Simulation of a wastewater treatment plant receiving industrial effluents

被引:0
|
作者
Mhlanga, F. T. [1 ]
Brouckaert, C. J. [1 ]
Foxon, K. M. [1 ]
Fennemore, C. [2 ]
Mzulwini, D. [1 ]
Buckley, C. A. [1 ]
机构
[1] Univ KwaZulu Natal, Sch Chem Engn, Pollut Res Grp, ZA-4041 Durban, South Africa
[2] eThekwini Water Serv, ZA-4041 Durban, South Africa
关键词
oxygen uptake rate; activated sludge process; calibration; ACTIVATED-SLUDGE MODELS; CALIBRATION; REACTOR; TOOL; COD;
D O I
10.4314/wsa.v35i4.76805
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
A process model simulating the Mariannridge Wastewater Treatment Plant, located in the eThekwini Municipality, has been developed in the WEST (Worldwide Engine for Simulation, Training and Automation) modelling environment, based on the IWA Activated Sludge Model No. 3 (ASM3). The treatment plant receives a high proportion of industrial effluents. The development of the model involves the characterisation of the influent wastewater and determining model parameters (kinetic and stoichiometric coefficients) by undertaking batch respirometric tests on the wastewater and activated sludge, flocculation filtration and simulation or the batch respirometric experiment. To account for equipment-specific factors, the simulation model was calibrated against plant data covering a year's operation. The model is intended to be used as part of a system to evaluate the ability of a receiving wastewater treatment works to adequately treat a particular industrial effluent before granting a permit for it to be discharged to sewer.
引用
收藏
页码:447 / 454
页数:8
相关论文
共 50 条
  • [1] Occurrence of triclosan in the tropical rivers receiving the effluents from the hospital wastewater treatment plant
    Gordon C. C. Yang
    Hsin-Jen Tsai
    Fu-Kuei Chang
    [J]. Environmental Monitoring and Assessment, 2015, 187
  • [2] Occurrence of triclosan in the tropical rivers receiving the effluents from the hospital wastewater treatment plant
    Yang, Gordon C. C.
    Tsai, Hsin-Jen
    Chang, Fu-Kuei
    [J]. ENVIRONMENTAL MONITORING AND ASSESSMENT, 2015, 187 (03)
  • [3] Using a Battery of Bioassays to Assess the Toxicity of Wastewater Treatment Plant Effluents in Industrial Parks
    Yang, Bin
    Cui, Haiyan
    Gao, Jie
    Cao, Jing
    Klobucar, Goran
    Li, Mei
    [J]. TOXICS, 2023, 11 (08)
  • [4] Genotoxicity of influents and effluents of the wastewater treatment plant
    Filipic, M
    Toman, MJ
    [J]. WATER SCIENCE AND TECHNOLOGY, 1996, 34 (7-8) : 9 - 14
  • [5] Halonitromethanes formation in wastewater treatment plant effluents
    Song, Hocheol
    Addison, Jesse W.
    Hu, Jia
    Karanfil, Tanju
    [J]. CHEMOSPHERE, 2010, 79 (02) : 174 - 179
  • [6] Simulation of an industrial wastewater treatment plant using artificial neural networks
    Gontarski, CA
    Rodrigues, PR
    Mori, M
    Prenem, LF
    [J]. COMPUTERS & CHEMICAL ENGINEERING, 2000, 24 (2-7) : 1719 - 1723
  • [7] Assessment of the effects of wastewater treatment plant effluents on receiving streams using oligochaete communities of the porous matrix
    Vivien, Regis
    Lafont, Michel
    Werner, Inge
    Laluc, Melanie
    Ferrari, Benoit J. D.
    [J]. KNOWLEDGE AND MANAGEMENT OF AQUATIC ECOSYSTEMS, 2019, (420)
  • [8] Biopolymeric Composite Columns for Improving Water Quality in a Freshwater Stream Receiving Wastewater Treatment Plant Effluents
    Akpinar, Sahin
    Gurbuz, Fatma
    Ozcan, Samet
    Odabasi, Mehmet
    [J]. JOURNAL OF POLYMERS AND THE ENVIRONMENT, 2024,
  • [9] HEAVY-METALS IN WASTEWATER AND TREATMENT PLANT EFFLUENTS
    MYTELKA, AI
    CZACHOR, JS
    GUGGINO, WB
    GOLUB, H
    [J]. JOURNAL WATER POLLUTION CONTROL FEDERATION, 1973, 45 (09): : 1859 - 1864
  • [10] Fundamentals of electrosorption on activated carbon for wastewater treatment of industrial effluents
    A. Ban
    A. Schafer
    H. Wendt
    [J]. Journal of Applied Electrochemistry, 1998, 28 : 227 - 236