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 …

Third-generation biorefineries as the means to produce fuels and chemicals from CO2

Z Liu, K Wang, Y Chen, T Tan, J Nielsen - Nature Catalysis, 2020 - nature.com
Concerns regarding petroleum depletion and global climate change caused by greenhouse
gas emissions have spurred interest in renewable alternatives to fossil fuels. Third …

Zinc pyrithione induced volatile fatty acids promotion derived from sludge anaerobic digestion: Interrelating the affected steps with microbial metabolic regulation and …

Y Li, W Huang, S Fang, Z Li, Z Li, F Wang, X Cheng… - Water Research, 2023 - Elsevier
The massive use of zinc pyrithione (ZPT, as broad-spectrum bactericides) resulted in its high
levels in waste activated sludge (WAS) and affected subsequent WAS treatment. This work …

[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 …

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 …

[HTML][HTML] Microbial electrosynthesis: where do we go from here?

L Jourdin, T Burdyny - Trends in Biotechnology, 2021 - cell.com
The valorization of CO 2 to valuable products via microbial electrosynthesis (MES) is a
technology transcending the disciplines of microbiology,(electro) chemistry, and …

[HTML][HTML] The integration of bio-catalysis and electrocatalysis to produce fuels and chemicals from carbon dioxide

X Tan, J Nielsen - Chemical Society Reviews, 2022 - pubs.rsc.org
The dependence on fossil fuels has caused excessive emissions of greenhouse gases
(GHGs), leading to climate changes and global warming. Even though the expansion of …

Engineering extracellular electron transfer pathways of electroactive microorganisms by synthetic biology for energy and chemicals production

J Zhang, F Li, D Liu, Q Liu, H Song - Chemical Society Reviews, 2024 - pubs.rsc.org
The excessive consumption of fossil fuels causes massive emission of CO2, leading to
climate deterioration and environmental pollution. The development of substitutes and …

Carbon dioxide and organic waste valorization by microbial electrosynthesis and electro-fermentation

Y Jiang, HD May, L Lu, P Liang, X Huang, ZJ Ren - Water research, 2019 - Elsevier
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 …

[HTML][HTML] Recent advances in the unconventional design of electrochemical energy storage and conversion devices

SV Venkatesan, A Nandy, K Karan, SR Larter… - Electrochemical Energy …, 2022 - Springer
As the world works to move away from traditional energy sources, effective efficient energy
storage devices have become a key factor for success. The emergence of unconventional …