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Extraction

Identification and analysis of mass transfer coefficients and effective diffusion coefficients for models of solvent extraction of Montan wax

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Pages 2183-2197 | Received 08 Oct 2015, Accepted 14 Jun 2016, Published online: 05 Aug 2016

References

  • Leray, C. (2000) Waxes. In Kirk-Othmer Encyclopedia of Chemical Technology; John Wiley & Sons.
  • Crelling, J.C.; Hagemann, H.W.; Sauter, D.H.; Ramani, R.V.; Vogt, W.; Leininger, D.; Krzack, S.; Meyer, B.; Orywal, F.; Reimert, R.; Bonn, B.; Bertmann, U.; Klose, W.; Dach, G. (2010) Coal. In Ullmann’s Encyclopedia of Industrial Chemistry; Wiley.
  • Del Valle, J.M.; Juan, C.; La Fuente, D. (2006) Supercritical CO2 extraction of oilseeds: review of kinetic and equilibrium models. Critical Reviews in Food and Science, 2 (46): 131.
  • Oliveira, E.L.; Silvestre, A.J.; Silva, C.M. (2011) Review of kinetic models for supercritical fluid extraction. Chemical Engineering Research and Design, 7 (89): 1104.
  • Sovová, H.; Stateva, R.P. (2011) Supercritical fluid extraction from vegetable materials. Reviews in Chemical Engineering, 27 (3–4): 79.
  • Moldrup, P.; Olesen, T.; Komatsu, T.; Shjonning, P.; Rolston, D.E. (2001) Tortuosity, diffusivity, and permeability in the soil liquid and gaseous phases. Soil Science Society of America Journal, 65 (3): 613.
  • Wakao, N.; Smith, J.M. (1962) Diffusion in catalyst pellets. Chemical Engineering Science, 17 (11): 825.
  • Chang, H. (1982) Multi-scale analysis of effective transport in periodic heterogeneous media. Chemical Engineering Communications, 15 (1–4): 83.
  • Goto, M.; Smith, J.M.; McCoy, B.J. (1990) Kinetics and mass transfer for supercritical fluid extraction of wood. Industrial & Engineering Chemistry Research, 29 (2): 282.
  • Ndocko, E.; Bäcker, W.; Strube, J. (2008) Process design method for manufacturing of natural compounds and related molecules. Separation Science and Technology, 43 (3): 642.
  • Ghanbarian, B.; Hunt, A.G.; Ewing, R.P.; Sahimi, M. (2013) Tortuosity in porous media: A critical review. Soil Science Society of America Journal, 77 (5): 1461.
  • Catchpole, O.J.; Grey, J.B.; Smallfield, B.M. (1996) Near-critical extraction of sage, celery, and coriander seed. The Journal of Supercritical Fluids, 9 (4): 273.
  • Zizovic, I.; Stamenic, M.; Orlovic, A.; Skala, D. (2005) Supercritical carbon dioxide essential oil extraction of Lamiaceae family species: Mathematical modelling on the micro-scale and process optimization. Chemical Engineering Science, 60 (23): 6747.
  • Simeonov, E.; Koleva, V.; Chilev, C. (2011) Solid liquid extraction of furostanal saponins from Tribulus terrestris. Journal of the University of Chemical Technology and Metallurgy, 46 (3): 309.
  • Ranz, W.E.; Marshall, W.R. (1952) Evaporation from drops. Chemical Engineering Progress, 48 (3): 141.
  • Wakao, N.; Funazkri, T. (1978) Effect of fluid dispersion coefficients on particle-to-fluid mass transfer coefficients in packed beds: Correlation of sherwood numbers. Chemical Engineering Science, 33 (10): 1375.
  • Döker, O.; Salgın, U.; Şanal, İ.; Mehmetoğlu, Ü.; Çalımlı, A. (2004) Modeling of extraction of β-carotene from apricot bagasse using supercritical CO2 in packed bed extractor. Journal of Supercritical Fluids, 28 (1): 11.
  • Grosso, C.; Coelho, J.P.; Pessoa, F.L.P.; Fareleira, J.M.N.A.; Barroso, J.G.; Urieta, J.S.; Palavra, A.F.; Sovová, H. (2010) Mathematical modelling of supercritical CO2 extraction of volatile oils from aromatic plants. Chemical Engineering Science, 65 (11): 3579.
  • Goodarznia, I. (1998) Supercritical carbon dioxide extraction of essential oils: modeling and simulation. Chemical Engineering Science, 53 (7): 1387.
  • Tan, C.; Liang, S.; Liou, D. (1988) Fluid–solid mass transfer in a supercritical fluid extractor. Chemical Engineering Journal, 38 (1): 17.
  • Mantell, C.; Rodriguez, M.; Martinez De La Ossa, E. (2002) Semi-batch extraction of anthocyanins from red grape pomace in packed beds: experimental results and process modelling. Chemical Engineering Science, 57 (18): 3831.
  • Calleja, G.; Garcia, F.; de Lucas, A.; Prats, D.; Rodriguez, J.M. (1999) Introducción a la Ingenierı́a Quı́mica. Síntesis: Madrid.
  • Guerrero, M.S.; Torres, J.S.; Nunez, M.J. (2008) Extraction of polyphenols from white distilled grape pomace: Optimization and modelling. Bioresource Technology, 99 (5): 1311.
  • Perry, R.; Green, D.W.; Maloney, J.O. (1999) Perry’s Chemical Engineers’ Handbook, 7th Ed.; McGraw-Hill: New York.
  • Espinoza-Pérez, J.D.; Vargas, A.; Robles-Olvera, V.J.; Rodr Guez-Jimenes, G.C.; Garc A-Alvarado, M.A. (2007) Mathematical modeling of caffeine kinetic during solid–liquid extraction of coffee beans. Journal of Food Engineering, 81 (1): 72.
  • Geankoplis, C.J. (1993) Transport Processes and Unit Operations; 3th Ed.; Prentice-Hall, Inc. Press: New Jersey, USA.
  • Pangarkar, V.G.; Yawalkar, A.A.; Sharma, M.M.; Beenackers, A.A.C.M. (2002) Particle–liquid mass transfer coefficient in two-/three-phase stirred tank reactors. Industrial & Engineering Chemistry Research, 41 (17): 4141.
  • Wollmerstädt, M.; Lohmeier, R.; Herdegen, V.; Schröder, H.; Repke, J.U. (2014) Influence of drying on the extraction of different processed lignites. European Journal of Lipid Science and Technology, 116 (2): 177.
  • Wang, Y.; Herdegen, V.; Repke, J.U. (2015) A model approach for the Montan wax extraction: model development and experimental analysis. Separation Science and Technology., 50 (15): 2311.
  • Ochoa, S.; Wozny, G.; Repke, J.U. (2010) A new algorithm for global optimization: Molecular-inspired parallel tempering. Computers & Chemical Engineering, 34 (12): 2072.
  • Wilke, C.R.; Chang, P. (1955) Correlation of diffusion coefficients in dilute solutions. Aiche Journal, 1 (2): 264.
  • Wolfmeier, U.; Schmidt, H.; Heinrichs, F.; Michalczyk, G.; Payer, W.; Dietsche, W.; Boehlke, K.; Hohner, G.; Wildgruber, J., (2000) Waxes. In Ullmann’s Encyclopedia of Industrial Chemistry; Wiley.
  • Melreles, M.; Zahedi, G.; Hatami, T. (2009) Mathematical modeling of supercritical fluid extraction for obtaining extracts from vetiver root. The Journal of Supercritical Fluids, 49 (1): 23.
  • Salgin, U.; Doker, O.; Calimli, A. (2006) Extraction of sunflower oil with supercritical CO2: Experiments and modeling. The Journal of Supercritical Fluids, 38 (3): 326.
  • Barker, J.J.; Treybal, R.E. (1960) Mass transfer coefficients for solids suspended in agitated liquids. Aiche Journal, 6 (2): 289.
  • Marangozis, J.; Johnson, A.I. (1962) A correlation of mass transfer data of solid-liquid systems in agitated vessels. The Canadian Journal of Chemical Engineering, 40 (6): 231.
  • Kolar, V. (1959) Studies on Mixing. Part V. Effect of Mechanical mixing on the rate of mass transfer from granular solids in a liquid. Collection of Czechoslovak Chemical Communications, 24: 3309.
  • Hixson, A.W.; Baum, S.J. (1942) Agitation. Performance of propellers in liquid-solid systems. Industrial & Engineering Chemistry Research, 34 (1): 120.
  • Humphrey, D.W.; VanNess, H.C. (1957) Mass transfer in a continuous-flow mixing vessel. Aiche Journal, 3 (2): 283.
  • Peker, H.; Srinivasan, M.P.; Smith, J.M.; McCoy, B.J. (1992) Caffeine extraction rates from coffee beans with supercritical carbon dioxide. Aiche Journal, 38 (5): 761.
  • Strube, J. (2000) Technische Chromatographie: Auslegung, Optimierung, Betrieb und Wirtschaftlichkeit; Shaker.
  • Tan, C.S.; Liou, D.C. (1989) Axial dispersion of supercritical carbon dioxide in packed beds. Industrial & Engineering Chemistry Research, 28 (8): 1246.
  • Funazukuri, T.; Kong, C.; Kagei, S. (1998) Effective axial dispersion coefficients in packed beds under supercritical conditions. The Journal of Supercritical Fluids, 13 (1): 169.

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