A. Amanullah, C. M. Mcfarlane, A. N. Emery, and A. W. Nienow, Scale-down model to Version postprint Comment citer ce document, 2001.

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

, simulate spatial pH variations in large-scale bioreactors, Biotechnol. Bioeng, vol.73, pp.390-399

G. Antonopoulou, K. Stamatelatou, N. Venetsaneas, M. Kornaros, and G. Lyberatos, Biohydrogen and methane production from cheese whey in a two-stage anaerobic process, Ind. Eng. Chem. Res, vol.47, pp.5227-5233, 2008.

, Municipal waste management report. AIT/UNEP Regional Resource Center for Asia and the Pacific, 2010.

J. R. Bartels, M. B. Pate, and N. K. Olson, An economic survey of hydrogen production from conventional and alternative energy sources, Int. J. Hydrogen Energ, vol.35, pp.8371-8384, 2010.

F. R. Benermann, Report to the International Energy Agency Hydrogen Program, Subtask B, Annex 10, Photoproduction of Hydrogen, 1998.

H. M. Breunig, L. Jin, A. Robinson, and C. D. Scown, Bioenergy potential from food waste in California, Environ. Sci. Technol, vol.51, pp.1120-1128, 2017.

A. Castillo-hernandez, I. Mar-alvarez, and I. Moreno-andrade, Start-up and operation of continuous stirred-tank reactor for biohydrogen production from restaurant organic solid waste, Int. J. Hydrogen Energ, vol.40, pp.17239-17245, 2015.

C. Cavinato, A. Giuliano, D. Bolzonella, P. Pavan, and F. Cecchi, Bio-hydrogen production from food waste by dark fermentation coupled with anaerobic digestion process: A long-term pilot scale experience, Int. J. Hydrogen Energ, vol.37, pp.11549-11555, 2012.

C. F. Chu, Y. Y. Li, K. Q. Xu, Y. Ebie, Y. Inamori et al., A pH-and temperaturephased two-stage process for hydrogen and methane production from food waste, Int. J. Hydrogen Energ, vol.33, pp.4739-4746, 2008.

M. Cooney, N. Maynard, C. Cannizzaro, and J. Benemann, Two-phase anaerobic Version postprint Comment citer ce document, 2007.

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), vol.98, issue.248, pp.2642-2651, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

R. D. Cusick, B. Bryan, D. S. Parker, M. D. Merrill, M. Mehanna et al., Performance of a pilot-scale continuous flow microbial electrolysis cell fed winery wastewater, Appl. Microbiol. Biotechnol, vol.89, pp.2053-2063, 2011.

X. Dai, X. Gai, and B. Dong, Rheology evolution of sludge through high-solid anaerobic digestion, Bioresource Technol, vol.174, pp.6-10, 2014.

B. R. Dhar, E. Elbeshbishy, H. Hafez, and H. S. Lee, Hydrogen production from sugar beet juice using an integrated biohydrogen process of dark fermentation and microbial electrolysis cell, Bioresource Technol, vol.198, pp.223-230, 2015.

L. Dong, Y. Zhenhong, S. Yongming, K. Xiaoying, and Z. Yu, Hydrogen production characteristics of the organic fraction of municipal solid wastes by anaerobic mixed culture fermentation, Int. J. Hydrogen Energ, vol.34, pp.812-820, 2009.

A. Elmekawy, S. Srikanth, S. Bajracharya, H. M. Hegab, P. S. Nigam et al., Food and agricultural wastes as substrates for bioelectrochemical system (BES): The synchronized recovery of sustainable energy and waste treatment, Food Res. Int, vol.73, pp.213-225, 2015.

N. Eshtiaghi, F. Markis, D. Zain, and K. H. Mai, Predicting the apparent viscosity and yield stress of digested and secondary mixtures, Water Res, vol.95, pp.159-164, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02603503

B. C. Ewan and R. W. Allen, A figure of merit assessment of the routes to hydrogen, Int. J. Hydrogen Energ, vol.30, pp.809-819, 2005.

B. J. Gim, J. W. Kim, and S. Y. Park, Economic evaluation of hydrogen production by fermentation, Trans. of the Korean hydrogen and new energy society, vol.19, pp.145-155, 2008.

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

T. I. Grootscholten, K. J. Steinbusch, H. V. Hamelers, and C. J. Buisman, High rate heptanoate production from propionate and ethanol using chain elongation, Bioresource Technol, vol.136, pp.715-718, 2013.

S. K. Han, S. H. Kim, H. W. Kim, and H. S. Shin, Pilot-scale two-stage process: a combination of acidogenic hydrogenesis and methanogenesis, Water Sci. Technol, vol.52, pp.131-138, 2005.

S. K. Han and H. S. Shin, Biohydrogen production by anaerobic fermentation of food waste, Int. J. Hydrogen Energ, vol.29, pp.569-577, 2004.

W. Han, J. Fang, Z. X. Liu, and J. H. Tang, Techno-economic evaluation of a combined bioprocess for fermentative hydrogen production from food waste, Bioresource Technol, vol.202, pp.107-112, 2016.

W. Han, Y. T. Yan, J. J. Gu, Y. W. Shi, J. H. Tang et al., Techno-economic analysis of a novel bioprocess combining solid state fermentation and dark fermentation for H 2 production from food waste, Int. J. Hydrogen Energ, vol.41, pp.22619-22625, 2016.

M. Heyndrickx, P. D. Vos, M. Vancanneyt, and J. D. Ley, The fermentation of glycerol by Clostridium butyricum LMG 1212t2 and 1213t1 and C. pasteurianum LMG 3285, Appl. Microbiol. Biotechnol, vol.32, pp.637-647, 1991.

W. T. Im, D. H. Kim, K. H. Kim, and M. S. Kim, Bacterial community analyses by pyrosequencing in dark fermentative H 2 -producing reactor using organic wastes as a feedstock, Int. J. Hydrogen Energ, vol.37, pp.8330-8337, 2012.

S. Jang, D. H. Kim, Y. M. Yun, M. K. Lee, C. Moon et al., Hydrogen fermentation of food waste by alkali-shock pretreatment: Microbial community analysis and limitation of continuous operation, Bioresource Technol, vol.186, 2015.

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

S. Jayalakshmi, K. Joseph, and V. Sukumaran, Biohydrogen generation from kitchen waste in an inclined plug flow reactor, Int. J. Hydrogen Energ, vol.34, pp.8854-8858, 2009.

J. H. Jo, C. O. Jeon, D. S. Lee, and J. M. Park, Process stability and microbial community structure in anaerobic hydrogen-producing microflora from food waste containing kimchi, J. Biotechnol, vol.131, pp.300-308, 2007.

K. W. Jung, C. Moon, S. K. Cho, S. H. Kim, H. S. Shin et al., Conversion of organic solid waste to hydrogen and methane by two-stage fermentation system with reuse of methane fermenter effluent as diluting water in hydrogen fermentation, Bioresource Technol, vol.139, pp.120-127, 2013.

D. H. Kim, S. Jang, W. M. Yun, M. K. Lee, C. Moon et al., Effect of acid-pretreatment on hydrogen fermentation of food waste: Microbial community analysis by next generation sequencing, Int. J. Hydrogen Energ, vol.39, pp.16302-16309, 2014.

D. H. Kim and M. S. Kim, Hydrogenases for biological hydrogen production, Bioresource Technol, vol.102, pp.8423-8431, 2011.

D. H. Kim and M. S. Kim, Development of a novel three-stage fermentation system converting food waste to hydrogen and methane, Bioresource Technol, vol.127, pp.267-274, 2013.

D. H. Kim, S. H. Kim, K. W. Jung, M. S. Kim, and H. S. Shin, Effect of initial pH independent of operational pH on hydrogen fermentation of food waste, Bioresource Technol, vol.102, pp.8646-8652, 2011.

D. H. Kim, S. H. Kim, K. Y. Kim, and H. S. Shin, Experience of a pilot-scale hydrogenproducing anaerobic sequencing batch reactor (ASBR) treating food waste, Int. J. Hydrogen Energ, vol.35, pp.1590-1594, 2010.

, Version postprint Comment citer ce document

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

D. H. Kim, S. H. Kim, H. W. Kim, M. S. Kim, and H. S. Shin, Sewage sludge addition to food waste synergistically enhances hydrogen fermentation performance, Bioresource Technol, vol.102, pp.8501-8506, 2011.

D. H. Kim, S. H. Kim, and H. S. Shin, Hydrogen fermentation of food waste without inoculum addition, Enzyme Microb. Tech, vol.45, pp.181-187, 2009.

D. H. Kim, J. H. Lee, Y. Hwang, S. Kang, and M. S. Kim, Continuous cultivation of photosynthetic bacteria for fatty acids production, Bioresource Technol, vol.148, pp.277-282, 2013.

D. H. Kim, J. Wu, K. W. Jeong, M. S. Kim, and H. S. Shin, Natural inducement of hydrogen from food waste by temperature control, Int. J. Hydrogen Energ, vol.36, pp.10666-10673, 2011.

M. S. Kim, J. G. Na, M. K. Lee, H. Ryu, Y. K. Chang et al., More value from food waste: Lactic acid and biogas recovery, Water Res, vol.96, pp.208-216, 2016.

S. H. Kim, S. K. Han, and H. S. Shin, Feasibility of biohydrogen production by anaerobic co-digestion of food waste and sewage sludge, Int. J. Hydrogen Energ, vol.29, pp.1607-1616, 2004.

S. H. Kim, S. K. Han, and H. S. Shin, Optimization of continuous hydrogen fermentation of food waste as a function of solids retention time independent of hydraulic retention time, Process Biochem, vol.43, pp.213-218, 2008.

R. Kleerebezem and M. C. Van-loosdrecht, Mixed culture biotechnology for bioenergy production, Curr. Opin. Biotech, vol.18, pp.207-212, 2007.

J. T. Kraemer and D. M. Bagley, Continuous fermentative hydrogen production using a two-phase reactor system with recycle, Environ. Sci. Technol, vol.39, pp.3819-3825, 2005.

L. A. Kucek, M. Nguyen, and L. T. Angenent, Conversion of L-lactate into n-caproate by a continuously fed reactor microbiome, Water Res, vol.93, pp.163-171, 2016.

G. Kumar, P. Bakonyi, T. Kobayashi, K. Xu, P. Sivagurunathan et al.,

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

G. Nemestóthy, N. Bélafi-bakó, and K. , Enhancement of biofuel production via microbial augmentation: The case of dark fermentative hydrogen, Renew. Sustain. Energy Rev, vol.57, pp.879-891, 2016.

E. Lalaurette, S. Thammannagowda, A. Mohagheghi, P. Maness, and B. E. Logan, Hydrogen production from cellulose in a two-stage process combining fermentation and electrohydrogenesis, Int. J. Hydrogen Energ, vol.34, pp.6201-6210, 2009.

J. A. Lalman, S. R. Chaganti, C. Moon, and D. H. Kim, Elucidating acetogenic H 2 consumption in dark fermentation using flux balance analysis, Bioresource Technol, vol.146, pp.775-778, 2013.

J. J. Lay, K. S. Fan, J. Chang, and C. H. Ku, Influence of chemical nature of organic wastes on their conversion to hydrogen by heat-shock digested sludge, Int. J. Hydrogen Energ, vol.28, pp.1361-1367, 2003.

D. Y. Lee, Y. Ebie, K. Q. Xu, Y. Y. Li, and Y. Inamori, Continuous H 2 and CH 4 production from high-solid food waste in the two-stage thermophilic fermentation process with the recirculation of digester sludge, Bioresource Technol, vol.101, pp.42-47, 2010.

D. Y. Lee, K. Q. Xu, T. Kobayashi, Y. Y. Li, and Y. Inamori, Effect of organic loading rate on continuous hydrogen production from food waste in submerged anaerobic membrane bioreactor, Int. J. Hydrogen Energ, vol.39, pp.16863-16871, 2014.

Y. W. Lee and J. Chung, Bioproduction of hydrogen from food waste by pilot-scale combined hydrogen/methane fermentation, Int. J. Hydrogen Energ, vol.35, pp.11746-11755, 2010.

Z. K. Lee, S. L. Li, P. C. Kuo, I. C. Chen, Y. M. Tien et al., Thermophilic bio-energy process study on hydrogen fermentation with vegetable kitchen waste, Int. J. Hydrogen Energ, vol.35, pp.13458-13466, 2010.

, Version postprint Comment citer ce document

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

S. L. Li, S. C. Kuo, J. S. Lin, Z. K. Lee, Y. H. Wang et al., Process performance evaluation of intermittent-continuous stirred tank reactor for anaerobic hydrogen fermentation with kitchen waste, Int. J. Hydrogen Energ, vol.33, pp.1522-1531, 2008.

B. Liu, K. Christiansen, R. Pamas, Z. Xu, and B. Li, Optimizing the production of hydrogen and 1,3-propanediol in anaerobic fermentation of biodiesel glycerol, Int. J. Hydrogen Energ, vol.38, pp.3196-3205, 2013.

Y. C. Li, Y. F. Liu, C. Y. Chu, P. L. Chang, C. W. Hsu et al., Technoeconomic evaluation of biohydrogen production from wastewater and agricultural waste, Int. J. Hydrogen Energ, vol.37, pp.15704-15710, 2012.

M. D. Luccio, C. P. Borges, and T. L. Alves, Economic analysis of ethanol and fructose production by selective fermentation coupled to pervaporation: effect of membrane costs on process economics, Desalination, vol.147, pp.161-166, 2002.

L. Lu, N. Ren, D. Xing, and B. E. Logan, Hydrogen production with effluent from an ethanol-H 2 -coproducing fermentation reactor using a single-chamber microbial electrolysis cell, Biosens. Bioelectron, vol.24, pp.3055-3060, 2009.

V. Luongo, A. Ghimire, L. Frunzo, M. Fabbricino, G. Antonio et al., Photofermentative production of hydrogen and ploy-?-hydroxybutyrate from dark fermentation products, Bioresource Technol, vol.228, pp.171-175, 2017.

A. Marone, O. R. Ayala-campos, E. Trably, A. A. Carmona-martinez, R. Moscoviz et al., Coupling dark fermentation and microbial electrolysis to enhance bio-hydrogen production from agro-industrial wastewaters and by-products in a bio-refinery framework, Int. J. Hydrogen Energ, vol.42, pp.1909-1621, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01605057

, Version postprint Comment citer ce document

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

N. Montpart, L. Rago, J. A. Baeza, and A. Guisasola, Hydrogen production in single chamber microbial electrolysis cells with different complex substrates, Water Res, vol.68, pp.601-615, 2014.

C. Moon, S. Jang, Y. M. Yun, M. K. Lee, D. H. Kim et al., Effect of the accuracy of pH control on hydrogen fermentation, Bioresource Technol, vol.179, pp.595-601, 2015.

R. Moreno, A. Escapa, J. Cara, B. Carracedo, and X. Gómez, A two-stage process for hydrogen production from cheese whey: Integration of dark fermentation and biocatalyzed electrolysis, Int. J. Hydrogen Energ, vol.40, pp.168-175, 2015.

, Biogas business assessment in Korea, vol.63, 2012.

T. Noike, H. Takabatake, O. Mizuno, and M. Ohba, Inhibition of hydrogen fermentation of organic wastes by lactic acid bacteria, Int. J. Hydrogen Energ, vol.27, pp.1367-1371, 2002.

Y. K. Oh, Y. J. Kim, M. S. Kim, and S. H. Park, Economic evaluation of two-step biohydrogen/biomethane production process, Trans. of the Korean hydrogen and new energy society, vol.17, pp.98-108, 2006.

M. Okamoto, T. Miyahara, O. Mizuno, and T. Noike, Biological hydrogen potential of materials charateristic of the organic fraction of municipal solid wastes, Water Sci. Technol, vol.41, pp.25-32, 2000.

J. Pan, R. Zhang, H. M. El-mashad, H. Sun, and Y. Ying, Effect of food to microorganism ratio on biohydrogen production from food waste via anaerobic fermentation, Int. J. Hydrogen Energ, vol.33, pp.6968-6975, 2008.

S. Paudel, Y. J. Kang, Y. S. Yoo, and G. T. Seo, Effect of volumetric organic loading rate (OLR) on H 2 and CH 4 production by two-stage anaerobic co-digestion of food waste and Version postprint Comment citer ce document, 2017.

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

L. Rago, J. A. Baeza, and A. Guisasola, Bioelectrochemical hydrogen production with cheese whey as sole substrate, J. Chem. Technol. Biotechnol, vol.92, pp.173-179, 2017.

H. S. Shin, J. H. Youn, and S. H. Kim, Hydrogen production from food waste in anaerobic mesophilic and thermophilic acidogenesis, Int. J. Hydrogen Energ, vol.29, pp.1355-1363, 2004.

O. Sosa-hernández, S. C. Popat, P. Parameswaran, G. S. Alemán-nava, C. I. Torres et al., Application of microbial electrolysis cells to treat spent yeast from an alcoholic fermentation, Bioresource Technol, vol.200, pp.342-349, 2016.

C. M. Spirito, H. Richter, K. Rabaey, A. J. Stams, and L. T. Angenent, Chain elongation in anaerobic reactor microbiomes to recover resources from waste, Curr. Opin. Biotech, vol.27, pp.115-122, 2014.

C. Sreela-or, P. Plangklang, T. Imai, and A. Reungsang, Co-digestion of food waste and sludge for hydrogen production by anaerobic mixed cultures: Statistical key factors optimization, Int. J. Hydrogen Energ, vol.36, pp.14227-14237, 2011.

K. J. Steinbusch, H. V. Hamelers, C. M. Plugge, and C. J. Buisman, Biological formation of caproate and caprylate from acetate: fuel and chemical production from low grade biomass, Energy Environ. Sci, vol.4, pp.216-224, 2011.

M. E. Stiles and W. H. Holzapfel, Lactic acid bacteria of foods and their current taxonomy, Int. J. Food Microbiol, vol.36, pp.1-29, 1997.

A. Tawfik and M. El-qelish, Continuous hydrogen production from co-digestion of municipal food waste and kitchen wastewater in mesophilic anaerobic baffled reactor, 2012.

, Bioresource Technol, vol.114, pp.270-274

K. Trchounian, V. Abrahamyan, A. Poladyan, and A. Trchounian, Escheriachia coli Version postprint Comment citer ce document, 2015.

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), vol.40, issue.248, pp.9935-9941, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

V. Turon, E. Trably, E. Fouilland, and J. P. Steyer, Potentialities of dark fermentation effluents as substrates for microalgae growth: A review, Process Biochem, vol.51, pp.1843-1854, 2016.

A. C. Van-haandel and G. Lettinga, Anaerobic sewage treatment: A practical guide for regions with a hot climate, 1994.

T. D. Vrije and P. A. Claassen, Bio-methane & Bio-hydrogen: Status and perspectives of biological methane and hydrogen production, Dutch Biological Hydrogen Foundation, pp.103-123, 2003.

X. Wang and Y. C. Zhao, A bench scale study of fermentative hydrogen and methane production from food waste in integrated two-stage process, Int. J. Hydrogen Energ, vol.34, pp.245-254, 2009.

Y. Wang, W. Guo, D. Xing, and J. Chang, Hydrogen production using biocathode single-chamber microbial electrolysis cells fed by molasses wastewater at low temperature, Int. J. Hydrogen Energ, vol.39, pp.19369-19375, 2014.

S. Y. Wu, C. H. Hung, C. N. Lin, H. W. Chen, A. S. Lee et al., Fermentative hydrogen production and bacterial community structure in high-rate anaerobic bioreactors containing silicone-immobilized and self-flocculated sludge, Biotechnol. Bioeng, vol.93, pp.934-946, 2006.

L. Xiao, Z. Deng, K. Y. Fung, and K. M. Ng, Biohydrogen generation from anaerobic digestion of food waste, Int. J. Hydrogen Energ, vol.38, pp.13907-13913, 2013.

Q. Yan, M. Zhao, H. Miao, W. Ruan, and R. Song, Coupling of the hydrogen and Version postprint Comment citer ce document, 2010.

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

M. P. Zacharof and R. W. Lovitt, Complex effluent streams as a potential source of volatile fatty acids, Waste Biomass Valor, vol.4, pp.557-581, 2013.

P. Zhou, E. Elbeshbishy, and G. Nakhla, Optimization of biological hydrogen production for anaerobic co-digestion of food waste and watewater biosolids, Bioresource Technol, vol.130, pp.710-718, 2013.

Y. Zhu and S. T. Yang, Adaptation of Clostridium tyrobutyricum for enhanced tolerance to butyric acid in a fibrous bed bioreactor, Biotechnol. Prog, vol.19, pp.365-372, 2003.

W. Zong, R. Yu, P. Zhang, M. Fan, and Z. Zhou, Efficient hydrogen gas production from cassava and food waste by a two-step process of dark fermentation and photofermentation, Biomass Bioenerg, vol.33, pp.1458-1463, 2009.

, Version postprint Comment citer ce document

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592

, Comment citer ce document

Y. Yun, M. Lee, S. Im, A. Marone, E. Trably et al., Biohydrogen production from Food Waste: Current Status, Limitations, and Future Perspectives, Auteur de correspondance), issue.248, pp.79-87, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02628592