Experimental assessment of reverse water gas shift integrated with chemical looping for low-carbon fuels

被引:0
|
作者
Abbas, Syed Zaheer [1 ,2 ]
de Leeuwe, Christopher [1 ]
Amieiro, Alvaro [3 ]
Poulston, Stephen [3 ]
Spallina, Vincenzo [1 ]
机构
[1] Univ Manchester, Sch Chem, Dept Chem Engn, Booth St E, Manchester M13 9PL, England
[2] Univ Southampton, Dept Chem Engn, Univ Rd, Southampton SO17 1BJ, England
[3] Johnson Matthey Technol Ctr, Reading RG4 9NH, England
基金
英国工程与自然科学研究理事会;
关键词
Chemical looping; CCU; Reverse water gas shift; Syngas production; Net zero emissions; OXYGEN CARRIERS; CO2; CONVERSION; SYNGAS; COMBUSTION; MECHANISMS; CUO/AL2O3; PRESSURE; KINETICS;
D O I
10.1016/j.jcou.2024.102775
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Chemical looping integrated with reverse water gas (CL-RWGS) shift is presented in this study using Cu-based oxygen carrier (OC) supported on Al2O3 has been used to convert the CO2 and H-2 mixture stream into a syngas stream with a tailored H-2 to CO ratio and relevant conditions. The results demonstrated consistent breakthrough curves during redox cycles, confirming the chemical stability of the material. In 10 consecutive cycles at 600 degrees C and 1 bar, bed temperatures increased by 184 degrees C and 132 degrees C across the bed during oxidation and reduction stages respectively. The cooling effects during RWGS showed a decline in solid temperatures demonstrating the effectiveness of the heat removal strategy while attaining a CO2-to-CO conversion close >48%. The outlet gas maintains a H-2/CO ratio above 2, confirming the material's dual role as OC and catalyst. During complete CL-RWGS cycles, varying temperature from 500 degrees C to 600 degrees C at a constant H-2/CO2 molar ratio (1.3) and pressure (1 bar) reduces the H-2/CO molar ratio from 3.14 to 2.35, respectively with a remarkable continuous CO2-to-CO conversion > 40%. The decrease in H-2/CO molar ratio with the increase in temperature is consistent with the expected results of equilibrium limited conditions. Additionally, in CL-RWGS cycles, pressure insignificantly affects product molar composition. The study showed the capability of Cu material in converting CO2 into syngas through the CL-RWGS technique.
引用
下载
收藏
页数:10
相关论文
共 50 条
  • [21] PRODUCING HYDROGEN AND POWER USING CHEMICAL LOOPING COMBUSTION AND WATER-GAS SHIFT
    McGlashan, Niall R.
    Childs, Peter R. N.
    Heyes, Andrew L.
    Marquis, Andrew J.
    PROCEEDINGS OF ASME TURBO EXPO 2009, VOL 4, 2009, : 177 - 188
  • [22] Low-Carbon Fuel and Chemical Production by Anaerobic Gas Fermentation
    Daniell, James
    Nagaraju, Shilpa
    Burton, Freya
    Kopke, Michael
    Simpson, Sean Dennis
    ANAEROBES IN BIOTECHNOLOGY, 2016, 156 : 293 - 321
  • [23] An Experimental Study of a Zeolite Membrane Reactor for Reverse Water Gas Shift
    Sakai, Motomu
    Tanaka, Kyoka
    Matsukata, Masahiko
    MEMBRANES, 2022, 12 (12)
  • [24] Modeling of reverse water-gas shift reaction in a membrane integrated microreactor
    Ince, Mert Can
    Koybasi, Hasan
    Avci, Ahmet K.
    CATALYSIS TODAY, 2023, 418
  • [25] Syngas production from NH3 and CO2 through chemical looping ammonia cracking- reverse water gas shift
    Keller, Martin
    Sharma, Atul
    JOURNAL OF CO2 UTILIZATION, 2023, 76
  • [26] Low-carbon hydrogen, power and heat production based on steam methane reforming and chemical looping combustion
    Zare, Ali Akbar Darabadi
    Yari, Mortaza
    Nami, Hossein
    Mohammadkhani, Farzad
    ENERGY CONVERSION AND MANAGEMENT, 2023, 279
  • [27] Synthetic gas networks for the statistical assessment of low-carbon distribution systems
    Vaccariello, Enrico
    Trinchero, Riccardo
    Leone, Pierluigi
    Stievano, Igor S.
    SUSTAINABLE ENERGY GRIDS & NETWORKS, 2022, 31
  • [28] The Role of Flexibility in the Integrated Operation of Low-Carbon Gas and Electricity Systems: A Review
    Amiri, Mohammad Mehdi
    Ameli, Mohammad Taghi
    Strbac, Goran
    Pudjianto, Danny
    Ameli, Hossein
    ENERGIES, 2024, 17 (09)
  • [29] Oil and gas companies' low-carbon emission transition to integrated energy companies
    Lu, Hongfang
    Guo, Lijun
    Zhang, Yitong
    SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 686 : 1202 - 1209
  • [30] Oxygen vacancy modulation for enhanced hydrogen production via chemical looping water-gas shift
    Zhou, Yufen
    Yang, Feiyong
    Ren, Junhua
    Chen, Chonglai
    He, Haihua
    Huang, Wei
    Journal of the Energy Institute, 2024, 117