, Or, les mesures d'irradiance appliquée réalisées au photomètre ont été faites en 3 points. Il est envisageable que l'estimation du flux correspondant au voltage appliqué soit un peu surestimée et donc entraine une erreur de calcul. Une mesure en actinométrie (mesure du flux par le suivi d'une réaction photochimique) serait véritablement bénéfique et beaucoup plus précise. Par conséquent, sachant que les prédictions du modèle ont une précision de l'ordre de 10 %, vol.686

A. Abeliovitch and Y. Azov, Toxicity of ammonia to algae in sewage oxidation pounds, Applied and Environmental Microbiology, vol.31, pp.801-806, 1976.

C. Achard, Modélisation des propriétés d'équilibre de milieux biologiques et alimentaires à laide de modèles prédictifs, vol.380, 1992.

S. Aikawa, Y. Izumi, F. Matsuda, T. Hasunuma, J. S. Chang et al., , 2012.

, Synergistic enhancement of glycogen production in Arthrospira platensis by optimization of light intensity and nitrate supply, Bioresource Technology, vol.108, pp.211-215

K. Akimoto, F. Sano, T. Homma, M. Wada, M. Nagashima et al., Comparaison of marginal abatement cost curves for 2020 and 2030: Longer perspectives for effective global GHG emission reductions, Sustainability Science, vol.7, pp.157-168, 2012.

R. A. Alberty, Calculation of standart transformed Gibbs Energies and Standart Transformed Enthalpies of Biochemical Reactants, Archives of Biochemistry and Biophysics, vol.353, issue.1, pp.116-130, 1998.

R. A. Alberty, Thermodynamics of Biochemical Reactions, 2003.

T. K. Antal, A. A. Volgusheva, G. P. Kukarskih, T. E. Krendeleva, and A. B. Rubin, Relationships between H 2 photoproduction and different electron transport pathways in sulfur-deprived Chlamydomonas reinhardtii, International Journal of Hydrogen Energy, vol.34, issue.22, pp.9087-9094, 2009.

D. M. Anusuya and L. V. Venkataraman, Supplementary value of the proteins of the blue green algae Spirulina platensis to rice and wheat proteins, Nutrition Reports International, vol.28, pp.1029-1035, 1983.

K. Aoyama, I. Uemura, J. Miyake, and Y. Asada, Fermentative metabolism to produce hydrogen gas and organic compounds in a cyanobacterium, Spirulina platensis, Journal of Fermentation and Bioengineering, vol.83, pp.17-20, 1997.

A. P. , Ultraviolets spectrometric method in standard methods for the examination of water and wastewater, pp.237-239, 1971.

S. M. Arad and D. Atar, Viscosupplementation with algal polysaccharides in the treatment of arthritis, 2007.

S. M. Arad and O. Levy-ontman, Red microalgal cell-wall polysaccharides : biotechnological aspects, Current Opinion in Biotechnology, vol.21, issue.3, pp.358-364, 2010.

S. M. Arad, Y. , and A. , Natural pigments from red microalgae for use in foods and cosmetics, Trends Food Science Technology, vol.3, pp.92-97, 1992.

M. Ayyagari, R. Pande, S. Kamtekar, H. Gao, K. Marx et al., Molecular assembly of proteins and conjugated polymers: toward development of biosensors, Biotechnology and Bioengineering, vol.45, pp.116-121, 1995.

Y. Azov and J. C. Goldman, Free Ammonia Inhibition of Algal Photosynthesis in Intensive Cultures, Applied and Environmental Microbiology, vol.43, pp.735-739, 1982.

L. Barsanti and P. Gualtieri, Algae: anatomy, biochemistry and biotechnology. Florida: Taylors R Francis Group, vol.301, p.pp, 2006.

E. W. Becker, Micro algae as a source of protein, Biotechnology Advances, vol.25, pp.207-210, 2007.

S. Belkin and S. Boussiba, High Internal pH Conveys Ammonia Resistance in Spirulina platensis, Bioresource Technology, vol.38, pp.167-169, 1991.

S. Belkin and S. Boussiba, Resistance of Spirulina platensis to ammonia at high pH values, Plant and Cell Physiology, vol.32, pp.953-958, 1991.

M. Berthelot, Correspondence-'violet d'aniline', Répertoire de chimie appliquée, 1859.

M. K. Bird, R. Dutta-roy, M. Heyl, M. Allison, S. W. Asmar et al., The Huygens Doppler Wind Experiment: Titan winds derived from probe radio frequency measurements, Space Science Reviews, vol.104, pp.613-640, 2002.

E. Blöchl, R. Rachel, S. Burggraf, D. Hafenbradl, H. W. Jannasch et al., , 1997.

. Pyrolobus-fumarii, represents a novel group of archaea, extending the upper temperature limit for life to 113 degrees C, Extremophiles, vol.1, issue.1, pp.12-21

S. Boussiba, Ammonia uptake in the alkalophilic cyanobacterium Spirulina platensis. Plant and Cell Physiology, vol.30, pp.303-308, 1989.

S. Boussiba and J. Gibson, Ammonia translocation in cyanobacteria, FEMS Microbiology Reviews, pp.1-14, 1991.

S. Carmaux, Caractérisation de la mort des cellules animales cultivées en bioréacteur, vol.243, 2008.

C. M. Carvalho, F. R. Francisco, K. Almeida, S. Sato, and A. Converti, Cultivation of Arthrospia (Spirulina) platensis (cyanophyceae) by Fed batch addition of ammonium chloride at exponentially increasing feeding rates, Journal of Phycology, vol.40, pp.589-597, 2004.

P. A. Cawse, The determination of nitrate in soil solutions by ultraviolet spectrometry, Analyst, vol.62, pp.311-315, 1967.

R. Chaiklahan, N. Chirasuwan, P. Triratana, V. Loha, S. Tia et al., , 2013.

, Polysaccharide extraction from Spirulina sp. and its antioxidant capacity, International Journal of Biological Macromolecules, vol.58, pp.73-78

S. Chandrasekhar, Radiative transfer. Dover books of Physics, p.416, 1960.

Y. Christi, Biodiesel from microalgae, Biotechnology Advances, vol.25, issue.3, pp.294-306, 2007.

G. Cogne, C. Lasseur, J. Cornet, C. Dussap, and J. Gros, Growth monitoring of a photosynthetic micro-organism (Spirulina platensis) by pressure measurement, Biotechnology Letters, vol.23, pp.1309-1314, 2001.

G. Cogne, Conception, mise en oeuvre et modélisation d'un photobioréacteur à membrane pour l'étude du comportement de la cyanobactérie Arthrospira platensis en microgravité, p.218, 2003.

G. Cogne, J. Gros, and C. Dussap, Identification of a Metabolic Network Structure Representative of Arthrospira (Spirulina) platensis Metabolism, Biotechnology and Bioengineering, vol.84, issue.6, pp.667-676, 2003.

G. Cogne, J. Gros, C. Dussap, and P. Lafon, A Simple Reliable Bioreactor for Studying the Growth and Metabolism of Photosynthetic Micro-organisms in Space, SAE Technical Papers, pp.1-5, 2003.

G. Cogne, J. Cornet, and J. Gros, Design, operation, and modeling of a membrane photobioreactor to study the growth of the cyanobacterium Arthrospira platensis in space conditions, Biotechnology Progress, vol.21, issue.3, pp.741-750, 2005.

A. Converti, S. Scapazzoni, A. Lodi, and J. C. Carvalho, Ammonium and urea removal by Spirulina platensis, Journal of Industrial Microbiology and Biotechnology, vol.33, issue.1, pp.8-16, 2006.

J. Cornet, Etude cinétique et énergétique d'un photobioréacteur. Etablissement d'un modèle structure. Applications à un écosystème clos artificiel, vol.356, 1992.

J. Cornet, Procédés Limités par le Transfert de Rayonnement en Milieu Hétérogène : Étude des couplages cinétiques et énergétiques dans les photo-bioréacteurs par une approche thermodynamique. HdR à l'Université, vol.349, 2007.

J. Cornet and C. Dussap, A Simple and Reliable Formula for Assessment of Maximum Volumetric Productivities in Photobioreactors, Biotechnology Progress, vol.25, issue.2, pp.424-435, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02841973

J. Cornet, C. Dussap, P. Cluzel, and G. Dubertret, A Structured Model for Simulation of Cultures of the Cyanobacterium Spirulina platensis in Photobioreactors : II . Identification of Kinetic Parameters under Light and Mineral Limitations, Biotechnology and Bioengineering, vol.40, issue.7, pp.826-834, 1992.

J. Cornet, C. Dussap, and J. Gros, Kinetics and energetics of photosynthetic micro-organisms in photobioreactors, Bioprocess and Algae Reactor Technology, pp.153-224, 1998.

C. Critchley, The chloroplast thylakoid membrane system is a molecular conveyor belt, Photosynthetic Research, vol.19, pp.265-276, 1988.

N. Cruvellier, Etude et modéllisation du compartiment nitrificateur de la boucle MELiSSA: coculture sur ammonium et triculture sur urée, p.271, 2017.

M. Cuaresma, I. Garbayo, J. M. Vega, and C. Vilchez, Growth and photosynthetic utilization of inorganic carbon of the microalga Chlamydomonas acidophila isolated from Tinto river, Enzyme and Microbial Technology, vol.40, pp.158-162, 2006.

G. Dai, B. Qiu, and K. Forchhammer, Ammonium tolerance in the cyanobacterium Synechocystis sp. strain PCC 6803 and the role of the psbA multigene family, Plant, Cell and Environment, vol.37, pp.840-851, 2014.

G. Dahi, A. Eskandari, J. Dauchet, F. Gros, M. Roudet et al., Chemical Engineering and Processing : Process Intensi fi cation A novel experimental bench dedicated to the accurate radiative analysis of photoreactors : The case study of CdS catalyzed hydrogen production from sacrificial donors, Chemical Engineering & Processing: Process Intensification, vol.98, pp.174-186, 2015.

, Lina blue A (Natural blue colorant of Spirulina origin), Technical information, Dainippon Ink and Chemicals, 1985.

J. Dauchet, Analyse radiative des photobioréacteurs, p.393, 2012.

J. Dauchet, S. Blanco, and J. Cornet, Journal of Quantitative Spectroscopy & Radiative Transfer Calculation of the radiative properties of photosynthetic microorganisms, Journal of Quantitative Spectroscopy and Radiative Transfer, vol.161, pp.60-84, 2015.

J. Dauchet, J. Cornet, F. Gros, M. Roudet, and C. Dussap, Photobioreactor Modeling and Radiative Transfer Analysis for Engineering Purposes, Advances in Chemical Engineering : Photobioreaction Engineering, vol.48, pp.1-106, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02699821

L. E. De-bashan, A. Trejo, V. A. Huss, J. P. Hernandez, and Y. Bashan, Chlorella sorokiniana UTEX 2805, a heat and intense, sunlight-tolerant microalga with potential for removing ammonium from wastewater, Bioressource Technology, vol.99, pp.4980-4989, 2008.

M. F. De-jesus-raposo, R. M. De-morais, and A. M. De-moaris, Bioactivity and Applications of Sulphated Polysaccharides from Marine Microalgae, Marine Drugs, vol.11, pp.233-252, 2013.

C. Delattre, G. Pierre, C. Laroche, and P. Michaud, Production, extraction and characterization of microalgal and cyanobacterial exopolysaccharides, Biotechnology Advances, vol.34, issue.7, pp.1159-1179, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01658391

F. Deschoenmaeker, Nitrogen Metabolism of Cyanobacteria , Arthrospira sp . PCC 8005, p.340, 2016.

M. Deroche, Relations entre la photosynthèse et l'assimilation de l'azote. Bulletin de La Société Botanique de France, Actualités Botaniques, vol.130, issue.1, pp.85-98, 1983.

P. Dewapriya and S. Kim, Marine microorganisms: an emerging avenue in modern nutraceuticals and functional foods, Food Research International, vol.56, pp.115-125, 2014.

J. C. Dillon and P. A. Phan, Spirulina as a source of proteins in human nutrition, Spiruline algue de vie, vol.12, pp.103-107, 1993.

M. T. Dinsdale and A. E. Walsby, The interaction of cell turgor pressure, gas-vacuolation, and buoyancy in a blue-green alga, Journal of experimental Botany, vol.23, pp.561-570, 1972.

M. Drath, N. Kloft, A. Batschauer, K. Marin, J. Novak et al., , 2008.

, Ammonia triggers photodamage of photosystem II in the cyanobacterium Synechocystis sp. strain PCC 6803, Plant Physiology, vol.147, issue.1, pp.206-221

C. Dussap, Etude thermodynamique et cinétique de la production de polysaccharides microbiens par fermentation en limitation par le transfert d'oxygène : Modèle structuré de la production de xanthane, vol.274, 1988.

P. H. Eilers and J. C. Peeters, A model for the relationship between light intensity and the rate of photosynthesis in phytoplankton, Ecological Modelling, vol.42, pp.199-215, 1988.

A. El-gamal, Biological importance of marine algae, Saudi Pharmaceutical Journal, vol.18, issue.1, pp.1-25, 2010.

E. P. Ensing, S. Ciuti, F. A. De-wijs, D. H. Lentferink, A. Hoedt et al., GPS Based Daily Activity Patterns in European Red Deer and North American Elk (Cervus elaphus): Indication for a Weak Circadian Clock in Ungulates, Plos One, vol.9, issue.9, p.106997, 2014.

M. G. Esquível, H. M. Amaro, T. S. Pinto, P. S. Fevereiro, and F. X. Malcata, Efficient H 2 production via Chlamydomonas reinhardtii, Trends in Biotechnology, vol.29, issue.12, pp.595-600, 2011.

J. Falquet, Spiruline, Aspects Nutritionnels. Antenna Technology, pp.1-41, 1996.

. Fao, Energy and protein requirement, Report of a Joint FAO/WHO adhoc Expert Committee, vol.52, 1973.

B. Farges, C. Laroche, J. Cornet, and C. Dussap, Spectral kinetic modeling and long-term behavior assessment of Arthrospira platensis growth in photobioreactor under red (620 nm) light illumination, Biotechnology Progress, vol.25, issue.1, pp.151-162, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02842123

B. Farges, L. Poughon, A. Pons, and C. Dussap, Methodology for Bioprocess Analysis : Mass Balances , Yields and Stoichiometries, pp.261-286, 2012.

R. Filali-mouhim, J. Cornet, T. Fontaine, B. Fournet, and G. Dubertret, Production, Isolation and Preliminary characterization of the exopolysaccharides of the cyanobacterium Spirulina Platensis, Biotechnology Letters, vol.15, issue.6, pp.567-572, 1993.

E. Flores, J. E. Frías, L. M. Rubio, and A. Herrero, Photosynthetic nitrate assimilation in cyanobacteria, Photosynthesis Research, vol.83, issue.2, pp.117-133, 2005.

R. D. Fox, La Spiruline : Technique, pratique et promesse, vol.246, p.pp, 1999.

E. Gardeva, R. Toshkova, and K. Minkova, Cancer protective action of polysaccharide, derived from red microalga Porphyridium cruentum -A biological backround, Biotechnology and Bioengineering, vol.23, pp.783-787, 2009.

S. Geresh, I. Adin, E. Yarmolinsky, and M. Karpasas, Characterization of the extracellular polysaccharide of Porphyridium sp.: molecular weight determination and rheological properties, Carbohydrate Polymers, vol.50, pp.183-189, 2002.

L. E. Graham and L. W. Wilcox, , 2000.

E. H. Harris, The Chlamydomonas Sourcebook : Organellar and Metabolic Processes, 2009.

A. Hemschemeier, S. Fouchard, L. Cournac, G. Peltier, and T. Happe, Hydrogen production by Chlamydomonas reinhardtii: an elaborate interplay of electron sources and sinks, Planta, vol.227, issue.2, pp.397-407, 2008.

L. Hendrickx, F. Mastroleo, S. Baatout, C. Paille, M. Mergeay et al., A Global Approach to Asses Stress Response of the Bioregenerative Life Support System Organism Rhodospirillum rubrum Under Space-Flight, 2005.

L. Hendrickx, H. De-wever, V. Hermans, F. Mastroleo, N. Morin et al., Microbial ecology of the closed artificial ecosystem MELiSSA (Micro-Ecological Life Support System Alternative): Reinventing and compartmentalizing the Earth's food and oxygen regeneration system for long-haul space exploration missions, Research in Microbiology, vol.157, pp.77-86, 2006.

C. L. Henry and S. S. Hwa, Fed-Batch Cultures, Pinciples and Applications of semi-batch Bioreactors. Cambridge Editions, vol.471, p.pp, 2013.

S. H. Ho, C. Y. Chen, and J. S. Chang, Effect of light intensity and nitrogen starvation on CO 2 fixation and lipid/carbohydrate production of an indigenous microalga Scenedesmus obliquus CNW-N, Bioresource Technology, vol.113, pp.244-252, 2012.

Q. Hu, M. Sommerfeld, E. Jarvis, M. Ghirardi, M. Posewitz et al., Microalgal triacylglycerols as feedstocks for biofuel production: perspectives and advances, Plant Journal, vol.54, pp.621-639, 2008.

C. W. Hua, L. T. Chuang, P. C. Yu, and C. N. Chen, Pigment production by a new thermotolerant microalga Celastrella sp. F50. Food Chemistry, vol.138, pp.2071-2078, 2013.

J. Huang, A. J. Roberts, A. E. Leschziner, and S. L. Reck-peterson, Lis1 Acts as a "Clutch" between the ATPase and Microtubule-Binding Domains of the Dynein Motor, Cell, vol.150, issue.5, pp.975-986, 2012.

M. Huheihel, V. Ishanu, J. Tal, and S. M. Arad, Antiviral effect of red microalgal polysaccharides on Herpes simplex and Varicella zoster viruses, Journal of Applied Phycology, vol.13, issue.2, pp.127-134, 2001.

T. Hasunuma, F. Kikuyama, M. Matsuda, S. Aikawa, Y. Izumi et al., , 2013.

, Dynamic metabolic profiling of cyanobacterial glycogen biosynthesis under conditions of nitrate depletion, Journal of Experimental Botany, vol.64, issue.10, pp.2943-2954

P. Jha, A. Ali, and N. Raghuram, Nitrate-Induction of Nitrate Reductase and its Inhibition by Nitrite and Ammonium Ions in Spirulina platensis, Physiology and Molecular Biology of Plants, vol.13, issue.2, pp.163-167, 2007.

R. P. John, G. S. Anisha, K. M. Nampoothiri, and A. Pandey, Bioresource Technology Micro and macroalgal biomass : A renewable source for bioethanol, Bioresource Technology, vol.102, pp.186-193, 2011.

M. A. Kacena, G. A. Merrell, B. Manfredi, E. E. Smith, D. M. Klaus et al., , 1999.

, Bacterial growth in space flight: logistic growth curve parameters for Escherichia coli and Bacillus subtilis, Applied Microbiology and Biotechnology, vol.51, pp.229-234

S. M. Kim, Y. J. Jung, O. N. Kwon, K. H. Cha, B. H. Um et al., A potential commercial source of fucoxanthin extracted from the microalga Phaeodactylum tricornutum, Applied Biochemistry and Biotechnology, vol.166, pp.1843-1855, 2012.

M. N. Kronick and A. R. Grossman, Immunoassay techniques with fluorescent phycobiliprotein conjugates, Clinical Chemistry, vol.29, pp.1582-1586, 1983.

M. Kumar, S. Kaushik, and P. Goswami, Biomass and Bioenergy Cyanobacteria : A metabolic power house for harvesting solar energy to produce bio-electricity and biofuels, Biomass and Bioenergy, vol.90, pp.187-201, 2016.

C. Lemasson, Contribution à l'étude de la production d'hydrogène par Chlamydomonas reinhardtii : vers la mise en place d'une production continue en photbioréacteur biétagé, p.201, 2015.

Y. Li, M. Horsman, N. Wu, C. Q. Lan, and N. Dubois-calero, Biofuels from microalgae. Biotechnology Progress, vol.24, pp.815-820, 2008.

L. Lin, G. Y. Chan, B. L. Jiang, and C. Y. Lan, Use of ammoniacal nitrogen tolerant microalgae in landfill leachate treatment, Waste Management, vol.27, pp.1376-1382, 2007.

S. Lochab, P. A. Kumar, and N. Raghuram, Molecular characterization of nitrate uptake and assimilatory pathway in Arthrospira platensis reveals nitrate induction and differential regulation, Archives of Microbiology, vol.196, issue.6, pp.385-394, 2014.

A. Lucchetti, Modélisation et conception d'un système de culture de microalgues, vol.175, 2014.

H. Majdoub, M. Mansour, . Ben, F. Chaubet, M. S. Roudesli et al., , 2009.

, Anticoagulant activity of a sulfated polysaccharide from the green alga Arthrospira platensis, Biochimica et Biophysica Acta -General Subjects, issue.10, pp.1377-1381

S. Malairaj, S. Muthu, V. B. Gopal, P. Perumal, and R. Ramasamy, Qualitative and quantitative determination of R-phycoerythrin from Halymenia floresia (Clemente) C, 2016.

, Agardh by polyacrylamide gel using electrophoretic elution technique, Journal of Chromatography A, vol.1454, pp.120-126

A. Marcati, A. V. Ursu, C. Laroche, N. Soanen, L. Marchal et al., Extraction and fractionation of polysaccharides and Bphycoerythrin from the microalga Porphyridium cruentum by membrane technology, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01935736

, Algal Research, vol.5, pp.258-263

G. Markou, Alteration of the biomass composition of Arthrospira (Spirulina) platensis under various amounts of limited phosphorus, Bioresource Technology, vol.116, pp.533-535, 2012.

G. Markou, D. Vandamme, and K. Muylaert, Ammonia inhibition on Arthrospira platensis in relation to the initial biomass density and pH, Bioresource Technology, vol.166, pp.259-265, 2014.

G. Markou, D. Vandamme, and K. Muylaert, Microalgal and cyanobacterial cultivation : The supply of nutrients, Water Research, vol.65, pp.186-202, 2014.

G. Markou and K. Muylaert, Effect of light intensity on the degree of ammonia toxicity on PSII activity of Arthrospira platensis and Chlorella vulgaris, Bioresource Technology, vol.216, pp.453-461, 2016.

J. Marquardt and A. M. Rehm, Porphyridium purpureum (Rhodophyta) from red and green light: characterization of photosystem I and determination of in situ fluorescence spectra of the photosystems, Journal of Photochemistry and Photobiology B: Biology, vol.30, issue.1, pp.49-56, 1995.

A. Martzolff, Analyse systémique du métabolisme carboné et énergétique de Chlamydomonas reinhardtii, vol.296, 2013.

F. Mastroleo, N. Leys, R. A. Benotmane, F. Vanhavere, A. Janssen et al., Effects of the ISS low Earth orbit related environment on the transcriptome and proteome expression in the ESA Life Support System bacterium Rhodospirillurn rubrum ATCC 25903, International Journal of Astrobiology, vol.7, issue.1, pp.86-86, 2008.

F. Mastroleo, N. Leys, R. A. Benotmane, F. Vanhavere, A. Janssen et al., Low Earth orbit journey and ground simulations studies point out metabolic changes in the ESA life support organism Rhodospirillum rubrum. MELiSSA symposium. 37th COSPAR Scientific Assembly, p.1946, 2008.

F. Mastroleo, R. Van-houdt, B. Leroy, M. A. Benotmane, A. Janssen et al., Experimental design and environmental parameters affect Rhodospirillum rubrum S1H response to space flight, The ISME Journal, vol.3, pp.1402-1419, 2009.

F. Mastroleo, R. Van-houdt, M. Mergeay, L. Hendrickx, R. Wattiez et al., Culture in Simulated Microgravity Affects Quorum Sensing in the Life Support Bacterium Rhodospirillum rubrum S1H, Origins of Life and Evolution of Biospheres, vol.40, issue.6, pp.597-598, 2010.

M. C. Matsudo, R. P. Bezerra, S. Sato, P. Perego, A. Converti et al., Repeated fed-batch cultivation of Arthrospira (Spirulina) platensis using urea as nitrogen source, Biochemical Engineering Journal, vol.43, pp.52-57, 2009.

M. Matsui, N. Muizzuddin, S. M. Arad, and K. Marenus, Sulfated polysaccharides from Red Microalgae Have Antiinflammatory Properties In Vitro and In Vivo, Applied and Environmental Microbiology, vol.104, pp.13-22, 2003.

K. Maxwell and G. N. Johnson, Chlorophyll fluorescence -a practical guide, Journal of Experimental Botany, vol.51, issue.345, pp.659-668, 2000.

A. Melis, Photosynthetic H 2 metabolism in Chlamydomonas reinhardtii (unicellular green algae), Planta, vol.226, pp.1075-1086, 2007.

S. S. Merchant, S. E. Prochnik, and O. Vallon, The Chlamydomonas genome reveals the evolution of key animal and plant functions, Science, vol.117, pp.245-250, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00188075

K. Minkova, Y. Michailov, P. Toncheva, and N. Houbavenska, Antiviral activity of Porphyridium cruentum polysaccharide, Pharmazie, p.194, 1996.

Y. S. Mohite and P. S. Wakte, Photosynthesis , Growth and Cell Composition of Spirulina platensis ( Arthrospira ) Under Elevated Atmospheric CO 2 and Nitrogen Supplement, Journal of Algal Biomass Utilization, vol.2, issue.1, pp.77-94, 2011.

M. Monsigny, C. Petit, and A. Roche, Calorimetric Determination of Neutral Sugars by a Resorcinol Sulfuric Acid Micromethod, Analytical Biochemistry, vol.175, pp.525-530, 1988.

N. Murata, S. Takahashi, Y. Nishiyama, and S. I. Allakhverdiev, Photoinhibition of photosystem II under environmental stress, Biochimica et Biophysica Acta, vol.1767, pp.414-421, 2007.

D. G. Nicholls and S. J. Fergusson, Bioenergetics, 4ème édition, vol.419, 2013.

J. Nickelsen and U. Kuck, The Unicellular Green Alga Chlamydomonas reinhardtii as an Experimental System to Study Chloroplast RNA Metabolism, Naturwissenschaften, vol.87, pp.97-107, 2000.

P. H. Oyala, T. A. Stich, R. J. Debus, and R. D. Britt, Ammonia Binds to the Dangler Manganese of the Photosystem II Oxygen-Evolving Complex, Journal of the American Chemical Society, vol.137, issue.27, pp.8829-8837, 2015.

O. Moulaye and C. , Calcul des propriétés de formation en solution aqueuse des composés impliqués dans les procédés microbiologiques et alimentaires Prédiction et réconciliation de données Modélisation des équilibres chimiques et des équilibres entre phases, 1998.

C. J. Patton and S. R. Crouch, Spectrophotometric and kinetics investigation of the Berthelot reaction for the determination of ammonia, Analytical Chemistry, vol.49, pp.464-469, 1977.

O. Perez-garcia, F. M. Escalante, L. E. De-bashan, and Y. Bashan, Heterotrophic cultures of microalgae: Metabolism and potential products, Water Research, vol.45, pp.11-36, 2011.

P. Navarro, M. Ames, W. M. Nilsson, H. Lohmiller, T. Pantazis et al., , 2013.

, Ammonia binding to the oxygen-evolving complex of photosystem II identifies the solvent-exchangeable oxygen bridge (?-oxo) of the manganese tetramer, vol.110, pp.15561-15566

G. Philipps, T. Happe, and A. Hemschemeier, Nitrogen deprivation results in photosynthetic hydrogen production in Chlamydomonas reinhardtii, Planta, vol.235, pp.729-774, 2012.

C. Picard, A. Larbot, F. Guida-pietrasanta, B. Boutevin, and A. Ratsimihety, Grafting of ceramic membranes by fluorinated silanes: hydrophobic features, Separation and Purification Technology, vol.25, issue.1-3, pp.65-69, 2001.

O. Pignolet, S. Jubeau, C. Vaca-garcia, and P. Michaud, Highly valuable microalgae : biochemical and topological aspects, Journal of Industrial Microbiology and Biotechnology, vol.40, pp.781-796, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02067092

A. Pons, Analyse de la production de xanthane par Xanthomonas campestris nrrl b-1459 en cuve agitée et en colonne a bulles a l'aide d'un modèle structure, vol.182, 1987.

A. Pons, C. Dussap, C. Péquignot, and J. Gros, Metabolic flux distibution in Corynebacterium melassecola ATCC 17965 for various carbon sources, Biotechnology and Bioengineering, vol.51, issue.2, pp.177-189, 1996.

L. Pottier, J. Pruvost, J. Deremetz, J. Cornet, J. Legrand et al., A fully predictive model for one-dimensional light attenuation by Chlamydomonas reinhardtii in a torus photobioreactor, Biotechnology and Bioengineering, vol.91, issue.5, pp.569-582, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02534059

L. Poughon, L'écosystème artificiel MELiSSA : modélisation et simulation de la boucle en régime permanent et modèle dynamique du compartiment de nitrification, 1998.

L. Poughon, C. Dussap, and J. Gros, Energy model and metabolic flux analysis for autotrophic nitrifiers, Biotechnology and Bioengineering, vol.72, issue.4, pp.416-433, 2001.

L. Poughon, D. Duchez, J. Cornet, and C. Dussap, kLa determination : comparative study for a gas mass balance method, Bioprocess Biosystem Engineering, vol.25, pp.341-348, 2003.

G. W. Prescott, The algae: a review, Thomas Nelson and Sons LTD, p.436, 1969.

L. M. Prescott, J. P. Harley, and D. A. Klein, Microbiologie, 2 ème édition, vol.1137, p.pp, 2003.

T. Pröschold, E. H. Harris, and A. W. Coleman, Portrait of a Species : Chlamydomonas reinhardtii, Genetics, vol.170, pp.1601-1610, 2005.

J. Pruvost and J. Cornet, Knowledge models for the engineering and optimization of photobioreactors, Microalgal Biotechnology: Potential and, vol.10, pp.181-224, 2012.
URL : https://hal.archives-ouvertes.fr/hal-02539915

A. Rahaoui, Ecophysiologie de Rhodella violacea (Rhodophytra): production et propriétés structurales des exopolysaccharides et de l'amidon floridéen, vol.260, 1999.

R. Fuentes, M. M. Acién-fernández, G. G. Sánchez-pérez, J. A. Guerrero, and J. L. , Biomass nutrient profiles of the microalga Porphyridium cruentum, Food Chemistry, vol.70, pp.345-353, 2000.

M. Ritz, J. Thomas, A. Spilar, and A. Etienne, Kinetics of Photoacclimation in Response to a Shift to High Light of the Red Alga Rhodella violacea Adapted to Low Irradiance, Plant physiology, vol.123, pp.1415-1426, 2000.

J. Rochaix, M. Goldschmidt-clermont, and S. Merchant, The Molecular Biology of Chloroplasts and Mitochondria in Chlamydomonas (Govindjee), 1998.

V. Rochatte, Développement et modélisation d'un photobioréacteur solaire à dilution interne du rayonnement, vol.268, 2016.

L. Rodolfi, G. Chini-zittelli, N. Bassi, G. Padovani, N. Biondi et al., Microalgae for oil: strain selection, induction of lipid synthesis and outdoor mass cultivation in a low-cost photobioreactor, Biotechnology and Bioengineering, vol.102, pp.100-112, 2009.

M. S. Rodrigues, L. S. Ferreira, A. Converti, S. Sato, and J. C. Carvalho, Fed-batch cultivation of Arthrospira (Spirulina) platensis: Potassium nitrate and ammonium chloride as simultaneous nitrogen sources, Bioresource Technology, vol.101, pp.4491-4498, 2010.

N. Ã. Rossi, P. Jaouen, P. Legentilhomme, and I. Petit, Harvesting of cyanobacterium Arthrospira platensis using organic filtration membranes. Food and Bioproducts Processing, vol.82, pp.244-250, 2004.

H. Sakamoto, H. Torada, K. Toto, Y. Nakamura, T. Nakano et al., Biological activity of the polysaccharide produced by the marine phytoplankton Porphyridium sp. and additive effect of slag on the polysaccharide production, Tetsu-to-Hagane, vol.89, pp.475-481, 2003.

R. Sander, Compilation of Henry's law constants (version 4.0) for water as solvent, Atmospheric Chemistry and Physics, vol.15, pp.4399-4981, 2015.

S. Sasidharan, Modélisation de la croissance des plantes supérieures pour les systèmes de support-vie : modèle métabolique de la feuille de laitue considérant la conversion d'énergie et le métabolisme central du carbone, vol.214, 2012.

C. E. Sassano, L. A. Gioielli, K. A. Almeida, S. Sato, P. Perego et al., Cultivation of Spirulina platensis by continuous process using ammonium chloride as nitrogen source, Biomass and Bioenergy, vol.31, pp.593-598, 2007.

P. M. Schenk, S. R. Thomas-hall, E. Stephens, U. C. Marx, J. H. Mussgnug et al., Second generation biofuels: high-efficiency microalgae for biodiesel production, Bioenergy Research, vol.1, pp.20-43, 2008.

F. Schötz, H. Bathelt, C. G. Arnold, and O. Schimmer, Die Architektur und Organisation der Chlamydomonas-Zelle, Protoplasma, vol.75, pp.229-254, 1972.

S. Schuldiner, H. Rottenberg, and M. Avron, Determination of ?pH in Chloroplasts, The FEBS Journal, vol.25, issue.1, pp.64-70, 1972.

A. Schumpe, Gas solubilities in biomedia, In Biotechnology, vol.2, pp.160-170, 1985.

S. Sguera, Spirulina platensis et ses constituants (intérêts nutritionnels et activités thérapeutiques), vol.163, 2008.

B. Sialve and J. Steyer, Les microalgues, promesses et défis. Innovations Agronomiques, vol.26, pp.25-39, 2013.

N. Soanen, E. Da-silva, C. Gardarin, P. Michaud, and C. Laroche, Improvement of exopolysaccharide production by Porphyridium marinum, Bioresource Technology, vol.213, pp.231-238, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01658288

D. Soletto, L. Binaghi, A. Lodi, J. C. Carvalho, and A. Converti, Batch and fed-batch cultivations of Spirulina platensis using ammonium sulphate and urea as nitrogen sources, Aquaculture, vol.243, pp.217-224, 2005.

X. Tan, Y. Zhang, L. Yang, H. Chu, and J. Guo, Outdoor cultures of Chlorella pyrenoidosa in the effluent of anaerobically digested activated sludge: The effects of pH and free ammonia, Bioresource Technology, pp.606-615, 0200.

Z. Tang, J. Zhao, B. Ju, W. Li, S. Wen et al., One-step chromatographic procedure for purification of B-phycoerythrin from Porphyridium cruentum, Protein Expression and Purification, vol.123, pp.70-74, 2016.

D. Tolleter, B. Ghysels, J. Alic, D. Petroutsos, I. Tolstygina et al., Control of hydrogen photoproduction by the proton gradient generated by cyclic electron flow in Chlamydomonas reinhardtii, Plant cell, vol.23, pp.2619-2630, 2011.

O. Toure, Prédiction des propriétés d'équilibre dans les milieux biologiques et alimentaires par le modèle COSMO-RS, vol.295, 2014.

O. Toure, C. Dussap, and A. Lebert, Comparison of Predicted pK a Values for Some Amino-Acids, Dipeptides and Tripeptides, Using COSMO-RS, ChemAxon and ACD/Labs Methods. Oil & Gas Science and Technology, vol.68, issue.2, pp.281-297, 2013.

O. Toure, F. Audonnet, A. Lebert, and C. Dussap, COSMO-RS-PDHS: A new predictive model for aqueous electrolytes solutions, Chemical Engineering Research and Design, vol.92, issue.12, pp.2873-2883, 2014.
URL : https://hal.archives-ouvertes.fr/hal-02095853

O. Toure, F. Audonnet, A. Lebert, and C. Dussap, Development of a thermodynamic model of aqueous solution suited for foods and biological media. Part A: Prediction of activity coefficients in aqueous mixtures containing electrolytes, Canadian Journal of Chemical Engineering, vol.93, pp.443-450, 2015.
URL : https://hal.archives-ouvertes.fr/hal-02095850

O. Toure, F. Audonnet, A. Lebert, and C. Dussap, Development of a Thermodynamic Model of Aqueous Solution Suited for Foods and Biological Media. Part A: Prediction of Activity Coefficients in Aqueous Mixtures Containing Electrolytes, Canadian Journal of Chemical Engineering, vol.93, issue.2, pp.443-450, 2015.
URL : https://hal.archives-ouvertes.fr/hal-02095850

O. Toure, A. Lebert, and C. Dussap, Fluid Phase Equilibria Extension of the COSMO-RS-PDHS model to the prediction of activity coefficients in concentrated { waterelectrolyte } and { water-polyol } solutions, Fluid Phase Equilibria, vol.424, pp.90-104, 2016.

O. Toure and C. Dussap, Determination of Gibbs energies of formation in aqueous solution using chemical engineering tools, Bioresource Technology, vol.213, pp.359-368, 2016.

S. Vidyashankar, K. Deviprasas, V. S. Chauhan, G. A. Ravishankar, and R. Sarada, , 2013.

, Selection and evaluation of CO 2 tolerant indigenous microalga Scenedesmus dimorphus for unsaturated fatty acid rich lipid production under different culture conditions, Bioresource Technology, vol.144, pp.28-37

D. Voet and J. G. Voet, Biochimie, 2ème édition, p.1583, 2005.

A. Vonshak, Physiology, Cell-Biology and Biotechnology, 1997.

I. Walther, B. Bechler, O. Müller, E. Hunzinger, and A. Cogoli, Cultivation of Saccharomyces cerevisiae in a bioreactor in microgravity, Journal of. Biotechnology, vol.47, pp.113-127, 1996.

W. G. Whitman, R. P. Russel, C. M. Welling, and J. D. Cochrane, The Effect of Velocity on the Corrosion of Steel in Sulfuric Acid, Industrial and Engineering Chemistry, vol.15, issue.6, pp.672-676, 1923.

X. Xu, J. Beardall, and N. D. Hallam, Modification of fatty acid composition in halophilic antarctic microalgae, Phytochemistry, vol.49, issue.5, pp.1249-1252, 1998.

Y. Xue, M. Okvist, O. Hansson, and S. Young, Crystal structure of spinach plastocyanin at 1.7A resolution, Protein Science, vol.7, pp.2099-2105, 1998.

H. Yang, Y. Xu, W. Zhu, K. Chen, and H. Jiang, Detailed mechanism for AmtB conducting NH 4, 2007.

+. Nh, 3 : molecular dynamics simulations, Biophysical Journal, vol.92, issue.3

H. W. Yen, I. C. Hu, C. Y. Chen, S. H. Ho, D. J. Lee et al., Microalgae-based biorefinery -From biofuels to natural products, Bioresource Technology, vol.135, pp.166-174, 2013.

S. Chemspider and . Chemistry, Chlamydomonas reinhardtii Pathways