Transformation technologies for CO2 utilisation: Current status, challenges and future prospects

ADN Kamkeng, M Wang, J Hu, W Du, F Qian - Chemical Engineering …, 2021 - Elsevier
To prevent global warming and climate change caused by CO 2 emissions, the
Intergovernmental Panel on Climate Change (IPCC) recommends lowering CO 2 emissions …

Fundamentals, applications, and future directions of bioelectrocatalysis

H Chen, O Simoska, K Lim, M Grattieri, M Yuan… - Chemical …, 2020 - ACS Publications
Bioelectrocatalysis is an interdisciplinary research field combining biocatalysis and
electrocatalysis via the utilization of materials derived from biological systems as catalysts to …

Electroactive microorganisms in bioelectrochemical systems

BE Logan, R Rossi, A Ragab, PE Saikaly - Nature Reviews …, 2019 - nature.com
A vast array of microorganisms from all three domains of life can produce electrical current
and transfer electrons to the anodes of different types of bioelectrochemical systems. These …

Transforming the carbon economy: challenges and opportunities in the convergence of low-cost electricity and reductive CO 2 utilization

RG Grim, Z Huang, MT Guarnieri, JR Ferrell… - Energy & …, 2020 - pubs.rsc.org
The increasing availability of renewable electricity at costs competitive with, and even lower
than, electricity from fossil sources along with growing interest and recent technological …

[HTML][HTML] Microbial fuel cells: From fundamentals to applications. A review

C Santoro, C Arbizzani, B Erable, I Ieropoulos - Journal of power sources, 2017 - Elsevier
Abstract In the past 10–15 years, the microbial fuel cell (MFC) technology has captured the
attention of the scientific community for the possibility of transforming organic waste directly …

[HTML][HTML] Microbial electrosynthesis: towards sustainable biorefineries for production of green chemicals from CO2 emissions

P Dessì, L Rovira-Alsina, C Sánchez, GK Dinesh… - Biotechnology …, 2021 - Elsevier
Decarbonisation of the economy has become a priority at the global level, and the resulting
legislative pressure is pushing the chemical and energy industries away from fossil fuels …

Simultaneous reduction of carbon dioxide and energy harvesting using RGO-based SiO2-TiO2 nanocomposite for supercapacitor and microbial electrosynthesis

AH Anwer, M Shoeb, F Mashkoor, A Ali… - Applied Catalysis B …, 2023 - Elsevier
Nowadays, developing a simple, economical, and scalable approach for producing energy
storage and harvesting devices remains challenging. Herein, we developed a mesoporous …

Microbial electrosynthesis from CO2: Challenges, opportunities and perspectives in the context of circular bioeconomy

B Bian, S Bajracharya, J Xu, D Pant, PE Saikaly - Bioresource technology, 2020 - Elsevier
Recycling CO 2 into organic products through microbial electrosynthesis (MES) is attractive
from the perspective of circular bioeconomy. However, several challenges need to be …

Recent advances in microbial CO2 fixation and conversion to value-added products

H Salehizadeh, N Yan, R Farnood - Chemical Engineering Journal, 2020 - Elsevier
Increasing CO 2 levels in atmosphere has led to the unprecedented climate change in
recent years. Conventional methods for CO 2 capture are often cost inefficient, unsafe and …

A review on self-sustainable microbial electrolysis cells for electro-biohydrogen production via coupling with carbon-neutral renewable energy technologies

E Yang, HO Mohamed, SG Park, M Obaid… - Bioresource …, 2021 - Elsevier
Microbial electrolysis cell (MEC) technology is a promising bioelectrochemical hydrogen
production technology that utilizes anodic bio-catalytic oxidation and cathodic reduction …