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Source Journal of Chinese Scientific and Technical Papers
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Volume 40 Issue 6
Sep.  2022
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Article Contents
WU Yuxing, WANG Xiaodong, CHEN Ning, YANG Benliang, YAN Tingliang, HUANG Qing. FULL-SCALE STUDY OF AN INTELLIGENT CARBON DOSING CONTROL SYSTEM IN A TYPICAL URBAN WASTEWATER TREATMENT PLANT[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(6): 212-218,271. doi: 10.13205/j.hjgc.202206027
Citation: WU Yuxing, WANG Xiaodong, CHEN Ning, YANG Benliang, YAN Tingliang, HUANG Qing. FULL-SCALE STUDY OF AN INTELLIGENT CARBON DOSING CONTROL SYSTEM IN A TYPICAL URBAN WASTEWATER TREATMENT PLANT[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(6): 212-218,271. doi: 10.13205/j.hjgc.202206027

FULL-SCALE STUDY OF AN INTELLIGENT CARBON DOSING CONTROL SYSTEM IN A TYPICAL URBAN WASTEWATER TREATMENT PLANT

doi: 10.13205/j.hjgc.202206027
  • Received Date: 2021-10-29
    Available Online: 2022-09-01
  • Publish Date: 2022-09-01
  • Sodium acetate and methanol are widely used as an external carbon source to enhance denitrification for nitrogen removal in wastewater treatment plants.However,the carbon dosage hardly matches the carbon requirement for denitrification properly in practice.To satisfy the dynamic requirements of carbon for denitrification in wastewater biological treatment processes,a real-time online surveillance based intelligent carbon dosing control algorithm was proposed and an intelligent carbon dosing control system was therefore developed to solve the problems caused by manual control of carbon dosing,e.g.over-dosing,time delay,extra carbon dioxide emission,and process stability.Full-scale tests were carried out at a wastewater treatment plant for four months,and the results indicated that the effluent achieved the discharging proposal constantly,meanwhile the sodium acetate consumption was reduced by 21.2% and the chemical cost for acetate acid was reduced by RMB 47200 per month.This work showed an approach to control carbon dosing accurately as well as stabilize the process,which provided technical and equipment support for WWTP automation and carbon emission reduction.
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