Juan Manuel
Lema Rodicio
Emérito Honorífico de Universidade
ALBERTE
REGUEIRA LOPEZ
Profesor axudante doutor
Publicacións nas que colabora con ALBERTE REGUEIRA LOPEZ (13)
2023
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Model-aided targeted volatile fatty acid production from food waste using a defined co-culture microbial community
Science of the Total Environment, Vol. 857
2022
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Chain elongation may occur in protein mixed-culture fermentation without supplementing electron donor compounds
Journal of Environmental Chemical Engineering, Vol. 10, Núm. 1
2021
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Kinetic and stoichiometric model for the computer-aided design of protein fermentation into volatile fatty acids
Chemical Engineering Journal, Vol. 406
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Microbial inefficient substrate use through the perspective of resource allocation models
Current Opinion in Biotechnology, Vol. 67, pp. 130-140
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Resource allocation explains lactic acid production in mixed-culture anaerobic fermentations
Biotechnology and Bioengineering, Vol. 118, Núm. 2, pp. 745-758
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Steering the conversion of protein residues to volatile fatty acids by adjusting pH
Bioresource Technology, Vol. 320
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Understanding the effect of trace elements supplementation on volatile fatty acids production from proteins
Journal of Environmental Chemical Engineering, Vol. 9, Núm. 5
2020
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A metabolic model for targeted volatile fatty acids production by cofermentation of carbohydrates and proteins
Bioresource Technology, Vol. 298
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Metabolic modeling for predicting VFA production from protein-rich substrates by mixed-culture fermentation
Biotechnology and Bioengineering, Vol. 117, Núm. 1, pp. 73-84
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Protein composition determines the preferential consumption of amino acids during anaerobic mixed-culture fermentation
Water Research, Vol. 183
2019
2018
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Corrigendum to “Electron bifurcation mechanism and homoacetogenesis explain products yields in mixed culture anaerobic fermentations”[Water Res. 141(2018) 349–356] (S0043135418303750) (10.1016/j.watres.2018.05.013))
Water Research
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Electron bifurcation mechanism and homoacetogenesis explain products yields in mixed culture anaerobic fermentations
Water Research, Vol. 141, pp. 349-356