Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation Conditions

In this study, the biological fluidized bed system was used to treat seafood processing wastewater. The sludge was collected from the secondary sedimentation tank of a municipal wastewater treatment plant and acclimated for 200 days before the experiment. The treatment efficiencies of simulated seaf...

Full description

Bibliographic Details
Main Authors: Yi Ding, Hong You, Wei Sun, Zhansheng Guo, Junxue Mei, Xuguang Hou, Zhenlin Liang, Zhipeng Li
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/13/19/2630
_version_ 1797515706660552704
author Yi Ding
Hong You
Wei Sun
Zhansheng Guo
Junxue Mei
Xuguang Hou
Zhenlin Liang
Zhipeng Li
author_facet Yi Ding
Hong You
Wei Sun
Zhansheng Guo
Junxue Mei
Xuguang Hou
Zhenlin Liang
Zhipeng Li
author_sort Yi Ding
collection DOAJ
description In this study, the biological fluidized bed system was used to treat seafood processing wastewater. The sludge was collected from the secondary sedimentation tank of a municipal wastewater treatment plant and acclimated for 200 days before the experiment. The treatment efficiencies of simulated seafood processing wastewater by biological fluidized bed system with different sludge concentrations, different hydraulic retention times (HRTs) and different bio-carriers were studied. The results showed that the removal efficiency of nitrogen and phosphorus increased with the increasing sludge concentration and by extending hydraulic retention time, and the higher removal efficiency of nitrogen and phosphorus could be obtained with the higher specific surface area of the bio-carrier. The nitrogen removal process analysis showed that the nitrification and denitrification activity of sludge could be changed with different operation conditions resulting in different nitrogen removal efficiency in the biological fluidized bed system. This was mainly because the change tendency of the ammonia nitrogen oxidizing process, nitrite oxidizing process, nitrite reduction process and nitrate reduction process was different with different operation conditions in a high salinity environment. Theoretically, the difference of the inhibitory effect of a high-salt environment on different nitrification and denitrification processes could be used to realize shortcut nitrification denitrification by controlling a certain operation condition.
first_indexed 2024-03-10T06:49:09Z
format Article
id doaj.art-5a6370c33ce9435e97a2321c10745303
institution Directory Open Access Journal
issn 2073-4441
language English
last_indexed 2024-03-10T06:49:09Z
publishDate 2021-09-01
publisher MDPI AG
record_format Article
series Water
spelling doaj.art-5a6370c33ce9435e97a2321c107453032023-11-22T17:00:07ZengMDPI AGWater2073-44412021-09-011319263010.3390/w13192630Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation ConditionsYi Ding0Hong You1Wei Sun2Zhansheng Guo3Junxue Mei4Xuguang Hou5Zhenlin Liang6Zhipeng Li7Marine College, Shandong University, Weihai 264209, ChinaState Key Laboratory of Urban Water Resources and Water Environment, School of Marine Science and Technology, Harbin Institute of Technology at Weihai, Weihai 264200, ChinaShandong Provincial Eco-Environment Monitoring Center, Jinan 250101, ChinaMarine College, Shandong University, Weihai 264209, ChinaMarine College, Shandong University, Weihai 264209, ChinaMarine College, Shandong University, Weihai 264209, ChinaMarine College, Shandong University, Weihai 264209, ChinaState Key Laboratory of Urban Water Resources and Water Environment, School of Marine Science and Technology, Harbin Institute of Technology at Weihai, Weihai 264200, ChinaIn this study, the biological fluidized bed system was used to treat seafood processing wastewater. The sludge was collected from the secondary sedimentation tank of a municipal wastewater treatment plant and acclimated for 200 days before the experiment. The treatment efficiencies of simulated seafood processing wastewater by biological fluidized bed system with different sludge concentrations, different hydraulic retention times (HRTs) and different bio-carriers were studied. The results showed that the removal efficiency of nitrogen and phosphorus increased with the increasing sludge concentration and by extending hydraulic retention time, and the higher removal efficiency of nitrogen and phosphorus could be obtained with the higher specific surface area of the bio-carrier. The nitrogen removal process analysis showed that the nitrification and denitrification activity of sludge could be changed with different operation conditions resulting in different nitrogen removal efficiency in the biological fluidized bed system. This was mainly because the change tendency of the ammonia nitrogen oxidizing process, nitrite oxidizing process, nitrite reduction process and nitrate reduction process was different with different operation conditions in a high salinity environment. Theoretically, the difference of the inhibitory effect of a high-salt environment on different nitrification and denitrification processes could be used to realize shortcut nitrification denitrification by controlling a certain operation condition.https://www.mdpi.com/2073-4441/13/19/2630biological fluidized bed systemseafood processing wastewatertreatment performancenitrogen removal processdifferent operation conditions
spellingShingle Yi Ding
Hong You
Wei Sun
Zhansheng Guo
Junxue Mei
Xuguang Hou
Zhenlin Liang
Zhipeng Li
Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation Conditions
Water
biological fluidized bed system
seafood processing wastewater
treatment performance
nitrogen removal process
different operation conditions
title Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation Conditions
title_full Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation Conditions
title_fullStr Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation Conditions
title_full_unstemmed Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation Conditions
title_short Research on Biological Fluidized Bed System Treatment Performance and Nitrogen Removal Process for Seafood Processing Wastewater with Different Operation Conditions
title_sort research on biological fluidized bed system treatment performance and nitrogen removal process for seafood processing wastewater with different operation conditions
topic biological fluidized bed system
seafood processing wastewater
treatment performance
nitrogen removal process
different operation conditions
url https://www.mdpi.com/2073-4441/13/19/2630
work_keys_str_mv AT yiding researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions
AT hongyou researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions
AT weisun researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions
AT zhanshengguo researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions
AT junxuemei researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions
AT xuguanghou researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions
AT zhenlinliang researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions
AT zhipengli researchonbiologicalfluidizedbedsystemtreatmentperformanceandnitrogenremovalprocessforseafoodprocessingwastewaterwithdifferentoperationconditions