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E Trably

Showing results (11-20 of 20) with videos related to

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Bioresource Technology|December 3, 2014
Use of fermentative metabolites for heterotrophic microalgae growth: Yields and kineticsV Turon, C Baroukh, E Trably, et al.
Bioresource Technology|December 1, 2020
Impact of microbial inoculum storage on dark fermentative H<sub>2</sub> productionK Dauptain, A Schneider, M Noguer, et al.
Bioresource Technology|April 8, 2025
Microbial adaptation to H<sub>2</sub> improves the conversion of volatile fatty acids to methane during in situ biomethanation even in CO<sub>2</sub>-depleted conditionsL Braga-Nan, E Trably, G Santa-Catalina, et al.
The Science of the Total Environment|September 13, 2021
Microbial community redundance in biomethanation systems lead to faster recovery of methane production rates after starvationL Braga Nan, E Trably, G Santa-Catalina, et al.
Biotechnology Advances|May 1, 2014
Do furanic and phenolic compounds of lignocellulosic and algae biomass hydrolyzate inhibit anaerobic mixed cultures? A comprehensive reviewF Monlau, C Sambusiti, A Barakat, et al.
Bioresource Technology|July 12, 2024
Improved organic matter biodegradation through pulsed H<sub>2</sub> injections during in situ biomethanationM Mahieux, Q Aemig, C Richard, et al.
The Science of the Total Environment|May 3, 2024
Archaeal community composition as key driver of H2 consumption rates at the start-up of the biomethanation processM Mahieux, C Richard, Q Aemig, et al.
Water Research|May 23, 2016
Bioelectrochemical treatment of table olive brine processing wastewater for biogas production and phenolic compounds removalA Marone, A A Carmona-Martínez, Y Sire, et al.
Applied Microbiology and Biotechnology|August 10, 2015
Adaptation of acidogenic sludge to increasing glycerol concentrations for biohydrogen productionE Tapia-Venegas, L Cabrol, B Brandhoff, et al.
Waste Management (New York, N.Y.)|May 9, 2025
Physicochemical properties of carbon-based materials enhance in situ biomethanation performances under organic overloadM Mahieux, L Braga Nan, M Zbair, et al.
Pageof 2

Showing results (11-20 of 20) with videos related to

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 20 results.
Bioresource Technology|December 3, 2014
Use of fermentative metabolites for heterotrophic microalgae growth: Yields and kineticsV Turon, C Baroukh, E Trably, et al.
Bioresource Technology|December 1, 2020
Impact of microbial inoculum storage on dark fermentative H<sub>2</sub> productionK Dauptain, A Schneider, M Noguer, et al.
Bioresource Technology|April 8, 2025
Microbial adaptation to H<sub>2</sub> improves the conversion of volatile fatty acids to methane during in situ biomethanation even in CO<sub>2</sub>-depleted conditionsL Braga-Nan, E Trably, G Santa-Catalina, et al.
The Science of the Total Environment|September 13, 2021
Microbial community redundance in biomethanation systems lead to faster recovery of methane production rates after starvationL Braga Nan, E Trably, G Santa-Catalina, et al.
Biotechnology Advances|May 1, 2014
Do furanic and phenolic compounds of lignocellulosic and algae biomass hydrolyzate inhibit anaerobic mixed cultures? A comprehensive reviewF Monlau, C Sambusiti, A Barakat, et al.
Bioresource Technology|July 12, 2024
Improved organic matter biodegradation through pulsed H<sub>2</sub> injections during in situ biomethanationM Mahieux, Q Aemig, C Richard, et al.
The Science of the Total Environment|May 3, 2024
Archaeal community composition as key driver of H2 consumption rates at the start-up of the biomethanation processM Mahieux, C Richard, Q Aemig, et al.
Water Research|May 23, 2016
Bioelectrochemical treatment of table olive brine processing wastewater for biogas production and phenolic compounds removalA Marone, A A Carmona-Martínez, Y Sire, et al.
Applied Microbiology and Biotechnology|August 10, 2015
Adaptation of acidogenic sludge to increasing glycerol concentrations for biohydrogen productionE Tapia-Venegas, L Cabrol, B Brandhoff, et al.
Waste Management (New York, N.Y.)|May 9, 2025
Physicochemical properties of carbon-based materials enhance in situ biomethanation performances under organic overloadM Mahieux, L Braga Nan, M Zbair, et al.
Pageof 2