Knowledge Agora



Similar Articles

Title Carbon dioxide and organic waste valorization by microbial electrosynthesis and electro-fermentation
ID_Doc 8148
Authors Jiang, Y; May, HD; Lu, L; Liang, P; Huang, X; Ren, ZJ
Title Carbon dioxide and organic waste valorization by microbial electrosynthesis and electro-fermentation
Year 2019
Published
Abstract Carbon-rich waste materials (solid, liquid, or gaseous) are largely considered to be a burden on society due to the large capital and energy costs for their treatment and disposal. However, solid and liquid organic wastes have inherent energy and value, and similar as waste CO2 gas they can be reused to produce value-added chemicals and materials. There has been a paradigm shift towards developing a closed loop, biorefinery approach for the valorization of these wastes into value-added products, and such an approach enables a more carbon-efficient and circular economy. This review quantitatively analyzes the state-of-the-art of the emerging microbial electrochemical technology (MET) platform and provides critical perspectives on research advancement and technology development. The review offers side-by-side comparison between microbial electrosynthesis (MES) and electro-fermentation (EF) processes in terms of principles, key performance metrics, data analysis, and microorganisms. The study also summarizes all the processes and products that have been developed using MES and EF to date for organic waste and CO2 valorization. It finally identifies the technological and economic potentials and challenges on future system development. (C) 2018 Elsevier Ltd. All rights reserved.
PDF http://manuscript.elsevier.com/S0043135418309096/pdf/S0043135418309096.pdf

Similar Articles

ID Score Article
7241 Roy, M; Aryal, N; Zhang, YF; Patil, SA; Pant, D Technological progress and readiness level of microbial electrosynthesis and electrofermentation for carbon dioxide and organic wastes valorization(2022)
10117 Quraishi, M; Wani, K; Pandit, S; Gupta, PK; Rai, AK; Lahiri, D; Jadhav, DA; Ray, RR; Jung, SP; Thakur, VK; Prasad, R Valorisation of CO2 into Value-Added Products via Microbial Electrosynthesis (MES) and Electro-Fermentation Technology(2021)Fermentation-Basel, 7.0, 4
8024 Bian, B; Bajracharya, S; Xu, JJ; Pant, D; Saikaly, PE Microbial electrosynthesis from CO2: Challenges, opportunities and perspectives in the context of circular bioeconomy(2020)
12910 Lekshmi, GS; Bazaka, K; Ramakrishna, S; Kumaravel, V Microbial electrosynthesis: carbonaceous electrode materials for CO2 conversion(2023)Materials Horizons, 10.0, 2
26548 Wood, JC; Grov, J; Marcellin, E; Heffernan, JK; Hu, SH; Yuan, ZG; Virdis, B Strategies to improve viability of a circular carbon bioeconomy-A techno-economic review of microbial electrosynthesis and gas fermentation(2021)
5335 Deng, SH; Wang, CQ; Ngo, HH; Guo, WS; You, N; Tang, H; Yu, HB; Tang, L; Han, J Comparative review on microbial electrochemical technologies for resource recovery from wastewater towards circular economy and carbon neutrality(2023)
26305 Salar-García, MJ; Ortiz-Martínez, VM; Sánchez-Segado, S; Sánchez, RV; López, AS; Blanco, LJL; Godínez-Seoane, C Sustainable Production of Biofuels and Biochemicals via Electro-Fermentation Technology(2024)Molecules, 29, 4
18281 Koleva, R; Stankulov, T; Boukoureshtlieva, R; Yemendzhiev, H; Momchilov, A; Nenov, V Alternative Biological Process for Livestock Manure Utilization and Energy Production Using Microbial Fuel Cells(2022)Journal Of The Electrochemical Society, 169.0, 3
19755 Koul, Y; Devda, V; Varjani, S; Guo, WS; Ngo, HH; Taherzadeh, MJ; Chang, JS; Wong, JWC; Bilal, M; Kim, SH; Bui, XT; Parra-Saldívar, R Microbial electrolysis: a promising approach for treatment and resource recovery from industrial wastewater(2022)Bioengineered, 13.0, 4
23828 Alvarez-Pugliese, CE; Donneys-Victoria, D; Cardona-Velez, WJ; Botte, GG Perspectives on electrochemical valorization of organic waste(2024)
Scroll