[HTML][HTML] Biocatalysis for the application of CO2 as a chemical feedstock

A Alissandratos, CJ Easton - Beilstein Journal of Organic …, 2015 - beilstein-journals.org
Biocatalysts, capable of efficiently transforming CO 2 into other more reduced forms of
carbon, offer sustainable alternatives to current oxidative technologies that rely on …

One-carbon substrate-based biohydrogen production: microbes, mechanism, and productivity

KMRR Simon, HS Lee, JK Lim, TW Kim, JH Lee… - Biotechnology …, 2015 - Elsevier
Among four basic mechanisms for biological hydrogen (H 2) production, dark fermentation
has been considered to show the highest hydrogen evolution rate (HER). H 2 production …

Renewable Hydrogen Production and Storage Via Enzymatic Interconversion of CO2 and Formate with Electrochemical Cofactor Regeneration

E Sapountzaki, U Rova, P Christakopoulos… - …, 2023 - Wiley Online Library
The urgent need to reduce CO2 emissions has motivated the development of CO2 capture
and utilization technologies. An emerging application is CO2 transformation into storage …

Mechanisms for hydrogen production by different bacteria during mixed-acid and photo-fermentation and perspectives of hydrogen production biotechnology

A Trchounian - Critical reviews in biotechnology, 2015 - Taylor & Francis
H2 has a great potential as an ecologically-clean, renewable and capable fuel. It can be
mainly produced via hydrogenases (Hyd) by different bacteria, especially Escherichia coli …

Formate production through carbon dioxide hydrogenation with recombinant whole cell biocatalysts

A Alissandratos, HK Kim, CJ Easton - Bioresource technology, 2014 - Elsevier
The biological conversion of CO 2 and H 2 into formate offers a sustainable route to a
valuable commodity chemical through CO 2 fixation, and a chemical form of hydrogen fuel …

A growth-based screening strategy for engineering the catalytic activity of an oxygen-sensitive formate dehydrogenase

F Li, S Scheller, M Lienemann - Applied and Environmental …, 2024 - journals.asm.org
Enzyme engineering is a powerful tool for improving or altering the properties of biocatalysts
for industrial, research, and therapeutic applications. Fast and accurate screening of variant …

Desulfovibrio vulgaris Growth Coupled to Formate-Driven H2 Production

M Martins, C Mourato, IAC Pereira - Environmental Science & …, 2015 - ACS Publications
Formate is recognized as a superior substrate for biological H2 production by several
bacteria. However, the growth of a single organism coupled to this energetic pathway has …

Realities of the consortium approach in science: sustainable enzymatic production of C1 chemicals from carbon dioxide

A Rodil, I von Ossowski, M Nyyssönen, Y Tian… - RSC …, 2024 - pubs.rsc.org
Research at the frontiers of science is getting increasingly specialised. At the same time,
major global challenges require the cooperation and innovation of different research fields …

Electron transfer pathways of formate-driven H2 production in Desulfovibrio

M Martins, C Mourato, FO Morais-Silva… - Applied Microbiology …, 2016 - Springer
The potential of sulfate-reducing bacteria (SRB) as biocatalysts for H 2 production from
formate was recently demonstrated, but the electron transfer pathways involved were not …

Metabolic engineering and molecular biotechnology of biohydrogen production

S Mohanraj, A Pandey, SV Mohan, K Anbalagan… - Biohydrogen, 2019 - Elsevier
Hydrogen is evolving as one of the prime alternate fuels of the era. Microbial production of
hydrogen is produced either by photo fermentation or dark fermentation. However, most of …