LAPSE:2023.36413v1
Published Article
LAPSE:2023.36413v1
Development of a Novel Hydrodynamic Sequencing Batch Reactor for Landfill Leachate Treatment by Shortcut Biological Nitrogen Removal
Minkyung Kim, Kyung Mo, Moonil Kim, Fenghao Cui
August 2, 2023
Abstract
This study introduced an alternative shortcut biological nitrogen removal (SBNR) process for landfill leachate treatment by developing a novel hydrodynamic sequencing batch reactor (H-SBR). The reactor could enhance the oxygen transfer rate (OTR) and nitrite accumulation ratio (NAR) by modifying internal hydrodynamic turbulence intensity. The average chemical oxygen demand (COD) and total nitrogen (TN) concentrations introduced into the reactor were 660 and 250 mg L−1, respectively, and the average removal efficiencies were 93% (COD) and 96% (TN). The effect of geometric parameters on oxygen transfer was estimated by performing a hydrodynamic model and a nonlinear least square analysis. After correcting the constants (α and β) of mass transfer coefficients (KLa) to values of 0.7361 and 1.2639, the model data fit the experiment well with an R-squared value of 0.99. The OTR improved by up to 30%, and hence, increased the NAR by up to 20% with a reduction of about 0.5 kg N kW−1 for power efficiency. The H-SBR development is innovative because the oxygen transfer efficiency was improved by the hydrodynamic modification of internal turbulence intensity, although not by mechanical equipment or chemical supplements. For the SBNR process, the modification of the reactor configuration for OTR enhancement could significantly improve nitrogen removal efficiency with successful nitrite accumulation. In addition to landfill leachate treatment, the H-SBR process can be employed in the treatment of low C/N ratio wastewaters.
Keywords
hydrodynamic model, nitrite accumulation, nitrogen removal, oxygen transfer rate, wastewater treatment
Suggested Citation
Kim M, Mo K, Kim M, Cui F. Development of a Novel Hydrodynamic Sequencing Batch Reactor for Landfill Leachate Treatment by Shortcut Biological Nitrogen Removal. (2023). LAPSE:2023.36413v1
Author Affiliations
Kim M: Department of Civil and Environmental Engineering, Hanyang University, 55 Hanyangdaehak-ro, Ansan City 426-791, Kyeonggido, Republic of Korea
Mo K: Department of Civil and Environmental Engineering, Hanyang University, 55 Hanyangdaehak-ro, Ansan City 426-791, Kyeonggido, Republic of Korea
Kim M: Department of Civil and Environmental Engineering, Hanyang University, 55 Hanyangdaehak-ro, Ansan City 426-791, Kyeonggido, Republic of Korea
Cui F: Center for Creative Convergence Education, Hanyang University, 55 Hanyangdaehak-ro, Ansan City 426-791, Kyeonggido, Republic of Korea [ORCID]
Journal Name
Processes
Volume
11
Issue
7
First Page
1868
Year
2023
Publication Date
2023-06-21
ISSN
2227-9717
Version Comments
Original Submission
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PII: pr11071868, Publication Type: Journal Article
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LAPSE:2023.36413v1
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https://doi.org/10.3390/pr11071868
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Aug 2, 2023
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CC BY 4.0
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Aug 2, 2023
 
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Calvin Tsay
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