Sensitivity study of integrated carbon capture and methanation process using dual function materials

被引:5
作者
Chen, Yuhan [1 ]
Shen, Laihong [1 ]
Chen, Liangyong [1 ]
机构
[1] Southeast Univ, Sch Energy & Environm, Nanjing 210096, Peoples R China
关键词
CO2 capture and utilization; Integrated carbon capture and methanation; Dual function materials; Process simulation; Sensitivity study; POSTCOMBUSTION CO2 CAPTURE; FLUE-GAS; CONVERSION; ADSORPTION;
D O I
10.1016/j.seppur.2024.127170
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Integrated Carbon Capture and Methanation (ICCM) is a promising technology to produce Synthetic Natural Gas (SNG) via captured CO 2 and renewable hydrogen. This work performed a sensitivity study on how operation pressure, the types of DFM and point source, and the catalytic metal loading in DFMs affect the performance of ICCM process. As Na-Ru/Al 2 O 3 (Na-DFM), (Li-Na-K)NO 3 -MgO-Ni/CeO 2 -phy (Mg-DFM), and Ni5-CeLi (Li-DFM) were adopted as DFMs, the performances of ICCM process were investigated in the range of 0.1 Mpa-5.0 Mpa, showing elevated pressure is favorable to improving capture efficiency and the quality of SNG products, and reducing hydrogen consumption. Under the optimized operation conditions, Na-DFM based ICCM system shows the better overall performance than ICCM system using Mg-DFM or Li-DFM, which energy conversion efficiency, comprehensive energy consumption, and net CO 2 emission are 82.74 %, - 14.61 MJ/kg CO 2 , and - 1.18 kg CO 2 / kg CO 2 , respectively. Circulation rate is the amount of DFMs necessary to be transferred between reactors to ensure the desired CO 2 capture efficiency or SNG productivity; it heavily depends on the type of adsorbent component, capture/hydronation reactions, and the fraction of active adsorbent component in DFMs for CO 2 transport. Na-DFM based ICCM systems using different point sources (Power Plant, Steel Plan, and Cement Plant) possess the approximate performances in terms of energy conversion efficiency, comprehensive energy consumption, net CO 2 emission, and SNG composition; but when Steel Plan is the point source, Na-DFM based ICCM process features of low electricity and hydrogen consumptions. Cyclic redox reactions of catalytic metal and the cycled capture/hydrogenation proceed in parallel in ICCM process. The increased hydrogen consumption and strong exothermic effects arising from the redox reactions of catalytic metal leads to profound performance changes of ICCM system. Overall, the present work is providing comprehensive information and necessary data to guide the design and operation of an ICCM plant.
引用
收藏
页数:13
相关论文
共 52 条
  • [1] Laboratory aging of a dual function material (DFM) washcoated monolith for varying ambient direct air capture of CO2 and in situ catalytic conversion to CH4
    Abdallah, Monica
    Lin, Yuanchunyu
    Farrauto, Robert
    [J]. APPLIED CATALYSIS B-ENVIRONMENTAL, 2023, 339
  • [2] Bio-methanol production from palm wastes steam gasification with application of CaO for CO2 capture: techno-economic-environmental analysis
    AlNouss, Ahmed
    Shahbaz, Muhammad
    Mckay, Gordon
    Al-Ansari, Tareq
    [J]. JOURNAL OF CLEANER PRODUCTION, 2022, 341
  • [3] [Anonymous], 2021, Life Cycle Assessment of Electricity Generation Options
  • [4] Bimetallic catalysts for CO2 capture and hydrogenation at simulated flue gas conditions
    Arellano-Trevino, Martha A.
    Kanani, Nisarg
    Jeong-Potter, Chae W.
    Farrauto, Robert J.
    [J]. CHEMICAL ENGINEERING JOURNAL, 2019, 375
  • [5] Catalysts and adsorbents for CO2 capture and conversion with dual function materials: Limitations of Ni-containing DFMs for flue gas applications
    Arellano-Trevino, Martha A.
    He, Zhuoyan
    Libby, Malia C.
    Farrauto, Robert J.
    [J]. JOURNAL OF CO2 UTILIZATION, 2019, 31 : 143 - 151
  • [6] Synthetic natural gas production in a 1 kW reactor using Ni-Ce/Al2O3 and Ru-Ce/Al2O3: Kinetics, catalyst degradation and process design
    Bailera, Manuel
    Lisbona, Pilar
    Pena, Begona
    Alarcon, Andreina
    Guilera, Jordi
    Perpinan, Jorge
    Romeo, Luis M.
    [J]. ENERGY, 2022, 256
  • [7] Ni loading effects on dual function materials for capture and in-situ conversion of CO2 to CH4 using CaO or Na2CO3
    Bermejo-Lopez, A.
    Pereda-Ayo, B.
    Gonzalez-Marcos, J. A.
    Gonzalez-Velasco, J. R.
    [J]. JOURNAL OF CO2 UTILIZATION, 2019, 34 : 576 - 587
  • [8] Mechanism of the CO2 storage and in situ hydrogenation to CH4. Temperature and adsorbent loading effects over Ru-CaO/Al2O3 and Ru-Na2CO3/Al2O3 catalysts
    Bermejo-Lopez, A.
    Pereda-Ayo, B.
    Gonzalez-Marcos, J. A.
    Gonzalez-Velasco, J. R.
    [J]. APPLIED CATALYSIS B-ENVIRONMENTAL, 2019, 256
  • [9] Behavior of nickel supported on calcium-enriched hydroxyapatite samples for CCU-methanation and ICCU-methanation processes
    Boukha, Zouhair
    Bermejo-Lopez, Alejandro
    De-La-Torre, Unai
    Gonzalez-Velasco, Juan R.
    [J]. APPLIED CATALYSIS B-ENVIRONMENTAL, 2023, 338
  • [10] Life cycle assessment of various hydrogen production methods
    Cetinkaya, E.
    Dincer, I.
    Naterer, G. F.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (03) : 2071 - 2080