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Reviews

Melt Extrusion Encapsulation of Flavors: A Review

, , , , &
Pages 137-186 | Received 08 Jul 2015, Accepted 03 Sep 2015, Published online: 07 Mar 2016

References

  • Augustin, M. A.; Hemar, Y. “Nano- and micro-structured assemblies for encapsulation of food ingredients”, Chem. Soc. Rev. 2009, 38, 902–912.
  • Dubey, R.; Shami, T. C.; Rao, K. U. B. “Microencapsulation technology and applications”, Def. Sci. J. 2009, 59 (1), 82–85.
  • Madene, A.; Jacquot, M.; Scher, J.; Desobry, S. “Flavour encapsulation and controlled release: A review”, Int. J. Food Sci. Technol. 2006, 41, 1–21.
  • Đorđević, V.; Balanč, B.; Belščak-Cvitanović, A.; Lević, S.; Trifković, K.; Kalušević, A.; Kostić, I.; Komes, D.; Bugarski, B.; Nedović, V. “Trends in encapsulation technologies for delivery of food bioactive compounds”, Food Eng. Rev. 2015, 7(4), 452–490.
  • Nedovic, V.; Kalusevic, A.; Manojlovic, V.; Levic, S.; Bugarski, B. “An overview of encapsulation technologies for food applications”, Procedia Food Sci. 2011, 1, 1806–1815.
  • Zhu, G. Y.; Xiao, Z. B.; Zhou, R. J.; Yi, F. P. “Fragrance and flavor microencapsulation technology”, Adv. Mater. Res. 2012, 535-537, 440–445.
  • Goubet, I.; Quere, J. L. L.; Voilley, A. “Retention of aroma compounds by carbohydrates: influence of their physicochemical characteristics and of their physical state: A review”, J. Agric. Food Chem. 1998, 46, 1981–1990.
  • Gouin, S. “Microencapsulation: Industrial appraisal of existing technologies and trends: A review”, Trends Food Sci. Technol. 2004, 15, 330–347.
  • Kenyon, M. M. Modified starch, maltodextrin and corn syrup solids as wall materials for food encapsulation. In Encapsulation and Controlled Release of Food Ingredients; ACS Symposium Series; Reineccius & Risch, 1995.
  • Risch, S. J.; Reineccius, G. A. Flavor Encapsulation, American Chemical Society Symposium.; ACS Symposium Series; Washington D.C., 1988; Vol. 370.
  • Manojlovic, V.; Rajic, N.; Djonlagic, J.; Obradovic, B.; Nedovic, V.; Bugarski, B. “Application of Electrostatic extrusion – flavour encapsulation and controlled release”, Sensors 2008, 8 (3), 1488–1496.
  • Wang, X.; Yuan, Y.; Yue, T. “The application of starch-based ingredients in flavor encapsulation”, Starch - Stärke 2015, 67 (3-4), 225–236.
  • Quellet, C.; Schudel, M.; Ringgenberg, R. “Flavors and fragrances delivery systems”, Chimia 2001, 55 (5), 421–428.
  • Uhlemann, J.; Reiss, I. “Product design and process engineering usin the examples of flavors”, Chem. Eng. Technol. 2010, 33 (2), 199–212.
  • Tackenberg, M. W.; Krauss, R.; Schuchmann, H. P.; Kleinebudde, P. “Encapsulation of orange terpenes investigating a plasticisation extrusion process”, J. Microencapsul. 2015, 32(4), 1–10.
  • Ubbink, J.; Schoonman, A. Flavor Delivery Systems. Kirk-Othmer Encyclopedia of Chemical Technology; Wiley: NJ, 2003; Vol. 11, pp. 527–563.
  • Blake, A. “Flavor encapsulation with carbohydrate glasses”, Int. Food Ingred. 1994, 3, 30–34.
  • Benczedi, D.; Bouquerand, P. E. Process for the Preparation of Granules for the Controlled Release of Volatile Compounds. US 6,607,771 B2, 19 2003.
  • Emin, M. A.; Schuchmann, H. P. “Analysis of the dispersive mixing efficiency in a twin-screw extrusion processing of starch based matrix”, J. Food Eng. 2013, 115 (1), 132–143.
  • Emin, M. A.; Schuchmann, H. P. “Droplet breakup and coalescence in a twin-screw extrusion processing of starch based matrix”, J. Food Eng. 2013, 116 (1), 118–129.
  • Schultz, H. T.; Calif, L. Preparation of Solid Flavoring Compositions. US 2,856,291, 14 1958.
  • Swisher, H. E. Solid Flavoring Composition and Method of Preparing the Same. US 2,809,895, 1957.
  • Black, M.; Popplewell, L.; Porzio, M. Controlled Release Encapsulation Compositions. US 5,756,136, 26 1998.
  • Levine, H.; Slade, L.; Lengerich, B. V.; Pickup, G. J. Glassy Matrices Containing Volatile And/or Labile Components and Processes for Preparation and Use Thereof. US 5,009,900, 23 1991.
  • Miller, D. H.; Mutka, J. R. Solid Essential Oil Flavor Composition. US 4707367, 17 1987.
  • Sair, L.; Sair, R. Encapsulation of Active Agents as a Microdispersions in Homogeneous Natural Polymeric Matrices. US 4, 230, 687, 28 1980.
  • Saleeb, Z. F.; Pickup, G. J. Fixation of Volatiles in Extruded Glass Substrates. US 4,820, 534, 11 1989.
  • Feng, T.; Xiao, Z.; Tian, H. “Recent patents in flavor microencapsulation”, Recent Pat. Food Nutr. Agric. 2009, 1, 193–202.
  • Porzio, M. “Melt extrusion and melt injection: An in depth look at the strengths, limitations and applications of these two processes”, Perfum. Flavorist 2008, 33, 48–53.
  • Zasypkin, D.; Porzio, M. “Glass encapsulation of flavours with chemically modified starch blends”, J. Microencapsul. 2004, 21 (4), 385–397.
  • Hau, M.; Gray, D.; Taylor, A. “Binding of volatiles to extruded starch at low water contents”, Flavour Fragr. J. 1998, 13, 77–84.
  • Lengerich, B. H. V. Embedding and encapsulation of sensitive components into a matrix to obtain discrete controlled release particles. US 2002/0044968 A1, 2002.
  • Porzio, M.; Zasypkin, D. Encapsulation Compositions and Process for Preparing the Same. US 2010/0289164 A1, 2010.
  • Benczedi, D.; Bouquerand, P. E.; Steinboeck, E. Process for the Preparation of Extruded Delivery Systems. US 8,017,060 B2, 13 2011.
  • Chang, D.; Abbas, S.; Hayat, K.; Xia, S.; Zhang, X.; Xie, M.; Kim, J. M. “Original Article: Encapsulation of ascorbic acid in amorphous maltodextrin employing extrusion as affected by matrix/core ratio and water content”, Int. J. Food Sci. Technol. 2010, 45 (9), 1895–1901.
  • Bouquerand, P. E. Extruded Glassy Vitamin C Particles. EU 1836902 A1, September 26, 2007.
  • Kohlus, R.; Pacha, E. F. Process for Producing Structured Materials. WO 2004/099359 A1, 18 2004.
  • Kollengode, A.; Hanna, A. “Cyclodextrin complexed flavors retention in extruded starches”, J. Food Sci. 1997, 65 (5), 1057–1060.
  • Lengerich, B. H. V.; Walther, G.; Auken, B. V. Encapsulation of Readily Oxidizable Components. US 7, 803,413B2, 28 2010.
  • Ubbink, J.; Quellet, C.; Taschi, M. Encapsulated Liquid. US 1116515A2, 18 2001.
  • Valentinotti, S.; Armanet, L.; Porret, J. Encapsulated Polyunsaturated Fatty Acids. US 2006/0134180A1, 2006.
  • Yuliani, S.; Torley, P. J.; D⬚’Arcy, B.; Nicholson, T.; Bhandari, B. “Extrusion of mixtures of starch and d-limonene encapsulated with b-cyclodextrin: Flavour retention and physical properties”, Food Res. Int. 2006, 39, 318–331.
  • Zasypkin, D. Melt extrusion encapsulation of flavors and other encpasulates in a carrier containing spices and herbs. US 2011256199, October 20, 2011.
  • Duda, J. L. “Molecular diffusion in polymeric systems”, Pure Appl. Chem. 1985, 57 (11), 1681–1690.
  • Vrentas, J. S.; Duda, J. L. “A free-volume interpretation of the influence of the glass transition on diffusion in amorphous polymers”, J. Appl. Polym. Sci. 1978, 22 (8), 2325–2339.
  • Tackenberg, M. W.; Geisthövel, C.; Marmann, A.; Schuchmann, H. P.; Kleinebudde, P.; Thommes, M. “Mechanistic study of carvacrol processing and stabilization as glassy solid solution and microcapsule”, Int. J. Pharm. 2015, 478 (2), 597–605.
  • Tackenberg, M. W.; Thommes, M.; Schuchmann, H. P.; Kleinebudde, P. “Solid state of processed carbohydrate matrices from maltodextrin and sucrose”, J. Food Eng. 2014, 129, 30–37.
  • Benczedi, D.; Blake, A. “Encapsulation and controlled released of flavours”, Leatherhead Food RA Food Ind. J. 1999, 2, 36–48.
  • Tackenberg, M. W.; Krauss, R.; Marmann, A.; Thommes, M.; Schuchmann, H. P.; Kleinebudde, P. “Encapsulation of liquids using a counter rotating twin screw extruder”, Eur. J. Pharm. Biopharm. 2015, 89, 9–17.
  • Chang, D. W.; Zhang, X. M.; Kim, J. M. “Encapsulation of vitamin E in glassy carbohydrates by extrusion”, Adv. Mater. Res. 2013, 842, 95–99.
  • Conde-Petit, B.; Escher, F.; Nuessli, J. “Structural features of starch-flavor complexation in food model systems”, Trends Food Sci. Technol. 2006, 17, 227–235.
  • Heinemann, C.; Zinsli, M.; Renggli, A.; Escher, F.; Conde-Petit, B. “Influence of amylose-flavor complexation on build-up and breakdown of starch structures in aqueous food model systems”, Food Sci. Technol. 2005, 38, 885–894.
  • Nuessli, J.; Sigg, B.; Conde-Petit, B.; Escher, F. “Characterization of Amylose—flavour complexes by DSC and x-ray diffraction”, Food Hydrocoll. 1997, 11 (1), 27–34.
  • Nuessli, J.; Conde-Petit, B.; Trommsdorff, U. R.; Escher, F. “Influence of starch flavour interactions on rheological properties of low concentration starch systems”, Carbohydr. Polym. 1995, 28 (2), 167–170.
  • Kollengode, A.; Hanna, A. “Effect of low boiling point liquids on volatile retentions in starch extrudates”, Lebensm.-Wiss. Technol. 1997, 30, 814–818.
  • Bohn, D.; Cadwallader, K.; Schmidt, S. Use of DSC, DVS-DSC, and DVS-Fast GC-FID to evaluate the physicochemical changes that occur in artificial cherry durarome® upon humidification. J. Sci. 2005, 70 (2), E109–E116.
  • Cayot, N.; Karbowiak, T.; Savary, G.; Voilley, A.; Dury-Brun, C. “Measurement of transport phenomena of volatile compounds: A review”, Food Res. Int. 2008, 41, 349–362.
  • Druaux, C.; Voilley, A. “Effect of food composition and microstructure on volatile flavour release : Review”, Trends Food Sci. Technol. 1997, 8, 364–368.
  • Landy, P.; Druaux, C.; Voilley, A. “Retention on aroma compounds by proteins in aqueous solution”, Food Chem. 1995, 54 (4), 387–392.
  • Boutboul, A.; Lenfant, F.; Giampaoli, P.; Feigenbaum, A.; Ducruet, V. “Use of inverse gas chromatography to determine thermodynamic parameters on aroma-starch interactions”, J. Chromatogr. A 2002, 969, 9–16.
  • Boutboul, A.; Giampaoli, P.; Feigenbaum, A.; Ducruet, V. “Use of inverse gas chromatography with humidity control of the carrier gas to characterised aroma-starch interactions”, Food Chem. 2000, 71, 387–392.
  • Delarue, J.; Giampaoli, P. “Study of interaction phenomena between aroma compounds and carbohydrate matrixes by inverse gas chromatography”, J. Agric. Food Chem. 2000, 48, 2373–2375.
  • Gunning, Y.; Gunning, P.; Kemsley, E.; Parker, R.; Ring, S.; Wilson, R.; Blake, A. “Factors affecting the release of flavor encapsulated in carbohydrate matrixes”, J. Agric. Food Chem. 1999, 47, 5198–5205.
  • Jouquand, C.; Ducruet, V.; Giampaoli, P. “Partition coefficients of aroma compounds in polysaccharide solutions by the phase ratio variation method”, Food Chem. 2004, 85, 467–474.
  • Menzi, H.; Perren, M.; Ringgenberg, R. Aromatic Granulated Material. US 6056949, February 5, 2000.
  • Leusner, S. J.; Lakkis, J.; Lengerich, B. H. V.; Jarl, T. Oligosaccharide encapsulated mineral and vitamin ingredients. US 6468568 B1, 2002.
  • Abbas, S.; Chang, D.; Hayat, K.; Xiaoming, Z. “Ascorbic acid: Microencapsulation techniques and trends: A review”, Food Rev. Int. 2012, 28, 343–374.
  • Crowley, M. M.; Zhang, F.; Repka, M. A.; Thumma, S.; Upadhye, S. B.; Battu, S. K. “Review: Pharmaceutical applications of hot-melt extrusion: Part I”, Drug Dev. Ind. Pharm. 2007, 33 (9), 909–926.
  • Ubbink, J.; Krüger, J. “Physical approaches for the delivery of active ingredients in foods: Review”, Trends Food Sci. Technol. 2006, 17, 244–254.
  • Renard, D.; Reddy, T. Polymères D'origine Biologique Pour La Microencapsulation. In Des sciences Aux Technologies;Vandamme, T.; Poncelet, D.; Subra-Paternault, P., Eds.; Lavoisier: Paris, France, 2007; pp. 175–188.
  • Gaonkar, A. G.; Vasisht, N.; Khare, A. R.; Sobel, R. Microencapsulation in the Food Industry: A Practical Implementation Guide; Elsevier; Amsterdam, 2014.
  • Zasypkin, D.; Paranjpe, S.; Reick, M.; Johnson, S. Extrusion Encapsulation of Actives at an Increased Load, Using Surface Active Plant. US 2013243851A1, September 19, 2013.
  • Slade, L.; Levine, H. Glass Transitions and Water-Food Structure Interactions. In Advances in Food and Nutrition Research; Kinsella, J. E., Taylor, S. L., Eds.; Academic Press, 1995; Vol. 38, pp. 103–234.
  • Rouilly, A.; Jorda, J.; Rigal, L. “Thermo-mechanical processing of sugar beet pulp. II. Thermal and rheological properties of thermoplastic SBP”, Carbohydr. Polym. 2006, 66 (1), 117–125.
  • Slade, L.; Levine, H.; Reid, D. S. “Beyond water activity: Recent advances based on an alternative approach to the assessment of food quality and safety”, Crit. Rev. Food Sci. Nutr. 1991, 30 (2-3), 115–360.
  • Nelson, K. A.; Labuza, T. P. “Water activity and food polymer science: Implications of state on Arrhenius and WLF models in predicting shelf life”, J. Food Eng. 1994, 22 (1–4), 271–289.
  • Hancock, B. C.; Zografi, G. “The relationship between the glass transition temperature and the water content of amorphous pharmaceutical solids”, Pharm. Res. 1994, 11 (4), 471–477.
  • Bhandari, B.; D'Arcy, B.; Gordon, Y. “Flavour retention during high temperature short time extrusion cooking process: A review”, Int. J. Food Sci. Technol. 2001, 36, 453–461.
  • Jacquot, M.; Madène, A.; Desobry, S. Encapsulation d'arômes Alimentaires. In Des Sciences aux Technologies; Vandamme, T.; Poncelet, D.; Subra-Paternault, P., Eds.; Lavoisier: Paris, France, 2007; pp. 227–294.
  • Avaltroni, F.; Bouquerand, P. E.; Normand, V. “Maltodextrin molecular weight distribution influence on the glass transition temperature and viscosity in aqueous solutions”, Carbohydr. Polym. 2004, 58 (3), 323–334.
  • Bangs, W. M.; Reineccius, G. A. The influence of dryer infeed matrices on the retention of volatile flavor compounds during spray drying. Jounral Food Sci. 1982, 47 (1), 254–259.
  • Shrestha, A. K.; Halley, P. J. Starch Modification to Develop Novel Starch-Biopolymer Blends: State of Art and Perspectives, Ch. 5. In Starch Polymers; Avérous, P. J. H., Ed.; Elsevier: Amsterdam, 2014; pp. 105–143.
  • Donovan, J. W. “Phase transitions of the starch–water system”, Biopolymers 1979, 18 (2), 263–275.
  • Zeleznak, K. J.; Hoseney, R. C. “The glass transition in starch”, Cereal Chem. 1987, 64, 121–124.
  • Chabrat, E.; Abdillahi, H.; Rouilly, A.; Rigal, L. “Influence of citric acid and water on thermoplastic wheat flour/poly(lactic Acid) Blends. I: Thermal, mechanical and morphological properties”, Ind. Crops Prod. 2012, 37 (1), 238–246.
  • Chinnawasmy, R.; Hanna, M. A. “Relationship between amylose content and extrusion- expansion of corn starches”, Cereal Chem. 1998, 65 (2), 138–143.
  • Nesterenko, A.; Alric, I.; Silvestre, F.; Durrieu, V. “Vegetable proteins in microencapsulation : a review of recent interventions and their effectiveness”, Ind. Crops Prod. 2013, 42, 469–479.
  • Goss Milani, T. M.; Cortazzo Menis, M. E.; Jordano, A.; Boscolo, M.; Conti-Silva, A. C. “Pre-extrusion aromatization of a soy protein isolate using volatile compounds and flavor enhacers: Effect on physical characteristics volatile retention and sensory characteristics of extrudates”, Food Res. Int. 2014, 62, 375–381.
  • Charve, J.; Reineccius, G. A. “Encapsulation performance of proteins and traditional materials for spray dried flavors”, J. Agric. Food Chem. 2009, 57, 2486–2492.
  • Guichard, E. “Interactions between flavor compounds and food ingredients and their influence on flavor perception”, Food Rev. Int. 2002, 18 (1), 49–70.
  • Gremli, H. A. Interaction of flavor compounds with soy protein. J. Am. Oil Chem. Soc. 1974, 51 (1), 95A–97A.
  • Benczedi, D.; Bouquerand, P. E. Process for the Preparation of Granules for the Controlled Release of Volatile Compounds. 01/17372 A1, March 15, 2001.
  • Gregson, C.; Sillick, M. Method of Preparing a Granular Delivery System. US 2429313 A1, 2012.
  • Yuliani, S.; Bhandari, B.; Rutgers, R.; D'Arcy, B. “Application of microencapsulated flavor to extrusion product”, Food Rev. Int. 2004, 20 (2), 163–185.
  • Porzio, M.; Popplewell, L. Encapsulation Compositions. US 5897, 897A, 27 1999.
  • Auken, B. V.; Lengerich, B. H. V.; Walther, G. Encapsulation of Readily Oxidizable Components. US 2007/055815 A1, 2007.
  • Kaushik, P.; D.; Barrow, C. J.; Adhikari, B. “Microencapsulation of omega-3-fatty acids: A review of microencapsulation and characterization methods”, J. Funct. Foods 2014, 1–14.
  • Lengerich, B. H. V. Encapsulation of Sensitive Components into a Matrix to Obtain Discrete Shelf-Stable Particles. US 6,500,463B1, 21 2002.
  • Saleeb, Z. F.; Arora, K. V. Method of Preparaing Glass Stabilized Materials. US 5972395, 1999.
  • Vieira, M. G. A.; Silva, M. A. da; Santos, L. O. dos; Beppu, M. M. “Natural based plasticizers and biopolymer films: A review”, Eur. Polym. J. 2011, 47, 254–263.
  • Gaudin, S.; Lourdin, D.; Ilari, J. L.; Colonna, P. “Plastisation and mobility in starch-sorbitol films”, J. Cereal Sci. 1999, 29, 273–284.
  • Lourdin, D.; Colonna, P.; Ring, S. “Volumetric behaviour of maltose/water, maltose/glycerol and starch/sorbitol/water systems mixtures in relation to structural relaxation”, Carbohydr. Res. 2003, 338, 2883–2887.
  • Benczedi, D.; Bouquerand, P. E. Process for the Preparation of Granules for the Controlled Release of Volatile Compounds. 2001/0036503 A1, Spring 2001.
  • Wolf, B. “Polysaccharide functionality through extrusion processing”, Curr. Opin. Colloid Interface Sci. 2010, 15 (1-2), 50–54.
  • Desai, K. G. H.; Park, H. J. “Recent developments in microencapsulation of food ingredients”, Dry. Technol. 2005, 23, 1361–1394.
  • Zuidam, N. J.; Shimoni, E. Overview of microencapsulates for use in food products or processes and methods to make them. In Encapsulation Technologies for Active Food Ingredients and Food Processing; Zuidam, N. J., Nedovic, V., Eds.; Springer: New York, 2010; pp. 3–29.
  • Gibbs, B. F.; Kermasha, S.; Alli, I.; Mulligan, C. N. “Encapuslation in the food industry: A review”, Int. J. Food Sci. Nutr. 1999, 50, 213–224.
  • Risch, S. J. Chapter 1. Encapsulation: Overview of uses and techniques. In Encapsulation and Controlled Release of Food Ingredients; Reineccius, G. A., Ed.; ACS Symposium Series; Reineccius & Risch, 1995; pp. 1–7.
  • Vos, P.de; Faas, M. M.; Spasojevic, M.; Sikkema, J. “Encapsulation for preservation of functionality and targeted delivery of bioactive food components: A review”, Int. Dairy J. 2010, 20, 292–302, 8, 853–860.
  • Thiry, J.; Krier, F.; Evrard, B. “A review of pharmaceutical extrusion: Critical process parameters and scaling-up”, Int. J. Pharm. 2015, 479 (1), 227–240.
  • Kokini, J. L.; Cocero, A. M.; Madeka, H.; de Graaf, E. “The development of state diagrams for cereal proteins”, Trends Food Sci. Technol. 1994, 5 (9), 281–288.
  • Carr, M. E.; Wing, R. E.; Doane, W. M. “Encapsulation of atrazine within a starch matrix by extrusion processing”, Cereal Chem. 1991, 68 (3), 262–266.
  • Choudhury, G. S.; Gautam, A. “Screw configuration effects on macroscopic characteristics of extrudates produced by twin-screw extrusion of rice flour”, J. Food Sci. 1999, 64 (3), 479–487.
  • Bouvier, J.-M.; Campanella, O. H. The Generic Extrusion Process V. In Extrusion Processing Technology; Wiley: NJ, 2014; pp. 393–464.
  • Porzio, M.; Popplewell, L. Encapsulation Compositions. US 6,187,351 B1, 13 2001.
  • Morais, A. R. C.; Bogel-Lukasik, R. “Green chemistry and the biorefinery concept”, Sustain. Chem. Process. 2013, 1 (18), 1–3.
  • Chemat, F.; Vian, M. A.; Cravotto, G. “Green Extraction of natural products: Concepts and principles”, Int. J. Mol. Sci. 2012, 13, 8615–8627.
  • Rombaut, N.; Tixier, A. S.; Bily, A.; Chemat, F. “Green extraction processes of natural products as tools for biorefinery”, Biofuels Bioprod. Biorefining 2014, 8, 530–544.
  • Clark, J. H.; Budarin, V.; Deswarte, F. E. I.; Hardy, J. J. E.; Kerton, F. M.; Hunt, A. J.; Luque, R.; Macquarrie, D. J.; Milkowski, K.; Rodriguez, A.; Samuel, O.; Tavener, S. J.; White, R. J.; Wilson, A. J. “Green chemistry and the biorefinery: A partnership for a sustainable future”, Green Chem. 2006, 8, 853–860.
  • Gharsallaoui, A.; Roudaut, G.; Chambin, O.; Voilley, A.; Saurel, R. “Applications of spray-drying in microecnapsulation of food ingredeints: An overview”, Food Res. Int. 2007, 40, 1107–1121.
  • Barbosa-Cánovas, G. V.; Ortega-Rivas, E.; Juliano, P.; Yan, H. Food Powders: Physical Properties, Processing, and Functionality; Springer: New York, 2005.
  • Rodrigues, S. N.; Fernandes, I.; Martins, I. M.; Mata, V. G.; Barreiro, F.; Rodrigues, A. E. “Microencapsulation of limonene for textile application”, Ind. Eng. Chem. Res. 2008, 47 (12), 4142–4147.
  • Teunou, E.; Poncelet, D. “Batch and continuous fluid bed coating-review and state of the art”, J. Food Eng. 2002, 53 (4), 325–340.
  • Aguilera, J. M.; Stanley, D. W. Microstructural Principles of Food Processing and Engineering; Springer Science & Business Media; NY, 1999.

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