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Energy Procedia(2)
Bioelectrochemical Systems: Vol.1 Principles and Processes(1)
Bioengineering(1)
FEMS microbiology reviews(1)
Frontiers in Microbiology(1)
A novel miniaturized terrestrial microbial fuel cell reveals rapid electrochemical signals
Conference ObjectAbstract: In this study, a novel miniature terrestrial microbial fuel cells (TMFCs) inoculated with commercialPalabras claves:bioelectricity, electrogenic process, Microbial fuel cells, open circuit voltage, soilAutores:Bakonyi P., Bélafi-Bakó K., Celso Guillermo Recalde Moreno, Kadier A., Magdy M. Echeverría, Nemestóthy N., Rakhely G., Washington N. LogroñoFuentes:scopusEssential Factors for Performance Improvement and the Implementation of Microbial Electrolysis Cells (MECs)
Book PartAbstract: The microbial electrolysis cell (MEC) is a novel biotechnological process that can translate the chePalabras claves:Anode and cathode materials, Anodic electron transport, Applied voltage in MEC, Biohydrogen gas production, Exoelectrogens, MEC reactor geometry, operating conditionsAutores:Alabbosh K.F.S., Chaurasia A.K., Hamid A.A., Hasan H.A., Ilyas R.A., Kadier A., Ma P.C., Rai P.K., Sapuan S.M., Washington N. LogroñoFuentes:scopusEffect of Inoculum Microbial Diversity in Ex Situ Biomethanation of Hydrogen
ArticleAbstract: The effects of the inoculum origin, temperature or operational changes on ex situ biomethanation byPalabras claves:Biomethane, Homoacetogenesis, hydrogen, hydrogenotrophic methanogens, methanogenic communities, Power-to-Gas, RENEWABLE ENERGYAutores:Harms H., Kleinsteuber S., Kluge P., Nikolausz M., Washington N. LogroñoFuentes:scopusNone-platinum electrode catalysts and membranes for highly efficient and inexpensive H<inf>2</inf> production in microbial electrolysis cells (MECs): A review
ArticleAbstract: Microbial electrolysis cell (MEC) is a gripping bio-electrochemical device producing H2 gas from renPalabras claves:Anode materials, Biocathode, Cathode catalysts, Hydrogen production, Hydrogen production rate (HPR), Microbial electrolysis cell (MEC), Stainless steel (SS)Autores:Hamid A.A., Hasan H.A., Kadier A., Kalil M.S., Mohamed A., Rai P.K., Washington N. LogroñoFuentes:scopusMicrobial Communities in Flexible Biomethanation of Hydrogen Are Functionally Resilient Upon Starvation
ArticleAbstract: Ex situ biomethanation allows the conversion of hydrogen produced from surplus electricity to methanPalabras claves:anaerobic digester, biogas upgrading, Biomethane, Hydrogenotrophic methanogenesis, intermittent feeding, METHANOBACTERIUM, Power-to-Gas, Wastewater treatmentAutores:Harms H., Kleinsteuber S., Kluge P., Nikolausz M., Popp D., Washington N. LogroñoFuentes:scopusMicrobial resource management for ex situ biomethanation of hydrogen at alkaline ph
ArticleAbstract: Biomethanation is a promising solution to convert H2 (produced from surplus electricity) and CO2 toPalabras claves:biogas upgrading, Biomethane, Energy storage, Formate, Homoacetogenesis, Hydrogenotrophic methanogenesis, METHANOBACTERIUM, Methanoculleus, Power-to-GasAutores:Harms H., Kleinsteuber S., Nikolausz M., Popp D., Sträuber H., Washington N. LogroñoFuentes:scopusSingle Phase Natural Circulation Flow through Solar Evacuated Tubes Collectors on the Equatorial Zone
Conference ObjectAbstract: Thermal performance of water inside of a glass evacuated tubes solar colector under the action of soPalabras claves:comparative experimental studies, solar water heaters, Thermal behavior, tilt angle of the collector, water glassAutores:Ávila-Vega C.F., Celso Guillermo Recalde Moreno, Cisneros C., Recalde M., Washington N. LogroñoFuentes:googlescopusThe microbiology of Power-to-X applications
ReviewAbstract: Power-to-X (P2X) technologies will play a more important role in the conversion of electric power toPalabras claves:green hydrogen, microbial electrochemical technologies, microbial protein, p2g, p2x, power-to-xAutores:De Vrieze J., Harnisch F., Kleinsteuber S., Kretzschmar J., Nikolausz M., Washington N. LogroñoFuentes:scopus