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LIST OF REFERENCES 1. Nielsen, R.P., Chapter 5 - Near- and Supercritical Water, in Chemistry of Advanced Environmental Purification Processes of Water, E.G. Søgaard, Editor. 2014, Elsevier: Amsterdam. p. 171-197. 2. Postorino, P., et al., The interatomic structure of water at supercritical temperatures. Nature, 1993. 366(6456): p. 668-670. 3. Wagner, W. and A. Pruß, The IAPWS formulation 1995 for the thermodynamic properties of ordinary water substance for general and scientific use. Journal of Physical and Chemical Reference Data, 2002. 31(2): p. 387-535. 4. Kirkham, M.B., Chapter 3 - Structure and Properties of Water, in Principles of Soil and Plant Water Relations (Second Edition), M.B. Kirkham, Editor. 2014, Academic Press: Boston. p. 27-40. 5. Zhao, L.-C., et al., A catalyst-free novel synthesis of diethyl carbonate from ethyl carbamate in supercritical ethanol. Chinese Chemical Letters, 2014. 25(10): p. 1395- 1398. 6. Kamitanaka, T., T. Matsuda, and T. Harada, Mechanism for the reduction of ketones to the corresponding alcohols using supercritical 2-propanol. Tetrahedron, 2007. 63(6): p. 1429-1434. 7. Sun, Y., et al., Optimization of high-energy density biodiesel production from camelina sativa oil under supercritical 1-butanol conditions. Fuel, 2014. 135(0): p. 522-529. 8. Jin, J., et al., Determination and calculation of solubility of bisphenol A in supercritical carbon dioxide. Chemical Engineering Research and Design, 2013. 91(1): p. 158-164. 9. Kendall, J.L., et al., Polymerizations in supercritical carbon dioxide. Chemical Reviews, 1999. 99(2): p. 543-564. 10. Fleming, O.S. and S.G. Kazarian, Polymer Processing with Supercritical Fluids, in Supercritical Carbon Dioxide. 2006, Wiley-VCH Verlag GmbH & Co. KGaA. p. 205-238. 11. Iwai, Y., T. Nakashima, and S. Yonezawa, Preparation of dye sensitized solar cell by using supercritical carbon dioxide drying. The Journal of Supercritical Fluids, 2013. 77(0): p. 153-157. 12. Brown, Z.K., et al., Drying of agar gels using supercritical carbon dioxide. The Journal of Supercritical Fluids, 2010. 54(1): p. 89-95. 13. Almeida-Rivera, C., et al., Mathematical description of mass transfer in supercritical- carbon-dioxide-drying processes, in Computer Aided Chemical Engineering, M.C.G. E.N. Pistikopoulos and A.C. Kokossis, Editors. 2011, Elsevier. p. 36-40. 14. Brown, Z.K., et al., Drying of foods using supercritical carbon dioxide — Investigations with carrot. Innovative Food Science & Emerging Technologies, 2008. 9(3): p. 280- 289. 15. Lee, M.Y., et al., Surfactant-aided supercritical carbon dioxide drying for photoresists to prevent pattern collapse. The Journal of Supercritical Fluids, 2007. 42(1): p. 150- 156. 16. Shao, Q., et al., Essential oils extraction from Anoectochilus roxburghii using supercritical carbon dioxide and their antioxidant activity. Industrial Crops and Products, 2014. 60(0): p. 104-112. 17. Ni, H., et al., Supercritical carbon dioxide extraction of petroleum on kieselguhr. Fuel, 2015. 141(0): p. 74-81. 281PDF Image | Supercritical Fluids and Their Application to the Recycling of High-Performance Carbon Fibre Reinforced Composite Materials
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