Techno-economic analysis of using carbon capture and storage (CCS) in decarbonizing China's coal-fired power plants

被引:46
|
作者
Liu, Shuyang [1 ,2 ]
Li, Hangyu [1 ,2 ]
Zhang, Kai [3 ]
Lau, Hon Chung [3 ]
机构
[1] China Univ Petr East China, Key Lab Unconvent Oil & Gas Dev, Minist Educ, Qingdao 266580, Peoples R China
[2] China Univ Petr East China, Sch Petr Engn, Qingdao 266580, Peoples R China
[3] Natl Univ Singapore, Dept Civil & Environm Engn, Singapore, Singapore
基金
中国国家自然科学基金;
关键词
Carbon neutrality; CO2 capture and storage; Coal-fired power plants; LCOE; Chinese power sector; METHANE DEVELOPMENT; CO2; STORAGE; CAPACITY; OPPORTUNITIES; INVESTMENT; CHALLENGES; CO2-EOR; FIELDS;
D O I
10.1016/j.jclepro.2022.131384
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
To achieve carbon neutrality by 2060, China must tackle CO(2 )emission from its power sector which contributes to 40% (11.8 Gt in 2019) of its total CO2 emission. Previous studies have shown that China has enough subsurface CO2 storage capacity (3,145 Gt) to store 200-300 years of CO2 emission nationwide or 600-700 years of CO2 emission from the power sector. This paper evaluates the economic benefits of using carbon capture and storage (CCS) technology to decarbonize China's coal-fired power plants and conducts a techno-economic analysis of four scenarios to achieve carbon neutrality in China's power sector by 2050. A model of levelized cost of electricity (LCOE) for coal-fired power plants equipped with CCS (CP-CCS) is used for comparing the economic competitiveness of CP-CCS with those of nuclear (NP), hydro (HP), wind (WP) and solar photovoltaic (PV) power plants. Results show that the LCOE of CP-CCS with a CO2 transportation distance of 100 km or less and coal price below 455 CNY/t (70.54 USD/t with the exchange rate set at 1 USD = 6.45 CNY) is less than those of NP, WP and solar PV especially for a high discount rate. The cost of coal and CO2 transportation are the two greatest con-tributors to the LCOE of CP-CCS. In addition, LCOE is sensitive to operation time of the CP-CCS. Retrofitting an existing coal-fired power plant with CCS reduces the LCOE by 10-18% compared to a newly built CP-CCS. Furthermore, a scenario of gradual increase (average annual growth rate of 0.93%) in electricity generation by CP-CCS has a lower total cost than one where coal-fired power plants are aggressively replaced by wind and solar PV power plants. This is especially true if the coal price is low and CO2 transportation distance is short. The result is savings of trillions of CNY in costs for the power sector.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] TECHNO-ECONOMIC ASSESSMENT OF CARBON CAPTURE AND STORAGE FACILITIES COUPLED TO COAL-FIRED POWER PLANTS
    Zhang, Zhihua
    [J]. ENERGY & ENVIRONMENT, 2015, 26 (6-7) : 1069 - 1080
  • [2] Techno-Economic Assessment of Polymer Membrane Systems for Postcombustion Carbon Capture at Coal-Fired Power Plants
    Zhai, Haibo
    Rubin, Edward S.
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2013, 47 (06) : 3006 - 3014
  • [3] Rate-based simulation and techno-economic analysis of coal-fired power plants with aqueous ammonia carbon capture
    Bonalumi, Davide
    Lillia, Stefano
    Valenti, Gianluca
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2019, 199
  • [4] The cost of carbon capture and storage for coal-fired power plants in China
    Hu, Bingyin
    Zhai, Haibo
    [J]. INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL, 2017, 65 : 23 - 31
  • [5] Decarbonizing coal-fired power plants: Carbon capture and storage applied to a thermoelectric complex in Brazil
    Pelissari, Maria Rogieri
    Canas, Stephanie San Martin
    Barbosa, Mariana Oliveira
    Tassinari, Colombo Celso Gaeta
    [J]. RESULTS IN ENGINEERING, 2023, 19
  • [6] Techno-Economic Analysis of CO2 Capture Processes from Coal-fired Power Plants
    Yun, Seokwon
    Lee, Sunghoon
    Kim, Jin-Kuk
    [J]. 28TH EUROPEAN SYMPOSIUM ON COMPUTER AIDED PROCESS ENGINEERING, 2018, 43 : 1519 - 1520
  • [7] Techno-economic performance of wind and coal-fired power with CCS joint planning
    Huang Xianzheng
    Sun Yong
    Xu Zhaofeng
    Xue Yali
    Wang Zhe
    Cai Hongyi
    [J]. 13TH INTERNATIONAL CONFERENCE ON GREENHOUSE GAS CONTROL TECHNOLOGIES, GHGT-13, 2017, 114 : 6677 - 6684
  • [8] Techno-economic evaluation of revamping of coal-fired power plants in India
    Dutta, Animesh
    Dutta, Shantanu
    Basu, Prabir
    [J]. INTERNATIONAL JOURNAL OF GLOBAL ENERGY ISSUES, 2006, 26 (1-2) : 6 - 42
  • [9] Lifecycle Analysis of Coal-fired Power Plants with CCS in China
    Wu Yujia
    Xu Zhaofeng
    Li Zheng
    [J]. 12TH INTERNATIONAL CONFERENCE ON GREENHOUSE GAS CONTROL TECHNOLOGIES, GHGT-12, 2014, 63 : 7444 - 7451
  • [10] Decarbonizing the Coal-Fired Power Sector in China via Carbon Capture, Geological Utilization, and Storage Technology
    Wei, Ning
    Jiao, Zunsheng
    Ellett, Kevin
    Ku, Anthony Y.
    Liu, Shengnan
    Middleton, Richard
    Li, Xiaochun
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2021, 55 (19) : 13164 - 13173