M. Albertí, F. Pirani, and A. Laganaì, Carbon dioxide clathrate hydrates: selective role of intermolecular interactions and action of the SDS catalyst, J. Phys. Chem. A, vol.117, p.7000, 2013.

M. Albertí, A. Costantini, A. Laganá, and F. Pirani, Are micelles needed to form methane hydrates in sodium dodecyl sulfate solutions?, J. Phys. Chem. B, vol.116, p.4227, 2012.

Z. M. Aman, K. Olcott, K. Pfeiffer, E. D. Sloan, A. K. Sum et al., Surfactant adsorption and interfacial tension investigations on cyclopentane hydrate, Langmuir, vol.29, 2013.

V. Andersson and J. S. Gudmundsson, Flow experiments on concentrated hydrate slurries, Proceedings of the 1999 SPE Annual Technical Conference and Exhibition, 1999.

V. Andersson and J. S. Gudmundsson, Flow properties of hydrate-in-water slurries, Ann. N.Y. Acad. Sci, vol.912, p.329, 2000.

M. R. Anklam, J. D. York, L. Helmerich, and A. Firoozabadi, Effects of antiagglomerants on the interactions between hydrate particles, AIChE J, vol.54, p.574, 2008.

T. Austvik and M. Bjorn, The transportability of hydrates in pipes, Multiphase transportation III. Roros, 1992.

V. Ayel, O. Lottin, and H. Peerhossaini, Rheology, flow behaviour and heat transfer of ice slurries: a review of the state of the art, Int. J. Refrig, vol.26, p.107, 2003.

R. Camargo, T. Palermo, A. Sinquin, and P. Glenat, , 2000.

, Rheological properties of tetra-n-butylphosphonium bromide hydrate slurry flow, Chem. Eng. J, vol.193, p.122

M. Darbouret, M. Cournil, and J. M. Herri, Rheological study of TBAB hydrate slurries as secondary two-phase refrigerants, Int. J. Refrig, vol.28, p.671, 2005.
URL : https://hal.archives-ouvertes.fr/emse-00497560

A. Delahaye, L. Fournaison, S. Marinhas, and M. C. Martinez, Rheological study of CO 2 hydrate slurry in a dynamic loop applied to secondary refrigeration, Chem. Eng. Sci, vol.63, p.3559, 2008.

A. Delahaye, L. Fournaison, S. Jerbi, and N. Mayoufi, Rheological properties of CO 2 hydrate slurry flow in the presence of additives, Ind. Eng. Chem. Res, vol.50, p.8353, 2011.

D. Profio, P. Arca, S. Germani, R. Savelli, and G. , Surfactant promoting effects on clathrate hydrate formation: are micelles really involved?, Chem. Eng. Sci, vol.60, p.4145, 2005.

L. W. Diamond and N. N. Akinfiev, Solubility of CO 2 in water from 1.5 to 100 °C and from 0.1 to 100 MPa: evaluation of literature data and thermodynamic modelling, Fluid Ph. Equilib, vol.208, p.290, 2003.

C. Dicharry, J. Diaz, J. P. Torré, and M. Ricaurte, Influence of the carbon chain length of a sulfate-based surfactant on the formation of CO 2 , CH 4 and CO 2 CH 4 gas hydrates, Chem. Eng. Sci, vol.152, p.745, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01804379

C. Dicharry, C. Duchateau, H. Asbaï, D. Broseta, and J. P. Torré, Carbon dioxide gas hydrate crystallization in porous silica gel particles partially saturated with a surfactant solution, Chem. Eng. Sci, vol.98, p.97, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01999667

A. Einstein, Eine neue Bestimmung der Moleküldimensionen, Ann. Phys, vol.324, p.306, 1906.

M. J. Fernandez, Séparation Du CO 2 D?un Mélange CO 2-CH 4 Par Cristallisation D?hydrates De Gaz: Influence D?additifs Et Effet Des Conditions Opératoires, 2012.

A. Fidel-dufour and J. Herri, Formation and transportation of methane hydrate slurries in a flow loop reactor: influence of a dispersant, Proceedings of the International Conference on Multiphase Flow, 2002.
URL : https://hal.archives-ouvertes.fr/hal-00126012

A. Fidel-dufour, F. Gruy, and J. Herri, Rheology of methane hydrate slurries during their crystallization in a water in dodecane emulsion under flowing, Chem. Eng. Sci, vol.61, p.515, 2006.
URL : https://hal.archives-ouvertes.fr/emse-00497840

L. Fournaison, A. Delahaye, I. Chatti, and J. P. Petitet, CO 2 hydrates in refrigeration processes, Ind. Eng. Chem. Res, vol.43, p.6526, 2004.
URL : https://hal.archives-ouvertes.fr/hal-01958823

S. Fukushima, S. Takao, H. Ogoshi, H. Ida, S. Matsumoto et al., Development of high-density cold latent heat with clathrate hydrate, NKK Tech. Rep, vol.166, p.70, 1999.

M. Gainville, A. Sinquin, and M. Darbouret, Hydrate Slurry Characterisation for Laminar and Turbulent Lows in Pipelines. ICGH, 2011.

H. Ganji, M. Manteghian, K. Sadaghiani-zadeh, M. R. Omidkhah, and H. Rahimi-mofrad, Effect of different surfactants on methane hydrate formation rate, stability and storage capacity, Fuel, vol.86, p.441, 2007.

P. Gayet, C. Dicharry, G. Marion, A. Graciaa, J. Lachaise et al., Experimental determination of methane hydrate dissociation curve up to 55 MPa by using a small amount of surfactant as hydrate promoter, Chem. Eng. Sci, vol.60, p.5758, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00342993

J. Guilpart, E. Stamatiou, A. Delahaye, and L. Fournaison, Comparison of the performance of different ice slurry types depending on the application temperature, Int. J. Refrig, vol.29, p.788, 2006.

X. Han, S. Wang, X. Chen, and F. Liu, Surfactant accelerates gas hydrate formation, Proceedings of the Fourth International Conference on Natural Gas Hydrates, 2002.

S. Hashimoto, K. Kawamura, H. Ito, M. Nobeoka, K. Ohgaki et al., Rheological study on tetra-n-butyl ammonium salt semi-clathrate hydrate slurries, Proceedings of the 7th International Conference on Gas Hydrates, 2011.

S. Jerbi, A. Delahaye, L. Fournaison, and P. Haberschill, Design of a New Circulation Loop based on CO 2 Hydrate Kinetics. Sustainable Refrigeration and Heat Pump Technology, 2010.

S. Jerbi, A. Delahaye, L. Fournaison, and P. Haberschill, Characterization of CO 2 hydrate formation and dissociation kinetics in a flow loop, Int. J. Refrig, vol.33, p.1631, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00995388

S. Jerbi, A. Delahaye, J. Oignet, L. Fournaison, and P. Haberschill, Rheological properties of CO 2 hydrate slurry produced in a stirred tank reactor and a secondary refrigeration loop, Int. J. Refrig, vol.36, p.1301, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00995224

P. U. Karanjkar, A. Ahuja, G. Zylyftari, J. W. Lee, J. Morris et al., Rheology of cyclopentane hydrate slurry in a model oil-continuous emulsion, Rheol. Acta, vol.55, p.243, 2016.

M. Kauffeld, M. Kawaji, P. W. Egolf, A. Melinder, and T. W. Davies, Handbook on Ice Slurries Fundamentals and Engineering, 2005.

M. A. Kelland, History of the development of low dosage hydrate inhibitors, Energy Fuels, vol.20, p.847, 2006.

H. Kumano, T. Hirata, and T. Kudoh, Experimental study on the flow and heat transfer characteristics of a tetra-n-butyl ammonium bromide hydrate slurry (first report: flow characteristics), Int. J. Refrig, vol.34, 2011.

A. Kumar, G. Bhattacharjee, B. D. Kulkarni, and R. Kumar, Role of surfactants in promoting gas hydrate formation, Ind. Eng. Chem. Res, vol.54, p.12232, 2015.

C. Lirio, . S. Fd, F. L. Pessoa, and A. M. Uller, Storage capacity of carbon dioxide hydrates in the presence of Sodium Dodecyl Sulfate (SDS) and tetrahydrofuran (THF), Chem. Eng. Sci, 2012.

C. Lo, J. Zhang, P. Somasundaran, and J. W. Lee, Raman spectroscopic studies of surfactant effect on the water structure around hydrate guest molecules, J. Phys. Chem. Lett, vol.1, 2010.

C. Lo, J. S. Zhang, A. Couzis, P. Somasundaran, and J. W. Lee, Adsorption of cationic and anionic surfactants on cyclopentane hydrates, J. Phys. Chem, vol.114, p.13389, 2010.

C. Lo, J. S. Zhang, P. Somasundaran, S. Lu, A. Couzis et al., Adsorption of surfactants on two different hydrates, Langmuir, vol.24, p.12726, 2008.

Z. W. Ma, P. Zhang, R. Z. Wang, S. Furui, and G. N. Xi, Forced flow and convective melting heat transfer of clathrate hydrate slurry in tubes, Int. J. Heat Mass Transf, vol.53, p.3757, 2010.

S. Marinhas, A. Delahaye, and L. Fournaison, Solid fraction modelling for CO 2 and CO 2-THF hydrate slurries used as secondary refrigerants, Int. J. Refrig, vol.30, p.766, 2007.

S. Marinhas, A. Delahaye, L. Fournaison, D. Dalmazzone, W. Furst et al., Modelling of the available latent heat of a CO 2 hydrate slurry in an experimental loop applied to secondary refrigeration, Chem. Eng. Process, vol.45, p.192, 2006.
URL : https://hal.archives-ouvertes.fr/hal-01179681

A. B. Metzner and J. C. Reed, Flow of non-newtonian fluids correlation of the laminar, transition, and turbulent-flow regions, AIChE J, vol.1, p.440, 1955.

A. H. Mohammadi and D. Richon, Phase equilibria of clathrate hydrates of methyl cyclopentane, methyl cyclohexane, cyclopentane or cyclohexane+carbon dioxide, Chem. Eng. Sci, vol.64, p.5322, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00574067

K. Okutani, Y. Kuwabara, and Y. H. Mori, Surfactant effects on hydrate formation in an unstirred gas/liquid system: an experimental study using methane and sodium alkyl sulfates, Chem. Eng. Sci, vol.63, p.194, 2008.

H. Oyama, T. Ebinuma, W. Shimada, S. Takeya, J. Nagao et al., Viscosity increase before nucleation of CO 2 gas hydrate, Proceedings of the 4th International Conference on Gas Hydrates, 2002.

B. Peng, J. Chen, C. Sun, A. Dandekar, S. Guo et al., Flow characteristics and morphology of hydrate slurry formed from (natural gas+diesel oil/condensate oil+water) system containing antiagglomerant, Chem. Eng. Sci, vol.84, p.344, 2012.

Y. Peysson, P. Maurel, and R. Vilagines, Hydrate transportability in multiphase flow, Proceedings of the International Conference on Multiphase: Extending the Boundaries of Flow Assurance, 2003.

K. L. Pinder, Time dependant rheology of the tetrahydrofuran-hydrogen sulphide gas hydrate slurry, Can. J. Chem. Eng, vol.42, p.138, 1964.

C. P. Ribeiro, . Jr, and P. L. Lage, Modelling of hydrate formation kinetics: state-ofthe-art and future directions, Chem. Eng. Sci, vol.63, 2007.

M. Ricaurte, C. Dicharry, X. Renaud, and J. P. Torré, Combination of surfactants and organic compounds for boosting CO 2 separation from natural gas by clathrate hydrate formation, Fuel, vol.122, p.217, 2014.
URL : https://hal.archives-ouvertes.fr/hal-00941483

M. Ricaurte, C. Dicharry, D. Broseta, X. Renaud, and J. Torré, CO 2 Removal from a CO 2 CH 4 Gas Mixture by Clathrate Hydrate Formation Using THF and SDS as Water-Soluble Hydrate Promoters, Ind. Eng. Chem. Res, vol.52, p.910, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00804562

M. J. Rosen and J. T. Kunjappu, Surfactants and Interfacial Phenomena, 2012.

E. D. Sloan, Clathrate Hydrates of Natural Gases, 1998.

E. D. Sloan and C. A. Koh, Clathrate Hydrates of Natural Gases, 2008.

A. K. Sum, D. T. Wu, and K. Yasuoka, Energy science of clathrate hydrates: simulationbased advances, MRS Bull, vol.36, p.210, 2011.

Z. Sun, R. Wang, R. Ma, K. Guo, and S. Fan, Natural gas storage in hydrates with the presence of promoters, Energy Convers. Manag, vol.44, p.2742, 2003.

D. G. Thomas, Transport characteristics of suspension: VIII. A note on the viscosity of Newtonian suspensions of uniform spherical particles, J. Colloid Sci, vol.20, p.277, 1965.

J. Torre, M. Ricaurte, C. Dicharry, and D. Broseta, CO 2 enclathration in the presence of water-soluble hydrate promoters: hydrate phase equilibria and kinetic studies in quiescent conditions, Chem. Eng. Sci, vol.82, p.13, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00748121

J. Torre, C. Dicharry, M. Ricaurte, D. Daniel-david, and D. Broseta, CO 2 capture by hydrate formation in quiescent conditions: in search of efficient kinetic additives, Energy Procedia, vol.4, p.628, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00688428

A. T. Trueba, L. J. Rovetto, L. J. Florusse, M. C. Kroon, and C. J. Peters, Phase equilibrium measurements of structure II clathrate hydrates of hydrogen with various promoters, Fluid Phas. Equilib, vol.307, p.10, 2011.

N. M. Van-os, J. R. Haak, and L. A. Rupert, Physico-Chemical Properties of Selected Anionic, Cationic and Nonionic Surfactants, 1993.

W. Wang, S. Fan, D. Liang, and X. Yang, Experimental study on flow characters of CH3CCl2F hydrate slurry, Int. J. Refrig, vol.31, p.378, 2008.

K. Watanabe, S. Imai, and Y. H. Mori, Surfactant effects on hydrate formation in an unstirred gas/liquid system: an experimental study using HFC-32 and sodium dodecyl sulfate, Chem. Eng. Sci, vol.60, p.4857, 2005.

J. Waycuilis, H. Sirajuddin, and P. Rensing, A novel approach to production of hydrate slurries at high process intensity and conceptual applications. ICGH, 2011.

E. B. Webb, C. A. Koh, and M. W. Liberatore, Rheological properties of methane hydrate slurries formed from AOT+Water+Oil microemulsions, Langmuir, vol.29, p.11004, 2013.

E. B. Webb, C. A. Koh, and M. W. Liberatore, High pressure rheology of hydrate slurries formed from water-in-mineral oil emulsions, Ind. Eng. Chem. Res, vol.53, p.7007, 2014.

E. B. Webb, P. J. Rensing, C. A. Koh, E. D. Sloan, A. K. Sum et al., High-pressure rheology of hydrate slurries formed from water-in-oil emulsions, Energy Fuels, vol.26, p.3509, 2012.

R. Xiao, S. Wu, L. Tang, C. Huang, and Z. Feng, Experimental investigation of pressure-drop of clathrate hydrate slurry (CHS) flow of tetra butyl ammonium hydrate suspensions in oil dominated systems, Ann. N.Y. Acad. Sci, vol.912, p.916, 2006.

A. Cameirao, A. Fezoua, Y. Ouabbas, J. M. Herri, M. Darbouret et al., Agglomeration of Gaz Hydrate in a Water-in-oil Emulsion: Experimental and Modeling Studies, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00660157

P. Clain, A. Delahaye, L. Fournaison, N. Mayoufi, D. Dalmazzone et al., , 2012.

N. Li, Z. Y. Song, S. S. Niu, and G. J. Chen, Flow characteristics and rheological properties of natural gas hydrate slurry in the presence of anti-agglomerant in a flow loop apparatus, Chem. Eng. Sci, vol.106, p.108, 2014.

J. Yoslim and P. Englezos, The effect of surfactant on the morphology of methane/ propane clathrate hydrate crystals, Proceedings of the 6th International Conference on Gas Hydrates, 2008.

J. Yoslim, P. Linga, and P. Englezos, Enhanced growth of methane-propane clathrate hydrate crystals with sodium dodecyl sulfate, sodium tetradecyl sulfate, and sodium hexadecyl sulfate surfactants, J. Cryst. Growth, vol.313, p.80, 2010.

Z. Youssef, A. Delahaye, L. Huang, F. Trinquet, L. Fournaison et al., State of the art on phase change material slurries, Energy Convers. Manag, vol.65, p.132, 2013.

L. E. Zerpa, J. L. Salager, C. A. Koh, E. D. Sloan, and A. K. Sum, Surface chemistry and gas hydrates in flow assurance, Ind. Eng. Chem. Res, vol.50, p.197, 2011.

J. S. Zhang, S. Lee, and J. W. Lee, Does SDS micellize under methane hydrate-forming conditions below the normal Krafft point?, J. Colloid Interface Sci, vol.315, p.318, 2007.

J. S. Zhang, S. Lee, and J. W. Lee, Kinetics of methane hydrate formation from SDS solution, Ind. Eng. Chem. Res, vol.46, p.6359, 2007.

J. S. Zhang, C. Lo, P. Somasundaran, and J. W. Lee, Competitive adsorption between SDS and carbonate on tetrahydrofuran hydrates, J. Colloid Interface Sci, vol.341, p.288, 2007.

J. S. Zhang, C. Lo, P. Somasundaran, S. Lu, A. Couzis et al., Adsorption of Sodium Dodecyl Sulfate at THF hydrate/liquid interface, J. Phys. Chem. C, vol.112, p.12385, 2008.

P. Zhang and Z. W. Ma, An overview of fundamental studies and applications of phase change material slurries to secondary loop refrigeration and air conditioning systems, Renew. Sustain. Energy Rev, vol.16, p.5058, 2012.

Y. Zhong and R. E. Rogers, Surfactant effects on gas hydrate formation, Chem. Eng. Sci, vol.55, p.4187, 2000.

G. Zylyftari, J. W. Lee, J. F. Morris, K. L. Yan, C. Y. Sun et al., Salt effects on thermodynamic and rheological properties of hydrate forming emulsions, Proceedings of the 10th International Conference on Thermal Energy Storage, vol.95, p.160, 2013.