Waste Disposal, Fluid - methods
/ Wastewater treatment
/ Water pollution
/ Water Purification - methods
/ Water treatment
2023
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Modification of a plant-scale semi-centralized wastewater treatment system to enhance nitrogen and phosphorus removal from black water
by
Bi, Xuejun
, Liu, Changqing
, Gu, Ruihuan
, Yin, Zhixuan
, Yang, Benliang
, Niu, Xinyuan
in
Aeration
/ Aerobic processes
/ Alternative energy sources
/ Anaerobic processes
/ Anoxia
/ Bioreactors
/ black water
/ Blackwater
/ Carbon
/ Carbon sources
/ Chemical oxygen demand
/ chemical-enhanced pretreatment
/ Denitrification
/ dosing of carbon source
/ Efficiency
/ Energy conservation
/ Energy consumption
/ Horticulture
/ Membrane separation
/ Nitrification
/ Nitrogen
/ nitrogen and phosphorus transformation
/ Nitrogen removal
/ Nutrient removal
/ Oxygen requirement
/ Phosphorus
/ Phosphorus removal
/ Pollutants
/ Potential energy
/ Prolongation
/ Reactors
/ Recycling
/ Removal
/ Resource recovery
/ reversed a2o process
/ Sewage
/ Sludge
/ Waste Disposal, Fluid - methods
/ Wastewater treatment
/ Water pollution
/ Water Purification - methods
/ Water treatment
2023
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Modification of a plant-scale semi-centralized wastewater treatment system to enhance nitrogen and phosphorus removal from black water
Journal Article
Modification of a plant-scale semi-centralized wastewater treatment system to enhance nitrogen and phosphorus removal from black water
2023
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Overview
Owing to the low ratio of chemical oxygen demand to total nitrogen (SCOD/TN), effective removal of nutrient pollutants from black water is difficult. In this study, to enhance nitrogen and phosphorus removal from such wastewater, a series of operational modification strategies was investigated and applied to a plant-scale semi-centralized system used for black water treatment. The results showed that 21 mg Fe3+/L was the optimal dosage for the chemical-enhanced pretreatment process, achieving average removal efficiencies of 51.1 and 74.1% for organics and phosphorus, respectively, with a slight enhancement in nitrogen removal by 2.3%. However, nitrogen and phosphorus removal could be further enhanced to 88 and 96%, by the addition of carbon sources in the post-anoxic zone of the reversed anaerobic–anoxic–aerobic process. Contrastingly, neither the addition of carbon sources in the pre-anoxic zone nor the prolongation of the time for pre-denitrification could significantly improve the nitrogen and phosphorus removal efficiencies. Furthermore, reducing the aeration intensity promoted simultaneous nitrification and denitrification in aerobic reactors, thereby making it a potential energy-saving method for system operation.
Publisher
IWA Publishing
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