A. Références, Etude technique, economique et environnementale sur l, Connaissance des énergies. www.connaissancedesenrgies.org

A. , Financer un projet de méthanisation, 2017.

A. Alabdulkarem, A. Mortazavi, Y. Hwang, and P. Rodgers, Optimization of propane pre-cooled mixed refrigerant LNG plant, Apllied Thermal Engineering, pp.1091-1098, 2011.

I. Angelidaki, L. Treu, P. Tsapekos, and P. Kougias, Biogas upgrading and utilization: Current status and perspectives, Biotechnology Advances, pp.452-466, 2018.

. Ashrae34, Designation and Safety Classification of Refrigérants, 2001.

A. Aspelund, T. Gundersen, J. Myklebyst, M. Nowak, and A. Tomasgard, An optimization-simulaion model for a simple LNG process, Computers and Chemical Engineering, pp.1606-1617, 2010.

A. , Rouler au BioGNV-Inventaire du droit applicable, 2013.

B. Austbo, S. Weidemann-lovseth, and T. Gundersen, Annoted bibliography-Use of optimization in LNG process design and operaion, Computers and Chemical Engineering, pp.391-414, 2014.

L. Baillon and J. Higne, Overview of biogas technologies for production of liquid transport fuels, 2012.

J. Baguley and N. Gnanendran, , 2008.

E. Berger, D. Xiang, G. Q. Jin, A. Meffert, and L. Atzinger, LNG Baseload Plant In Xinjiang, China-Commercialisation of Remote Gas Ressources for an Eco-responsible Furture, 2003.

P. Bosma and R. K. Nagelvoort, Liquefaction Technology ; Developments through History, Proceedings of 1 st Annual Gas Symposium

J. C. Boubon, Il ne manque pas grand chose pour que la filière biogaz décolle, 2017.

C. Bou-malham, R. Rivera-tinoco, A. Zoughaib, D. Chretien, M. Riche et al., A novel Hybrid Exergy/Pinch Process Integration Methodology. Energy, pp.586-596, 2017.

P. Boutelant, Organization of Arab Petroleum Exporting Countries' Institut franpais du pétrole joint seminar

. B. Brethes and . D. Blanchard, La liquéfaction se tourne aussi vers de petites unités, Journées annuelles des hydrocarbures, 2014.

. Cdiac, Annual CO 2 emissions sources from gas. Carbon Dioxide Information Analysis Center, 2017.

. Cegibat, Biométhane et injection sur le réseau de gaz naturel, 2017.

P. Charbonneau, An introduction To Genetic algorithms For numerical Optimization, National Center for Atmospheric Research, 2002.

J. Clemente, Energy, The rapidly expanding Global Liquefied Natural gaz market, 2017.

Y. Collette and P. Siarry, Optimisation multiobjectif, 2002.

. Conocophilips, Optimized Cascade Process, Conoco Philips LNG Technology and Licensing, 2018.

F. Cziesla and G. Tasatsaronis, Iterative exergoeconomic, evaluation and improvement of thermal power plants using fuzzy inference system.Energy conversion and management, vol.43, pp.1537-1548, 2002.

P. Dewitte, Etude et modélisation d'une cascade intégrée à deux fluides, Ecole des Mines ParisTech, 1995.

I. Dincer and M. A. Rosen, Exergy: Energy, Environnement and Sustainable Development, 2007.

G. Dissinger, Getting started Références with Aspen Hysys Dynamics, 2012.

E. , Biogas, simply the best, 2011.

E. , Etat des lieux de la filière biogaz.E-Cube strategie Consultants, Today in energy, 2015.

R. Escudie and R. Cresson, Méthanisation de la biomasse, 2017.

&. E. Eurobsrv, Baromètre biogaz. www.eurobserv'ER.org, 2017.

&. Eurobserv and . Er, , 2016.

D. Favrat and F. Staine, Intégration énergétique de procédés industriels par la méthode de pincement. Collection Ravel Industrie. Office Fédéral des questions conjoncturelles, 1994.

F. Fazlollahi, A. Bown, E. Ebrahimzadeh, and L. L. Baxter, Transient natural gas liquefaction and its application to CCC-ES (energy storage with cryogenic carbon capture). Energy, pp.369-384, 2016.

F. Fazlollahi, A. Bown, S. Saeidi, E. Ebrahimzadeh, and L. L. Baxter, Transient natural gas liquefaction process comparison-dynamic heat exchanger under transient changes in flow, Applied Thermal Engineering, pp.775-788, 2016.

A. J. Finn, G. L. Johnson, and T. R. Tomlinson, Developments in natural gas processing, Hydrocarbon Processing, 1999.

. Ftv, Quelle est l'importance des énergies fossiles aujourd'hui ? Quatre cinquièmes des besoins mondiaux, 2016.

S. Ha and K. Y. Lee, Representing and constructing liquefaction cycle alternatives for FLNG Feed using system entity structure concepts, International journal of Naval Architecture and Ocean Engineering, vol.6, pp.598-625, 2014.

T. He and Y. Ju, Dynamic simulation of mixed refrigerant process for small-scale LNG plant in skid mount packages. Energy, pp.350-358, 2016.

T. He, K. A. Iftekhar, and Y. Ju, Review on the design and optimization of natural gas processes for onshore and offshore applications, pp.89-114, 2018.

Y. A. Husnil, G. Yeo, and M. Lee, Plant-wide control for the economic operation of modified single mixed refrigerant process for an offshore natural gas liquefaction plant, Chemical Enginnering Research and Design, pp.679-691, 2014.

J. Hwang, N. Ku, M. Roh, and K. Lee, Optimal design of liquefaction cycles of liquefied natural gas floating, production, storage, and offloading unit considering optimal synthesis, Ind. Eng.Chem.Res, vol.52, pp.5341-5356, 2013.

J. Hwang, M. Roh, and K. Lee, Determination of the otpimal operating conditions of the dual mixed refrigerant cycle for the LNG FPSO topside liquefaction process, Computer chemical Enginnering, vol.49, pp.25-36, 2013.

. Iea, CO 2 emissions from fuel combustion, International Energy Agency/ OECD

. Iea, Global gas security review, How is LNG Market Flexibility Evolving, International Energy Agency/ OECD

. Ipcc, Climate Change : Mitigation of Climate Change.Contributions of Working Group III to the Fifth Assessment Report Of the Intergovernmental Panel on Climate Change, 2014.

N. Johansson, Production of liquid biogas, LBG, With cryogenic and conventional upgrading technology, 2008.

R. S. Kamath, L. T. Biegler, and I. E. Grossmann, Modeling multistream heat exchangers with and without phase changes for simultaneous optimization and heat integration, AIChE Journal, vol.58, issue.1, pp.190-204, 2012.

M. Kanoglu, Exergy analysis of multistage cascade refrigeration cycle used for natural gas liquefaction, Internationnal Journal of Energy Research, vol.26, issue.8, pp.763-774, 2002.

R. Khalipour, A. Abbas, and M. Wang, Operation optimization of propane preccoled mixed refrigerant processes, Natural Gas and Science Enginnering, pp.93-105, 2013.

Y. Khan, J. Wang, W. Wang, and R. Wang, Dynamic simulation of a single nitrogen expansion Cycle for natural gas liquefaction under refrigerant inventory operation, Applied Thermal Enginnering, pp.747-761, 2018.

M. S. Khan, S. Lee, G. Rangaiah, and L. Moonyong, Knowledge based decision making method for the selection of mixed refrigerant systems for energy efficient LNG processes, Applied Energy, pp.1018-1031, 2013.

S. Kondo, K. Takizawana, A. Takahashi, and K. Tokuhashi, Extended le Chatelier's formula for carbon dioxide dilution effect flammability limits, Journal of Hazardous Material, vol.138, issue.1, pp.1-8, 2006.

S. Lee, N. V. Long, and M. Lee, Design and optimization of natural gas liquefaction and recovery processes for offshore floating liquefied natural gas plants, Industrial & Engineering Chemistry Research, vol.51, pp.10021-10030, 2012.

C. Lee, K. Song, Y. Lee, and C. Han, A decomposition methodology for dynamic modeling of cold box in offshore natural gas liquefaction process, Computers and Chemical Engineering, pp.546-557, 2016.

S. Lee, Multi-parameter optimization of cold energy recovery in cascade Rankine cycle for LNG regasification using genetic algorithm, Energy, vol.118, pp.776-786, 2017.

E. Flesch and J. C. Raillard, CII Liquefaction Process: 2 Cascades Into 1, Cryogenic Studies Section, Research Division, 1998.

Y. Li, X. Wang, and Y. Ding, An optimal design methodology for large scale liquefaction, Applied Energy, pp.484-490, 2012.

W. Lim, I. Lee, K. Tak, J. Cho, D. Ko et al., Efficient Configuration of Natural Gaz Liquefaction Process for Energy Recovery, Industrial & Engineering Chemistry Research, pp.1973-1985, 2014.

W. Lim, K. Choi, and I. Moon, Current Status and Perspectives of Liquefied Natural Gas (LNG) Plant Design, Industrial & Engineering Chemistry Research, vol.52, pp.3065-3088, 2012.

W. Lin, X. Xiaojun, and G. Anzhong, Natural gas pressurized liquefaction process adopting MR refrigeration and CO 2 removel by anti-sublimation, Gas Technology Training, 2015.

E. Lutton, Algorithmes génétiques et Algorithmes évolutionnaires. Techniques de l'Ingénieur, 2006.

. Luyben, Plantwide dynamic simulators in chemical processing and control, vol.9781482275803, 2002.

D. Marmolejo-correa and T. Gundersen, New Graphical Representation of Exergy Applied to Low Temperature Process Design, Industrial & Engineering Chemistry Research, vol.52, issue.22, pp.7145-7156, 2013.

P. Y. Martin, J. Pigourier, and P. Boutelant, Liquefin: An Innovative Process to Reduce LNG Costs. 22 nd World Gas conference, 2003.

F. A. Michelson, I. J. Halvorsen, B. F. Lund, and P. E. Wahl, Modeling and Simulation for Control of the TEALARC Liquified Natural Gas Process, Industrial & Engineering Chemistry Research, vol.49, pp.7389-7397, 2010.

P. Moein, M. Sarmada, H. Ebrahimi, and M. Zare, APCI-LNG single mixed refrigerant process for natural gas liquefaction cycle, Natural Gas Science and Enginnering, pp.470-479, 2015.

A. Morin, P. E. Wahl, and M. Molnvik, Using evolutionary search to optimise the energy consumption for natural gas liquefaction, Chemical Enginnering Research and Design, vol.89, pp.2428-2525, 2011.

S. Mokhatab, . Mak, . Valappil, and . Wood, Handbook of liquefied natural gas, 2014.

P. Neveu, Apports thermodynamque pour la conception et l'intégration des procédés, 2002.

&. E. Observ, Le baromètre 2017 des énergies renouvelables électriques en France, 2017.

D. Paul, J. L. Harries, E. J. Thomas, and G. Sapp, Use of alternate refrigerants in optimized cascade process, 2014.

C. M. Pellen, Contribution à l'optimisation technico-économique de systèmes énergétiques, 2006.

C. Pitiot, Cascade integrée basse température (-150°C) à melanges de travail Zeotropes, 1996.

. Planète-Énergie, Planète énergie. planète-énergie.com, 2016.

C. Remeljej and A. Hoadley, An exergy analysis of small liquefied natural gas (LNG) liquefaction processes, Energy, vol.31, pp.2005-2019, 2006.

R. Rivera-tinoco, Comparaison énergétique et économique des voies de purification du biogaz, 2012.

R. Rivera-tinoco, M. Farran, C. Bouallou, F. Auprêtre, S. Valentin et al., Investigation of power-to-methanol processes coupling electrolytic hydrogen, International Journal of Hydrogen Energy, pp.4546-4559, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01409270

H. Sanvandi and M. Ziabasharhgh, Design and comprehensive optimization of C3MR liquefaction natural gas cycle by considering operational constraints, Journal of Natural Gas Science and Engineering, vol.29, pp.176-187, 2016.

V. Schroeder, Calculation of flammability and Lower flammability limits of Gas Mixtures for classification Purposes. Berlin : s.n., 09 septembre, 2016.

P. Schwoerer, LNG blue corridor, le succès est au rendez vous, 2017.

. Siapartners, Observatoire du biométhane. Think tank du biogaz, 2016.

G. Skaugen, G. A. Gjøvåg, P. Nekså, and P. E. Wahl, Use of sophisticated heat exchanger simulation models for investigation of possible design and operational pitfalls in LNG processes, Journal of Natural Gas Science and Engineering, 2010.

V. Smil, Energy Transitions; Global and National Perspectives. 2 nd Edition, 2016.

R. Stebbing and J. O'brien, An updated report on the PRICO (TM) process for LNG plants, GASTECH, LNG, Natural Gas, LPG international conference, 1975.

J. Szargut, Analysis of cumulative exergy consumption, International Journal of Energy Research, pp.541-547, 1987.

J. Szargut, D. R. Morris, and F. R. Stewart, Exergy Analysis of Thermal, Chemical and Metallurgical Processes, 1988.

R. Tilagone and B. Lecointe, Gaz naturel-Energie fossile. Techniques de l'ingénieur, 2014.

T. N. Pham, M. S. Khan, Y. A. Husmil, A. Bahadori, S. Lee et al., Optimization of modified single mixed refrigerant process of natural gas liquefaction using multivariate, 2016.

, Coggin's algorithm combined with process knowledge, Journal of Natural Gas Science and Engineering, pp.731-741

J. Toubassy, Etude et modélisation du givrage du CO 2 sur évaporateur à glissmement de température. Ecole des Mines ParisTech, 2012.

A. Vatani, M. Mehrpooya, and A. Palizdar, Energy and exergy analyses of five conventional liquefied natural gas processes, International Journal of Energy Research, vol.38, pp.1843-1863, 2014.

G. Venkatarathnam, Cryogenic Mixed refrigerant processes, 2010.

. Verdesis, Montages financiers-Projets agricoles, 2012.

D. Wood and S. Mokhatab, Where are the opportunities to construct liquefaction facilities at the Arctic Circle, Hydrocarbon Processing, 2009.

X. Xiong, W. Lin, and A. Gu, Design and optimization of offshore natural gas liquefaction processes adopting PLNG (pressurized liquefied natural gas) technology, Journal of Natural Gas Science and Enginnering, vol.30, pp.379-387, 2016.

X. Xu, L. Jinping, J. Chuanshuo, and C. Lee, The correlation between mixed refrigerant composition and ambiant conditions in the PRICO LNG process, Applied Energy, pp.1127-1136, 2012.

M. Younes, Capture du CO 2 par anti-sublimation, 2003.

, Conception, simulation et Réalisation d'un prototype

. Zabetakis, Flammability Characteristics of Combustible Gases and Vapours, 1965.

. Zabetakis, Flammability Characteristics of Combustible Gases and Vapours, 1965.

A. Zoughaib, Méthode de pincement. Technique de l'ingénieur, 2015.

Z. Yuan, M. Cui, Y. Xie, and C. Li, Design and analysis of a small-scale natural gas liquefaction process adopting single nitrogen expansion with carbon dioxide pre-cooling, Applied Thermal Engineering, vol.64, pp.139-146, 2014.