Polymerer i anlæg med CO2 som kølemiddel

4 Litteraturliste

  1. J. M. Smith, H. C. Van Ness and M. M. Abbott, “Introduction to Chemical Engineering Thermodynamics, sixth edition,” McGraw-Hill, 2001
  2. Peter Atkins and Julio de Paula, Atkins´ Physical Chemistry, seventh edition. Oxford University Press, 2002
  3. Johannes K. Nielsen, “Permeation and solubility experiments performed at DTU, Danish Polymer Centre, Department of Chemical Engineering, DTU, 2001
  4. A. Y. Dandekar, N. Lindeloff, S. I. Andersen, E. L. Jakobsen and E. H. Stenby „Measurement of gas solubility in polymers using a high-pressure microbalance”      Department of Chemical Engineering, Technical University of Denmark
  5. Nicolas von Solms, Michael L. Michelsen and Georgios M. Kontogeorgis
    "Prediction and correlation of high-pressure gas solubility in polymers with simplified PC-SAFT” Centre for Phase Equilibria and Separation Processes (IVC-SEP) Department of Chemical Engineering, Technical University of Denmark
  6. N. von Solms, J. K. Nielsen, O Hassager, A. Rubin, A. Y. Dandekar, S. I. Andersen and E. H. Stenby, „Direct measurement of gas solubilities in polymers with a high-pressure microbalance” IVC-SEP and Danish Polymer Centre, Department of Chemical Engineering, Technical University of Denmark og   NKT Flexibles I/S, DK-2605, Denmark
  7. N. von Solms, A. Rubin, S. I. Andersen and E. H. Stenby, „Direct measurement of high temperature / high pressure solubility of methane and carbon dioxide in polyamid (PA-11) using  a high-pressure microbalance,”
    Centre for Phase Equilibria and Separation Processes (IVC-SEP) Department of Chemical Engineering, Technical University of Denmark, DK-2800 Lyngby og NKT Flexibles I/S, DK-2605, Denmark
  8. Nicolas von Solms, Nicoletta Zecchin, Adam Rubin, Simon I. Andersen and Erling H. Stenby, “Direct measurement of gas solubility and diffusivity in poly(vinylidene fluoride) with a high pressure microbalance,” Centre for Phase Equilibria and Separation Processes (IVC-SEP) Department of Chemical Engineering, Technical University of Denmark, DK-2800 Lyngby.
    NKT Flexibles I/S, DK-2605, Denmark
  9. Nicolas von Solms, Michael L. Michelsen and Georgios M. Kontogeorgis, “Computational and physical performance of a modified PC-SAFT equation of state for highly asymmetric and associating mixtures,” Centre for Phase Equilibria and Separation Processes (IVC-SEP) Department of Chemical Engineering, Technical University of Denmark
  10. Abhijit Dandekar, “Operating instructions for the high-pressure Sartorius microbalance,” Department of Chemical Engineering, DTU, juni 2000
  11. M. Bellstedt, F. Elefsen and Stefan S. Jensen ‘‘Application of carbon dioxide refrigerant in industrial cold storage refrigeration plant’’ Journal of Airah, June 2002.
  12. Jesse N. Lawrence ‘‘Refrigeration fundamentals throughout History: methods used to obtain colder temperatures, and principles governing them’’ Dept. of chemistry, Univ. of Alabama, A literature seminar, Feb’25th 2003.
  13. http://www.cartage.org.lb/en/themes/sciences/physics/Thermodynamics/Basic Thermodynamics/Refrigeration/Refrigeration.htm
  14. Amir F, David S. K. Ting, Wendy W. Yang ‘‘Second law analysis of the transcritical CO2refrigeration cycle’’ Energy conversion and Management,
    Vol. 45, pp. 2269-2281, 2004.
  15. B. Flaconneche, J. Martin and M.H .Klopffer ‘‘Transport properties of gases in polymers: experimental methods’’ Oil & Gas Science and Technology-Rev. IFP, Vol.56, No. 3, pp. 223-244, 2001.
  16. M.H Klopffer and B. Flaconneche ‘‘Transport properties of gases in polymers: Bibliographic Review’’ Oil & Gas Science and Technology-Rev. IFP, Vol.56, No.3, pp. 245-259, 2001.
  17. H.Lin, B.D. Freeman ‘‘Gas solubility, diffusivity and permeability in poly (ethylene oxide)’’ Journal of Membrane Science 239, pp. 105-117, 2004.
  18. Yoshiharu Tsujita ‘‘Gas sorption and permeability of glassy polymers with micro voids’’ et. al, Polym. Sci. Vol.28, pp. 1377-1401, 2003.
  19. Vaibhav Kulshrestha, K Awasthi, N K Acharya, M Singh and Y K Vijay ‘‘Effect of temperature and α-irradiation on gas permeability for polymeric membrane’’ Bull. Mater. Sci., Vol. 28, No. 7, pp. 643-646, December 2005.
  20. C.K Yeom, J.M. Lee, Y.T.Hong, K.Y. Choi, S.C. Kim ‘‘Analysis of permeation transient of pure gases through dense polymeric membranes measured by anew permeation contentsaratus’’ Journal of Membrane Science 166, pp. 71-83, 2000.
  21. Frisch, H. L. Pressure dependence of diffusion in polymers. J. Elastoplastics, pp. 130-132, 1970.
  22. Koros, W. J.; Chern, R. T. Separation of gaseous mixtures using polymer membranes. In Handbook of Separation Process Technology; R. W. Rousseau, Ed.; John Wiley & Sons, Inc.: New York, pp. 862-953, 1987.
  23. V.R. Gowariker, N. V. Viswanathan, Jayadev Sreedhar “Polymer Science” Published by New Age International (P) Ltd., pp. 173-198.
  24. Paula Hubbard and Thomas Blong, Dyneon “A primer on high-purity fluoro polymers offered for wet bench processes” Material Fluorpolymers: May 2004.
  25. http://www.plasticsmag.com
  26. http://www.amicon.com/ptfeproperties.htm
  27. http://www.boedeker.com/ptfe_p.htm
  28. Douglas R. Robello, Abraham Ulman and Edward J. Urankar ‘‘Poly (p-phenylene sulfone)’’ Macromolecules, Vol.26, pp. 6718-6721, 1993.
  29. Nicolas von Solms, Michelsen, M. L.; Kontogeorgis, G. M. ‘‘Computational and physical performance of a modified PC-SAFT equation of state for highly asymmetric and associating mixtures.” Ind. Eng. Chem. Res. Vol. 42, pp. 1098-1105, 2003.
  30. Kouskoumvekaki I.A., von Solms N., Lindvig T., Michelsen M.L., and Kontogeorgis G.M., A novel method for estimating pure component parameters for polymers, Application to the PC-SAFT Equation of state, Industrial and Engineering Chemistry Research, Vol. 43, pp. 2830-2838, 2004.
  31. DIPPR Information and Data Evaluation Manager (DIPPR 801 Database 2007)
  32. ako, T.; Wu, A. H.; Prausnitz, J. M. ‘‘A Cubic Equation of State for High- Pressure Phase - Equilibria of Mixtures Containing Polymers and Volatile Fluids’’ J. Appl. Polym. Sci. Vol. 38, 18-39, 1989.
  33. Patrik A. Rodgers ‘‘Pressure-Volume-Temperature relationships for polymeric liquids: A Review of Equations of state and their Characteristic Parameters for 56 Polymers’’ Journal of Applied Polymer Science, Vol. 48, pp. 1061-1080, 1993.
  34. N. von Solms, K.Y. Koo, Y.C.Chiew ‘‘Mixing rules for binary Lennard Jones chains: theory and Monte Carlo simulation’’ Fluid Phase Equilibria 180 pp. 71-85, 2001.
  35. Douglas Henderson and Peter J. Leonard ‘‘One-and Two-Fluid vander Waals Theories of liquid Mixtures, I Hard Sphere Mixtures’’ National Academy of Sciences, Vol. 67, No. 4, pp. 1818-1823, December 1970.
  36. Frisch, H. L. ‘‘Pressure dependence of diffusion in polymers’’ J. Elastoplastics 1970, 2,130-132.
  37. Nicolas von Solms, Nicoletta Zecchin, Adam Rubin, Simon I. Andersen, and Erling H. Stenby ‘‘Direct measurement of gas solubility and diffusivity in poly (vinylidene fluoride) with a high-pressure microbalance’’ European Polymer Journal, Vol. 41 pp. 341-348, 2005.
  38. Nicolas von Solms, Michelsen, M. L. and Kontogeorgis, G. M. ‘‘Prediction and Correlation of High-Pressure Gas Solubility in Polymers with simplified PC-SAFT ’’ Ind. Eng. Chem. Res., 44, pp. 3330-3335, 2005.
  39. Joachim Gross, Oliver Spuhl, Freelly Tumakaka, and Gabriele Sadowski ‘‘Modeling copolymer systems using the perturbed-chain SAFT equation of state’’ Ind. Eng. Res., 42, pp. 1266-1274, 2003.
  40. Pedro Arce, Martin Aznar ‘‘modeling the phase behaviour of commercial biodegradable polymers and copolymer in supercritical fluids’’ October 2005
  41. J. Gross, and G. Sadowski, ‘‘Perturbed-Chain SAFT: An Equation of State Based on a Perturbation Theory for Chain Molecules’’ Ind. Eng. Chem. Res., Vol. 40 (4), 1244-1260, 2001.
  42. http://www.alperton.ie/alperton/Main/Plastic_ProductsByName.htm
  43. Amra Tihic, Nicolas von Solms, Michelsen, M. L. and Kontogeorgis, G. M. ‘‘Application of simplified Perturbed-Chain Saft Equation of state’’ et al.
  44. Michaels, A.S., and Parker, R.B. ‘‘Sorption and Flow of Gases in Polyethylene’’ J. Appl. Phys., Vol.34, pp.13-20, 1959.
  45. Plast og polymere, Grete Ridder Ebbesen, Kemi forlaget 2001
  46. Plastmaterialer, Finn Monrad Rasmussen, Ingeniørhøjskolen Århus, 199

 



Version 1.0 April 2009, © Miljøstyrelsen.