Modeling of chemical-looping combustion process of methane with nickel-based oxygen carrier
Author:
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics,Mechanical Engineering,Nuclear Energy and Engineering,Fluid Flow and Transfer Processes
Link
https://link.springer.com/content/pdf/10.1007/s42757-023-0161-2.pdf
Reference48 articles.
1. Abad, A., Adánez, J., García-Labiano, F., de Diego, L. F., Gayán, P., Celaya J. 2007. Mapping of the range of operational conditions for Cu-, Fe-, and Ni-based oxygen carriers in chemical-looping combustion. Chemical Engineering Science, 62: 533–549.
2. Adánez, J., Abad, A. 2019. Chemical-looping combustion: Status and research needs. Proceedings of the Combustion Institute, 37: 4303–4317.
3. Adánez, J., Dueso, C., de Diego, L. F., García-Labiano, F., Gayán, P., Abad, A. 2009. Methane combustion in a 500 Wth chemical-looping combustion system using an impregnated Ni-based oxygen carrier. Energy & Fuels, 23: 130–142.
4. Adánez, J., García-Labiano, F., de Diego, L. F., Gayán, P., Celaya, J., Abad, A. 2006. Nickel-copper oxygen carriers to reach zero CO and H2 emissions in chemical-looping combustion. Industrial & Engineering Chemistry Research, 45: 2617–2625.
5. Chavda, A., Mehta, P., Harichandan, A. 2022. Numerical analysis of multiphase flow in chemical looping reforming process for hydrogen production and CO2 capture. Experimental and Computational Multiphase Flow, 4: 360–376.
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