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Polymers carbon dioxide

Usually no data available, except for gases such as oxygen, hydrogen or carbon dioxide (Polymer handbook / ed. J. Brandrup, E. H. Immergut and E. A. Grulke Wiley cop. 1999). [Pg.319]

Zhou M, Takayanagi M, Yoshida Y, Ishii S, Noguchi H (1999) Enzyme-catalyzed degradation of aliphatic polycarbonates prepared from epoxides and carbon dioxide. Polym Bull 42(4) 419 24... [Pg.48]

Pannell and coworkers34 described the use of poly(ferrocenylsilanes) as coatings in optical fiber gas sensors. In these devices a small change in refractive index of the polymer film results in a large change in the optical transmission of a tapered optical fiber. This is useful for remote sensing of ammonia or carbon dioxide. Polymers of type 6.20 with R/R = Me/Ph and copolymers from monomers with R/R = Me/Ph and Me/Me were found to be effective for this application. [Pg.263]

Kho YW, Kalika DS, and Knutson BL. Precipitation of Nylon 6 membranes using compressed carbon dioxide. Polymer 2001 42(14) 6119-6127. [Pg.192]

Byun HS, McHugh MA. Impact of free monomer concentration on the phase behavior of supercritical carbon dioxide-polymer mixtures. Ind Eng Chem Res 2000 39 4658-4662. [Pg.26]

Sparacio D, Beckman EJ. Generation of microcellular biodegradable polymers in supercritical carbon dioxide. Polym Prepr 1997 38 422- 23. [Pg.363]

This compound can be thermally redecomposed into acetic and acrylic acids, carbon dioxide, polymers, propionic acid, vinyl acetate and acetaldehyde. [Pg.195]

Bai, R.K., Huang, M.Y., and Jiang, Y.Y. 1988. Selective permeabilities of chitosan-acetic acid complex membrane for oxygen and carbon dioxide. Polymer Bull. 20, 83-88. [Pg.129]

X11 Xiong, Y. and Kiran, E., Miscibility, density and viscosity of poly(dimethylsiloxane) in supercritical carbon dioxide, Polymer, 36, 4817, 1995. [Pg.548]

Funck, A. Kaminsky, W. (2007) Polypropylene carbon nanotube composites by in situ polymerization. Compos. Sci. Technol. Vol.67, No.5, pp.906-915 Garda-Leiner, M Lesser, A. (2003) Melt Intercalation in Polymer-Clay Nanocomposites Promoted by Supercritical Carbon Dioxide. Polym. Mater. Sci. Eng. VoL89, pp.649-650... [Pg.386]

Figure 12. Demixing pressures for styrene-butadiene (left) and styrene-isoprene (right) copolymer elastomers in binary fluid mixtures of pentane + carbon dioxide. Polymer concentration is 3 %. carbon dioxide content of the fluid mixtures are 9, 19 and 29 % for the SBR miscibility data[left] and 10, 30 and 40 % for the SIS miscibility data[right] [20, 37]. Figure 12. Demixing pressures for styrene-butadiene (left) and styrene-isoprene (right) copolymer elastomers in binary fluid mixtures of pentane + carbon dioxide. Polymer concentration is 3 %. carbon dioxide content of the fluid mixtures are 9, 19 and 29 % for the SBR miscibility data[left] and 10, 30 and 40 % for the SIS miscibility data[right] [20, 37].
Goel, S. K. and Beckman, E. J. Plasticization of poly (methyl methacrylate) networks by supercritical carbon dioxide, Polymer, 34,1410-1417. [Pg.190]

Zhu, R. Hoshi, T. Sasaki, D. Usui, R. Hagiwara, T. Yano, S. Sawaguchi, T., Surface Properties and Depth Analysis of Polyethylene/Polydimethylsiloxane Composite Prepared by Using Supercritical Carbon Dioxide. Polym. J. 2010, 42,562-566. [Pg.116]

The equation of Johnson et alf is one of most accurate available for LJ chains, since it is heavily based on computer simulation data. Equally the soft-SAFT equation is very accurate for modelling mixtures of associating LJ fluids. In their extension to mixtures Bias and Vega performed extensive simulations on model homo- and heteronuclear fluids and their mixtures to test the soft-SAFT approach, before application of the theory to real fluids in a subsequent paper was undertaken by the authors. Soft-SAFT has been applied to the study of alkanes and their binary and ternary mixtures, perfluoro-alkanes, alcohols, carbon dioxide,polymers, and more recently room temperature ionic liquids. ... [Pg.225]

Sun F, Pan Y, Wang J, Wang Z, Hu C, Dong Q. Synthesis of conducting polyanihne-montmorillonite nanocomposites via inverse emulsion polymerization in supercritical carbon dioxide. Polym Composite 2011 31 163-172. [Pg.74]

Jin, W., Xingguo, C., Mingjun, Y, and Jiasong, H. 2001. An investigation on the microcellular structure of polystyrene/LCP blends prepared by using supercritical carbon dioxide. Polymer 42 8265-8275. [Pg.109]

Chang, Y. W., Lee, D., and Bae, S. Y, 2006. Preparation of polyethylene-octene elastomer/ clay nanocomposite and microcellular foam processed in supercritical carbon dioxide. Polymer International 55 184-9. [Pg.166]

LIU Liu, K. and Kiran, E., High-pressure solution blending of poly(8-caprolactorre) with poly(methyl methacrylate) in acetone + carbon dioxide. Polymer, 49,1555, 2008. [Pg.463]

Jin, C., Christensen, P.A., Egaton, T.A., Lawson, E.J., White, J.R. Rapid measurement of polymer photo-degradation by FTIR spectrometry of evolved carbon dioxide. Polym. Degrad. Stab. 91, 1086-1096 (2006)... [Pg.58]

Figure 10 Alternating (butoxymethyl)oxirane/carbon dioxide polymer... Figure 10 Alternating (butoxymethyl)oxirane/carbon dioxide polymer...
Green JW, Rubai MJ, Osman BM, et al. 2000. Silicon-oiganic hybrid polymers and composites prepared in supercritical carbon dioxide. Polym Advan Technol 11 820-825. [Pg.76]

Arora K A, Lesser A J and McCarthy T J, Compressive Behaviour of Microcellular Polystyrene Foams Processed in Supercritical Carbon Dioxide , Polym. Eng. Sci., 1998, 38, 2055). [Pg.492]


See other pages where Polymers carbon dioxide is mentioned: [Pg.527]    [Pg.141]    [Pg.1101]    [Pg.347]    [Pg.387]    [Pg.9]    [Pg.475]    [Pg.190]    [Pg.1051]    [Pg.527]    [Pg.75]   
See also in sourсe #XX -- [ Pg.73 ]

See also in sourсe #XX -- [ Pg.327 , Pg.328 ]

See also in sourсe #XX -- [ Pg.24 , Pg.322 ]




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Carbon dioxide permeability polymer composition

Carbon polymer

Carboxyl-substituted polymers from carbon dioxide

Interactions carbon-dioxide-polymer

Interactions of Carbon Dioxide with Polymers and Monomers

Near-critical carbon dioxide-polymer

Polymer Extrusion with Supercritical Carbon Dioxide

Polymer Processing in Supercritical Carbon Dioxide

Polymer Synthesis in Supercritical Carbon Dioxide

Polymer supercritical carbon dioxide

Polymers carbon dioxide emissions

Polymers from Carbon Dioxide Polycarbonates, Polythiocarbonates, and Polyurethanes

Supercritical Carbon Dioxide: in Polymer Reaction Engineering

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