Green synthesis of MeOH derivatives through in situ catalytic transformations of captured CO2 in a membrane integrated photo-microreactor system: A state-of-art review for carbon capture and utilization

Author:

Chakrabortty SankhaORCID,Kumar Ramesh,Nayak Jayato,Jeon Byong-HunORCID,Dargar Shashi KantORCID,Tripathy Suraj K.,Pal Parimal,Ha Geon-SooORCID,Kim Kwang Ho,Jasiński MichałORCID

Publisher

Elsevier BV

Subject

Renewable Energy, Sustainability and the Environment

Reference157 articles.

1. Energy information administration;Wirman,2016

2. Non-metal (oxygen, sulphur, nitrogen, boron and phosphorus)-doped metal oxide hybrid nanostructures as highly efficient photocatalysts for water treatment and hydrogen generation;Jyothi,2019

3. Synergy of biofuel production with waste remediation along with value-added co-products recovery through microalgae cultivation: a review of membrane-integrated green approach;Kumar;Sci Total Environ,2020

4. The influence of co-product handling methodology on greenhouse gas savings of biofuels in the european context;Buchspies;BioEnergy Res,2017

5. Emerging approaches in lignocellulosic biomass pretreatment and anaerobic bioprocesses for sustainable biofuels production;Kumar;J Clean Prod,2022

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