(en) F. Kepler et al., « Methane emissions from terrestrial plants under aerobic conditions », Nature, vol. 439, no 7073, , p. 187-191 (PMID16407949, DOI10.1038/nature04420)
(en) Yuchen Liu et William B. Whiteman, « Metabolic, Phylogenetic, and Ecological Diversity of the Methanogenic Archaea », Annals of the New York Academy of Sciences, vol. 1125, , p. 171.189 (DOI10.1196/annals.1419.019)
nih.gov
ncbi.nlm.nih.gov
(en) F. Kepler et al., « Methane emissions from terrestrial plants under aerobic conditions », Nature, vol. 439, no 7073, , p. 187-191 (PMID16407949, DOI10.1038/nature04420)
revue-ein.com
Serge R. Guiot, « Biométhanation du gaz de synthèse par couplage avec la digestion anaérobie », L'Eau, l'Industrie, les Nuisances, (lire en ligne).
sciencedirect.com
Alitalo A, Niskanen M & Aurab E (2015) Biocatalytic methanation of hydrogen and carbon dioxide in a fixed bed bioreactor Bioresource Technology |Volume 196, Novembre 2015, Pages 600–605 | résumé
Strübing, D., Huber, B., Lebuhn, M., Drewes, J. E., & Koch, K. (2017). High performance biological methanation in a thermophilic anaerobic trickle bed reactor. Bioresource Technology, 245, 1176-1183|résumé
Savvas, S., Donnelly, J., Patterson, T., Chong, Z. S., & Esteves, S. R. (2017). Biological methanation of CO2 in a novel biofilm plug-flow reactor: A high rate and low parasitic energy process. Applied Energy, 202, 238–247. résumé
sciencemag.org
science.sciencemag.org
Tristan Wagner, Jürgen Koch, Ulrich Ermler & Seigo Shima (2017), Methanogenic heterodisulfide reductase (HdrABC-MvhAGD) uses two noncubane [4Fe-4S] clusters for reduction |Science | 18 aout 2017 | Vol. 357, Issue 6352, pp. 699-703 | DOI: 10.1126/science.aan0425 | résumé
Holger Dobbek (2017) Playing marble run to make methane| Science 18 Aug 2017:Vol. 357, Issue 6352, pp. 642-643 |DOI: 10.1126/science.aao2439 | résumé