CO2 capture and reduction to liquid fuels in a novel electrochemical setup by using metal-doped conjugated microporous polymers

Author:

Ampelli ClaudioORCID,Genovese Chiara,Errahali Mina,Gatti Giorgio,Marchese Leonardo,Perathoner Siglinda,Centi Gabriele

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Electrochemistry,General Chemical Engineering

Reference48 articles.

1. Centi G, Perathoner S, Passalacqua R, Ampelli C (2011) Solar production of fuels from water and CO2. In: (Eds.) NZMaTNV (ed) Carbon-neutral fuels and energy carriers. Series: green chemistry and chemical engineering. CRC Press (Taylor & Francis group), Boca Raton, FL (US), pp 291–323

2. Genovese C, Ampelli C, Perathoner S, Centi G (2013) A Gas-phase electrochemical reactor for carbon dioxide reduction back to liquid fuels. Chem Eng Tran 32:289–294. doi: 10.3303/CET1332049

3. Songolzadeh M, Soleimani M, Takht Ravanchi M, Songolzadeh R (2014) Carbon dioxide separation from flue gases: a technological review emphasizing reduction in greenhouse gas emissions. Sci World J 2014:828131. doi: 10.1155/2014/828131

4. Leung DYC, Caramanna G, Maroto-Valer MM (2014) An overview of current status of carbon dioxide capture and storage technologies. Renew Sustain Energy Rev 39:426–443. doi: 10.1016/j.rser.2014.07.093

5. Huck JM, Lin L-C, Berger AH, Shahrak MN, Martin RL, Bhown AS, Haranczyk M, Reuter K, Smit B (2014) Evaluating different classes of porous materials for carbon capture. Energy Environ Sci. doi: 10.1039/C4EE02636E

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