[HTML][HTML] Photosystem ratio imbalance promotes direct sustainable H 2 production in Chlamydomonas reinhardtii

PS Krishna, S Styring, F Mamedov - Green chemistry, 2019 - pubs.rsc.org
The green alga Chlamydomonas reinhardtii can photoproduce H2 gas for only a few
minutes under anaerobic conditions due to the inhibition of hydrogenase by O2 produced by …

Photosystem ratio imbalance promotes direct sustainable H-2 production in Chlamydomonas reinhardtii

PS Krishna, S Styring, F Mamedov - Green Chemistry, 2019 - diva-portal.org
Solar energy is a renewable energy source that is sufficient to meet future energy demands,
provided it can be efficiently harnessed and stored. 1 Conserving solar energy in the form of …

[引用][C] Photosystem ratio imbalance promotes direct sustainable H2 production in: Chlamydomonas reinhardtii

PS Krishna, S Styring, F Mamedov - Green Chemistry, 2019 - elibrary.ru
The authors are grateful to the Carl Tryggers Foundation (grant number CTS14: 314 and
CTS15: 319) for financial support and Prof. Tony Miller, John Innes Centre, UK for the critical …

[PDF][PDF] Photosystem ratio imbalance promotes direct sustainable H2 production in Chlamydomonas reinhardtii

PS Krishna, S Styring, F Mamedov - Green Chem, 2019 - pdfs.semanticscholar.org
Solar energy is a renewable energy source that is sufficient to meet future energy demands,
provided it can be efficiently harnessed and stored. 1 Conserving solar energy in the form of …

[PDF][PDF] Photosystem ratio imbalance promotes direct sustainable H2 production in Chlamydomonas reinhardtii

PS Krishna, S Styring, F Mamedov - Green Chem, 2019 - researchgate.net
Solar energy is a renewable energy source that is sufficient to meet future energy demands,
provided it can be efficiently harnessed and stored. 1 Conserving solar energy in the form of …

[引用][C] Photosystem ratio imbalance promotes direct sustainable H₂ production in Chlamydomonas reinhardtii

PS Krishna, S Styring, F Mamedov - 2019