A novel and efficient cogeneration system of waste heat recovery integrated carbon capture and dehumidification for coal-fired power plants

被引:20
|
作者
Su, Zixiang [1 ]
Yang, Liu [1 ,2 ,3 ]
机构
[1] Southeast Univ, Sch Energy & Environm, Minist Educ, Key Lab Energy Thermal Convers & Control, Nanjing 210096, Peoples R China
[2] Southeast Univ, Sch Energy & Environm, Jiangsu Prov Key Lab Solar Energy Sci & Technol, Nanjing 210096, Peoples R China
[3] Minist Educ, Engn Res Ctr Bldg Equipment Energy & Environm, Nanjing 210096, Peoples R China
基金
中国国家自然科学基金;
关键词
Cogeneration system; Cascade power generation system; Three-objective optimization; Dehumidification and carbon capture; Performance assessment; ORGANIC RANKINE-CYCLE; SUPERCRITICAL CO2; ORC; OPTIMIZATION; DESIGN;
D O I
10.1016/j.enconman.2022.115358
中图分类号
O414.1 [热力学];
学科分类号
摘要
Presently, coal-fired power plants are facing the situation of low energy utilization and high pollution emission, to achieve the goal of energy conservation and emission reduction, the implementation of waste heat recovery is imperative. Therefore, a novel and efficient cogeneration system of waste heat recovery integrated carbon capture and dehumidification, is developed in this investigation. The mathematical model of the system is first established and verified, and the performance comparison of high-temperature cycle, cooperativity discussion of cascade power generation system, sensitivity analysis of working parameters, and positive effect of dehumidification system, are then carried out. After mastering the change rule, the three-objective optimization is performed with the objectives of maximum power generation, minimum payback time, and maximum carbon capture capacity. Eventually, the benefit of the coal-fired power plant and cogeneration system is comprehensively evaluated. The numerical results display that the power generation and thermal efficiency of the coal-fired power plant are increased by 13.34% and 5.74%, under maximum working condition, with additional cooling capacity, moisture removal rate, and carbon capture capacity of 135.58 MW, 15.69 g/kg, and 130.99 kg/s, can recover capex within 5.36 years. It conforms to the concept of green and efficient development, complies with the requirements of carbon neutralization, and lays a theoretical foundation for the promotion of cogeneration system in coal-fired power plants.
引用
收藏
页数:20
相关论文
共 50 条
  • [31] Evaporation and concentration of desulfurization wastewater with waste heat from coal-fired power plants
    Zheng, Hao
    Zheng, Chenghang
    Li, Xiang
    Xu, Shiguo
    Liu, Shaojun
    Zhang, Youngxin
    Weng, Weiguo
    Gao, Xiang
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2019, 26 (26) : 27494 - 27504
  • [32] Evaporation and concentration of desulfurization wastewater with waste heat from coal-fired power plants
    Hao Zheng
    Chenghang Zheng
    Xiang Li
    Shiguo Xu
    Shaojun Liu
    Youngxin Zhang
    Weiguo Weng
    Xiang Gao
    [J]. Environmental Science and Pollution Research, 2019, 26 : 27494 - 27504
  • [33] Simulation Study on the Optimization of Carbon Capture System and Its Impact on Thermal System in Subcritical Coal-fired Power Plants
    Li, Yang
    Wang, Nini
    Chen, Zhenhua
    Zhao, Guangqiang
    He, Suoying
    Gao, Ming
    [J]. Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2024, 45 (05): : 1255 - 1263
  • [34] Performance evaluation of a novel design for the waste heat recovery of a cement plant incorporating a coal-fired power plant
    Chen, Heng
    Wang, Yihan
    An, Liuming
    Xu, Gang
    Zhu, Xin
    Liu, Wenyi
    Lei, Jing
    [J]. ENERGY, 2022, 246
  • [35] THERMO-ECONOMIC ANALYSIS ON WASTE HEAT AND WATER RECOVERY SYSTEMS OF BOILER EXHAUST IN COAL-FIRED POWER PLANTS
    Yang, Kaixuan
    Liu, Ming
    Yan, Junjie
    [J]. PROCEEDINGS OF THE ASME 2020 POWER CONFERENCE (POWER2020), 2020,
  • [36] STUDY OF THE POSSIBILITIES OF INTEGRATED TREATMENT OF FLUE GASES AND WASTE-WATER FROM COAL-FIRED HEAT POWER PLANTS
    Glazyrin, Sergey A.
    Aidymbayeva, Zhanar A.
    Dostiyarov, Abay M.
    Zhumagulov, Mikhail G.
    Zlatov, Nikolay
    Stefanovic, Velimir P.
    [J]. THERMAL SCIENCE, 2021, 25 (06): : 4333 - 4345
  • [37] Integration of heat recovery unit in coal fired power plants to reduce energy cost of carbon dioxide capture
    Garlapalli, Ravinder K.
    Spencer, Michael W.
    Alam, Khairul
    Trembly, Jason P.
    [J]. APPLIED ENERGY, 2018, 229 : 900 - 909
  • [38] Design and optimization of waste heat recovery system for supercritical carbon dioxide coal-fired power plant to enhance the dust collection efficiency
    Liu, Ming
    Yang, Kaixuan
    Zhang, Xuwei
    Yan, Junjie
    [J]. JOURNAL OF CLEANER PRODUCTION, 2020, 275
  • [39] Modelling the investment in carbon capture retrofits of pulverized coal-fired plants
    Zhu, Lei
    Fan, Ying
    [J]. ENERGY, 2013, 57 : 66 - 75
  • [40] The Contribution of Carbon Capture and Storage to the Decarbonization of Coal-Fired Power Plants in Selected Asian Countries
    Lau, Hon Chung
    [J]. ENERGY & FUELS, 2023, 37 (20) : 15919 - 15934