Model-based thermodynamic analysis of direct air capture units in repurposed power plant cooling towers

被引:0
|
作者
Sager, Robert [1 ]
Pehle, Lukas [1 ]
Petersen, Nils Hendrik [1 ]
Wirsum, Manfred [1 ]
Hannes, Jens [2 ]
机构
[1] Rhein Westfal TH Aachen, Inst Power Plant Technol Steam & Gas Turbines, Aachen, Germany
[2] RWE Power AG, Res & Dev, Essen, Germany
关键词
Direct air capture; Cooling tower; Repurpose; CARBON-DIOXIDE; MASS-TRANSFER; WETTED WALL; CO2; ABSORPTION; KINETICS; PLUME; COST;
D O I
10.1016/j.apenergy.2024.124668
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
To achieve the climate goals, the energy supply system must be sourced by renewable energy instead of fossil fuels. Nevertheless, hard-to-abate sectors require negative emission technologies (NETs) to counteract their emissions. Thus, NETs playa significant role across all future scenarios considered. Since natural NETs, such as afforestation, exhibit lower scaling potential, technological approaches like Direct Air Capture (DAC) represent promising alternatives. However, DAC faces major drawbacks in terms of high energy demands and high required air mass flows due to the low CO2 concentration in ambient air (similar to 400 ppm). This results in elevated costs per captured tonne of CO2. Interestingly, the infrastructure of thermal power plants shares similarities with components of DAC units, in particular the cooling tower due to its handling of high air mass flows. As countries progressively shut down their coal-fired power plants, there is an opportunity to repurpose existing power plant infrastructure into DAC units. Thus, this work investigates the opportunities and challenges of repurposing thermal power plant cooling towers as air contactors of DAC units with a potential of several million tonnes of CO2 captured per year. The investigation focuses on the integration of an absorption-based liquid DAC process into a wet cooling tower. Therefore, the influence of the repurposed geometry of the cooling tower and its internal packing on the operational behavior of the air contactor is analyzed for the cooling towers of the coal power Niederau ss em in Germany using a two-film theory-based model. It can be observed that the repurposed geometry of the absorber enables higher air velocities due to lower pressure losses. At the same time, the reduced travel depth in cooling towers causes a lower capture rate than in geometries optimized for DAC, ultimately resulting in 50-150 tCO2/a per cooling tower. Finally, a sensitivity analysis shows that the effect of the correlations of mass transfer and volume specific surface areas is not negligible.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] THERMODYNAMIC PERFORMANCE ANALYSIS OF A NEW CHP SYSTEM WITH ABSORPTION HEAT PUMP IN A DIRECT AIR COOLING POWER PLANT
    Zhang, Hongsheng
    Zhao, Hongbin
    Li, Zhenlin
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2015, VOL 6A, 2016,
  • [2] Model-Based Evaluation of Air-Side Fouling in Closed-Circuit Cooling Towers
    Nienborg, Bjoern
    Mathieu, Marc
    Schwaerzler, Alexander
    Conzelmann, Katharina
    Schnabel, Lena
    ENERGIES, 2021, 14 (03)
  • [3] Thermodynamic loss analysis of a liquid-sorbent direct air carbon capture plant
    Long-Innes, Ryan
    Struchtrup, Henning
    CELL REPORTS PHYSICAL SCIENCE, 2022, 3 (03):
  • [4] Analysis of Feasibility of Peak Cooling Device Used with Direct Air Cooling Unit in Power Plant
    Cao, Xing
    Zhao, Jinfeng
    Niu, Duanduan
    Jiang, Yan
    Jin, Yingai
    PROCEEDINGS OF THE 2017 INTERNATIONAL CONFERENCE ON MATERIAL SCIENCE, ENERGY AND ENVIRONMENTAL ENGINEERING (MSEEE 2017), 2017, 125 : 286 - 291
  • [5] Exergy Analysis of a Steam Power Plant with Direct Air-cooling System in China
    Zhao Hongbin
    Chai Yuman
    2009 ASIA-PACIFIC POWER AND ENERGY ENGINEERING CONFERENCE (APPEEC), VOLS 1-7, 2009, : 1000 - 1003
  • [6] Efficient Direct Air Capture in Industrial Cooling Towers Mediated by Electrochemical CO2 Release
    Zheng, Ao-Chuan
    Zou, Ye-Bin
    Du, Lin
    Zhang, Qiang
    Daasbjerg, Kim
    Hu, Xin-Ming
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2025, 64 (05)
  • [7] Techno-economic analysis of a combined power plant CO2 capture and direct air capture concept for flexible power plant operation
    Sheha, Moataz
    Graham, Edward J.
    Genser, Emre
    Mallapragada, Dharik
    Herzog, Howard
    Cross, Phillip
    Custer, James
    Goff, Adam
    Cormier, Ian
    COMPUTERS & CHEMICAL ENGINEERING, 2024, 180
  • [8] Analysis of Environmental Impact Factors of Natural Draft Cooling Towers in Power Plant
    Ding, Feng
    Bo, Xin
    ADVANCES IN ENVIRONMENTAL TECHNOLOGIES, PTS 1-6, 2013, 726-731 : 1436 - 1440
  • [9] ANALYSIS OF THE EVAPORATIVE TOWERS COOLING SYSTEM OF A COAL-FIRED POWER PLANT
    Lakovic, Mirjana S.
    Lakovic, Slobodan V.
    Banjac, Milos J.
    THERMAL SCIENCE, 2012, 16 : S375 - S385
  • [10] Optimization of a combined power plant CO2 capture and direct air capture concept for flexible power plant operation
    Graham, Edward J.
    Sheha, Moataz
    Mallapragada, Dharik S.
    Herzog, Howard J.
    Gencer, Emre
    Cross, Phillip
    Custer Jr, James P.
    Goff, Adam
    Cormier, Ian
    ENERGY & ENVIRONMENTAL SCIENCE, 2024, 17 (12) : 4157 - 4174