Source Jouranl of CSCD
Source Journal of Chinese Scientific and Technical Papers
Included as T2 Level in the High-Quality Science and Technology Journals in the Field of Environmental Science
Core Journal of RCCSE
Included in the CAS Content Collection
Included in the JST China
Indexed in World Journal Clout Index (WJCI) Report
Volume 43 Issue 6
Jun.  2025
Turn off MathJax
Article Contents
LI Chenguang, DENG Qiaosi, DU Weiwei. Application of comprehensive activated-anaerobic sludge mechanistic model in optimizing wastewater facilities at a petrochemical wastewater treatment plant[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(6): 95-104. doi: 10.13205/j.hjgc.202506010
Citation: LI Chenguang, DENG Qiaosi, DU Weiwei. Application of comprehensive activated-anaerobic sludge mechanistic model in optimizing wastewater facilities at a petrochemical wastewater treatment plant[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(6): 95-104. doi: 10.13205/j.hjgc.202506010

Application of comprehensive activated-anaerobic sludge mechanistic model in optimizing wastewater facilities at a petrochemical wastewater treatment plant

doi: 10.13205/j.hjgc.202506010
  • Received Date: 2024-02-05
  • Accepted Date: 2025-04-03
  • Rev Recd Date: 2024-02-18
  • To handle the complicated influent, petrochemical wastewater treatment facilities are usually designed as a long process including multiple treatment stages. The traditional operation strategy of such plants mainly relies on the experiences of the operators. It usually takes considerable of time and cost to find the optimum operating conditions, and carries unpredictable risks of non-compliance. The use of mechanistic models for simulating the biological processes has been widely applied in optimizing municipal wastewater treatment plants. It’s more challenging to calibrate the mechanistic models for applications in industrial wastewater treatment. This project used BioWin, a process modeling software, to develop and calibrate a model for simulating biological processes, including anaerobic digestion, pure oxygen aeration systems, surface aeration process, and membrane reactors, at a petrochemical wastewater treatment plant in Tianjin. The calibrated model was used to conduct scenarios analyses, systematically optimizing the wastewater treatment facilities to reduce the operational cost and operator workload.
  • loading
  • [1]
    ZHAO G H,SONG C X,LIU Y R,et al. Research progress on analysis and characterization technology of organic matters in petrochemical wastewater[J]. Environmental Protection of Chemical Industry,2023,43(5):572-579. 赵光辉,宋春侠,刘颖荣,等. 石化废水中有机物分析表征技术研究进展[J]. 化工环保,2023,43(5):572-579.
    [2]
    DUAN C R. Research progress on wastewater treatment technology in petrochemical industry[J]. Contemporary Chemical Research,2021(14):109-110. 段聪仁. 石油化工废水处理技术研究进展[J]. 当代化工研究,2021(14):109-110.
    [3]
    ZHANG X. Research on operation optimization and compliance transformation technology of wastewater treatment plant based on BioWin[D]. Beijing:Beijing University of Civil Engineering and Architecture,2017. 张行. 基于BioWin的污水厂运行优化及达标改造技术研究[D]. 北京:北京建筑大学,2017.
    [4]
    WANG Q,DENG Q S,WU W,et al. Operation diagnosis and carbon source optimization of Yongchuan wastewater treatment plant based on mechanism model[J]. Environmental Engineering,2022,40(6):219-225. 王骞,邓巧斯,吴畏,等. 基于机理模型的永川污水处理厂运行诊断与碳源优化[J]. 环境工程,2022,40(6):219-225.
    [5]
    HU Z R,LU H L,DU W W,et al. Application of process simulation in operation and management of wastewater treatment plants:methods and cases[C]// Annual Conference of China Water Supply and Drainage Magazine. China Water Supply and Drainage Magazine,2012. 胡志荣,卢欢亮,杜惟玮,等. 工艺模拟在污水处理厂运行和管理中的应用——方法和实例[C]// 中国给水排水杂志社年会. 中国给水排水杂志社,2012.
    [6]
    SHAO Q,WAN F,DU W W,et al. Enhancing biological nitrogen removal for a retrofit project using wastewater with a low C/N ratio—a model-based study[J]. Environ Sci Pollut Res,2021,28,53074-53086.
    [7]
    LIU T B,WANG L,WANG M H,et al. Modeling and optimization of wastewater treatment system in refining and chemical enterprises[J]. Sino-Global Energy,2020,25(2):64-71. 刘天波,王乐,王明恒,等. 炼化企业污水处理系统建模与优化[J]. 中外能源,2020,25(2):64-71.
    [8]
    LI C X,YANG Z P,RAO H K,et al. Simulation study on petrochemical wastewater treatment plant based on key parameter determination[J]. Environmental Science and Technology,2023,36(3):1-5. 李彩霞,杨宗璞,饶辉凯,等. 基于关键参数测定的石化污水处理厂模拟研究[J]. 环境科技,2023,36(3):1-5.
    [9]
    DU W W,DENG Q S,BYE C. Using process modeling to overcome the challenge of operating a biological wastewater treatment process treating fertilizer wastewater[C]// IWA Water in Industry,Nanjing,China,2021.
    [10]
    SUN H W,DUAN J H,SONG X N,et al. Simulation and optimization of biochemical treatment unit for refinery wastewater[J]. Environmental Engineering,2017,35(2):19-23,63. 孙华伟,段继海,宋项宁,等. 炼油污水生化处理单元的模拟与优化[J]. 环境工程,2017,35(2):19-23,63.
    [11]
    BARKER P,DOLD P. General model for biological nutrient removal activated-sludge systems:model presentation[J]. Water Environment Research,1997,69(5):969-984
    [12]
    WANG K,SHEN Z,ZHANG M,et al. Research progress on treatment technology of acrylonitrile wastewater[J]. Water Treatment Technology,2014,40(2):8-14. 王科,沈峥,张敏,等. 丙烯腈废水处理技术的研究进展[J]. 水处理技术,2014,40(2):8-14.
    [13]
    HE X J. Method for deep denitrification and decarbonization of acrylonitrile wastewater by Sohio process[J]. Industrial Water Treatment,2014,34:55-59. 何小娟. Sohio法丙烯腈污水深度脱氮除碳的方法[J],工业水处理,2014,34:55-59
    [14]
    ZHANG X F,ZHANG H,LUO Z. High-efficiency treatment technology of electrochemical-chemical composite oxidation for acrylonitrile wastewater[J]. Modern Chemical Industry,2018,38(6):179-181. 张晓飞,张华,罗臻. 丙烯腈污水电化学-化学复合氧化高效处理技术[J]. 现代化工,2018,38(6):179-181.
    [15]
    LI B,PAN X F,LIU T T,et al. Study on advanced treatment technology for biochemical effluent of acrylonitrile[J]. Qilu Petrochemical Technology,2018,46(2):83-88. 李波,潘咸峰,刘婷婷,等. 丙烯腈生化出水深度处理技术研究[J]. 齐鲁石油化工,2018,46(2):83-88.
    [16]
    LIU D Y,RONG H W. Identification of key toxic substances in petrochemical ethylene industrial wastewater[J]. Environmental Engineering,2012,30(4):101-104. 刘旦宇,荣宏伟. 石化乙烯工业废水中关键毒性物质的鉴别[J]. 环境工程,2012,30(4):101-104.
    [17]
    ZHANG H,LIU G Q,ZHANG X F,et al. Composition characteristics and biological toxicity of dissolved organic matter in petrochemical wastewater[J]. Environmental Protection of Chemical Industry,2023,43(4):534-540. 张华,刘光全,张晓飞,等. 石化废水溶解性有机物的组成特征及生物毒性[J]. 化工环保,2023,43(4):534-540.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (84) PDF downloads(1) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return