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Applying real-time control to enhance the performance of nitrogen removal in CAST system 被引量:10

Applying real-time control to enhance the performance of nitrogen removal in CAST system
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摘要 A bench-scale reactor(72 L) red with domestic sewage, was operated more than 3 months with three operation modes: traditional mode, modified mode and real-time control mode, so as to evaluate effects of the operation mode on the system performance and to develop a feasible control strategy. Results obtained from fixed-time control study indicate that the variations of the pH and oxidation-reduction potential(ORP) profiles can represent dynamic characteristics of system and the cycle sequences can be controlled and optimized by the control points on the pH and ORP profiles. A control strategy was, therefore, developed and applied to real-time control mode. Compared with traditional mode, the total nitrogen(TN) removal can be increased by approximately 16% in modified mode and a mean TN removal of 92% was achieved in real-time control mode. Moreover, approximately 12.5% aeration energy was saved in real- time control mode. The result of this study shows that the performance of nitrogen removal was enhanced in modified operation mode. Moreover, the real-time control made it possible to optimize process operation and save aeration energy. A bench-scale reactor(72 L) red with domestic sewage, was operated more than 3 months with three operation modes: traditional mode, modified mode and real-time control mode, so as to evaluate effects of the operation mode on the system performance and to develop a feasible control strategy. Results obtained from fixed-time control study indicate that the variations of the pH and oxidation-reduction potential(ORP) profiles can represent dynamic characteristics of system and the cycle sequences can be controlled and optimized by the control points on the pH and ORP profiles. A control strategy was, therefore, developed and applied to real-time control mode. Compared with traditional mode, the total nitrogen(TN) removal can be increased by approximately 16% in modified mode and a mean TN removal of 92% was achieved in real-time control mode. Moreover, approximately 12.5% aeration energy was saved in real- time control mode. The result of this study shows that the performance of nitrogen removal was enhanced in modified operation mode. Moreover, the real-time control made it possible to optimize process operation and save aeration energy.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第5期736-739,共4页 环境科学学报(英文版)
基金 The Project of Beijing Science and Technology Committee (No.020620010120) ,the Hi_Tech Research and Development Program(863) of China (No.2004AA601020) ,the Project under Key International Cooperative Programs of NSFC(No.50521140075) and the Project of Key Laboratory of Beiing
关键词 cyclic activated sludge technology biological nitrogen removal real-time control oxidation-reduction potential(ORP) cyclic activated sludge technology biological nitrogen removal real-time control oxidation-reduction potential(ORP)
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  • 1Al-Ghusain I A, Hao O J, 1995. Use of pH as control parameter for aerobic/ anoxie sludge digestion[J]. J Environ Eng, 121 : 225-235.
  • 2Al-Ghusain I A, Huang J, Hao O J et al. , 1994. Using ptt as a real time control parameter for wastewater treatmeut and sludge digestiou process[ J]. Wat Sci Tech, 30(4): 159-168.
  • 3APHA( Anaeriean Public Health Association), 1995. Standard methods for the examination of water and wastewater[M].^19th ed. Water environment federation. Washington DC. USA: American Public Health Association.
  • 4Chen K C, Chen C Y, Peng J W et al., 2002. Real-time control of an immobilized-cell reactor tbr wastewater treatment using ORP[J]. Wat Res, 36:230-238.
  • 5Demoulin G,Gorouszy,M C,Wutseher K et al.1997 Co-current nitrification/denitrification and biological P-removal in cyclic activated sludge plants by redox controlled cycle operation[J].Wat Sci Tech,35(1):215-224.
  • 6Demoulin G, Rudiger A, Goronszy M C, 2001. Cyclic activated sludge technology-recent operating experience with a 90000 p.e. plant in Germany[J].Wat Sci Tech, 43(3) : 331-337.
  • 7Goronszv M C, 1979. Intermittent operation of tht, extended aeration process for small systems[J]. JWPCF. 51(2): 274-279.
  • 8Goronszy M C, Rigel D, 1991. Biological phosphorus removal in a fed-batch reactor without anoxic mixing sequcnces[J]. JWPCF. 63(3) : 248 258.
  • 9Goronszy M C, Slater N. Konicki D. 1995, The cyclic, activated sludge system for resort area wastewater treatment[J]. War Sci Tech, 32(9/10): 105-114.
  • 10Goronszy M C, Demoulin G, Newland M, 1996. Aerated denitrifieation iu full- scale activated sludge facilitics[J]. Wat Sci Tetch, 34(1/2) : 487-491.

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