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Drying Technology
An International Journal
Volume 33, 2015 - Issue 5
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Review Articles

Advances in the Application of a Rotary Dryer for Drying of Agricultural Products: A Review

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REFERENCES

  • Jayas, D.; White, N. Storage and drying of grain in Canada: Low cost approaches. Food Control 2003, 14, 255–261.
  • Krokida, M.; Marinos-Kouris, D. Rehydration kinatics of dehydrated products. Journal of Food Engineering 2003, 57, 1–7.
  • Mujumdar, A.S.; Law, C.L. Drying technology: Trends and applications in postharvest processing. Food and Bioprocess Technology 2010, 3, 843–852.
  • Parry, J. Mathematical modelling and computer simulation of heat and mass transfer in agricultural grain drying: A review. Journal of Agricultural Engineering Research 1985, 32, 1–29.
  • Arinze, E.; Schoenau, G.; Sokhansanj, S.; Adapa, P. Aerodynamic separation and fractional drying of alfalfa leaves and stems—A review and new concept. Drying Technology 2003, 21(9), 1669–1698.
  • Chou, S.; Chua, K. New hybrid drying technologies for heat sensitive food stuffs. Trends in Food Science and Technology 2001, 12, 35–369.
  • Mujumdar, A.S. Dryers for particulate solids, slurries and sheet-form materials. In Guide to Industrial Drying: Principles, Equipment and New Developments; A.S. Mujumdar, Ed.; Three S. Colors: Mumbai, 2004; 37–77.
  • Sokhansanj, S.; Digvir S.; Jayas, D.S. Drying of foodstuffs. In Handbook of Industrial Drying, 3rd ed.; A.S. Mujumdar Ed.; CRC Press: Boca Raton, FL, 2006; 522–546.
  • Krokida, M.; Marinos-Kouris, D.; Mujumdar, A. Rotary drying. In Handbook of Industrial Drying, 3rd ed.; A.S. Mujumdar Ed.; CRC Press: Boca Raton, FL, 2006; 151–171.
  • Wu, H. Alfalfa drying properties and technologies: In review. Nature and Science 2004, 2(4), 1–3.
  • Fagernäs, L.; Brammer, J.; Wilén, C.; Lauer, M.; Verhoeff, F. Drying of biomass for second generation synfuel production. Biomass and Bioenergy 2010, 34, 1267–1277.
  • Pang, S.; Mujumdar, A. Drying of woody biomass for bioenergy: Drying technologies and optimization for an integrated bioenergy plant. Drying Technology 2010, 28, 690–701.
  • Mujumdar, A.S. Classification and selection of industrial dryers. In Guide to Industrial Drying: Principles, Equipment and New Developments; A.S. Mujumdar, Ed.; Three S. Colors: Mumbai, 2004; 23–36.
  • Moyers, C.G.; Baldwin, G.W. Psychrometry, evaporative cooling, and solids drying. In Chemical Engineers’ HandBook, 7th ed.; R.H. Perry D.W. Green and J.O. Maloney Ed.; McGraw-Hill: New York, 1997; Section 12.
  • Stroem, L.; Desai, D.; Hoadley, A. Superheated steam drying of Brewer's spent grain in a rotary drum. Advanced Powder Technology 2009, 20(3), 240–244.
  • Mujumdar, A. Superheated steam drying. In Handbook of Industrial Drying, 3rd ed.; A.S. Mujumdar Ed.; CRC Press: Boca Raton, FL, 2006; 439–452.
  • Arinze, E.; Schoenau, G.; Adapa, P. Modeling the fractional drying and aerodynamic separation of alfalfa into leaves and stems in a rotary dryer. Drying Technology 2007, 25, 785–798.
  • Mani, S.; Sokhansanj, S.; Bi, X. Modeling of forage drying in single and triple pass rotary drum dryers. In Proceedings of ASAE Annual International Meeting, Tampa, FL, July 17–20, 2005; Paper Number: 056082.
  • Zarea Hosseinabadi, H.; Layeghi, M.; Berthold, D.; Doosthosseini, K.; Shahhosseini S. Mathematical modeling the drying of poplar wood particles in a closed-loop triple pass rotary dryer. Drying Technology 2014, 32, 55–67.
  • Bacelos, M.; Jesus, D.; Freire, J. Modeling and drying of carton packaging waste in a rotary dryer. Drying Technology 2009, 27, 927–937.
  • Fernandes, N.J.; Ataíde, C.H.; Barrozo, A.S. Modeling and experimental study of hydrodynamic and drying characteristics of an industrial rotary dryer. Brazilian Journal of Chemical Engineering 2009, 26(02), 331–341.
  • Lisboa, M.H.; Vitorino, D.S.; Delaiba, W.B.; Finzer, J.R.D.; Barrozo, M.A.S. A study of particle motion in rotary dryer. Brazilian Journal of Chemical Engineering 2007, 24(03), 365–374.
  • Sunkara, K.R.; Herz, F.; Specht, E.; Mellmann, J. Influence of flight design on the particle distribution of a flighted rotating drum. Chemical Engineering Science 2013, 90, 101–109.
  • Sunkara, K.R.; Herz, F.; Specht, E.; Mellmann, J.; Erpelding, R. Modeling the discharge characteristics of rectangular flights in a flighted rotary drum. Powder Technology 2013, 234, 107–116.
  • Arruda, E.; Façanha, J.; Pires, L.; Barrozo, M. Conventional and modified rotary dryer: Comparison of performance in fertilizer drying. Chemical Engineering and Processing 2009, 48, 1414–1418.
  • Silvério, B. Fluid dynamics in concurrent rotary dryers and comparison of their performance with a modified dryer. Chemical Engineering and Technology 2011, 34(1), 81–86.
  • Saeman, W.C. Air-solids interaction in rotary dryers and coolers. Chemical Engineering Progress 1962, 58(6), 49–56.
  • Grant, E; Kalman, H. Fatigue analysis of particle attrition in a rotating drum. Part. Part. Syst. Char. 2001, 18, 64–69.
  • Alikhan, Z.; Raghavan, G.; Mujumdar, A. Adsorption drying of corn in zeolite granules using a rotary drum. Drying Technology 1992, 10(3), 783–797.
  • Bakker-Arkema, F.; Montross, M.; Qiang, L.; Maier, D. Analysis of continuous-flow grain dryers. In Proceedings of an International Conference on Grain Drying in Asia, Bangkok, Thailand, October 17–20, 1995; 123–131.
  • Duchesne, C.; Thibault, J.; Bazin, C. Modelling and dynamic simulation of an industrial rotary dryer. Developments in Chemical Engineering and Mineral Processing 1997, 5(3/4), 155–182.
  • Li, H.; Chen, Q., Zhang, X.; Finney, K.N.; Sharifi, V.N.; Swithenbank, J. Evaluation of a biomass drying process using waste heat from process industries: A case study. Applied Thermal Engineering 2012, 35, 71–80.
  • Law, C.L.; Mujumdar, A.S. Fluidized bed dryers. In Handbook of Industrial Drying, 3rd ed.; A.S. Mujumdar Ed.; CRC Press: Boca Raton, FL, 2006; 174–202.
  • Kiranoudis, C.T.; Maroulis, Z.B.; Marinos-Kouris, D. Modeling and optimization of fluidized bed and rotary dryers. Drying Technology 1997, 15(3&4), 735–763.
  • Kiranoudis, C.T.; Maroulis, Z.B.; Marinos-Kouris, D. Drying of solids: Selection of some continuous operation dryer types. Computers & Chemical Engineering 1996, 20(1), S177–S182.
  • Simeng, Z. Advances in grain drying technology in China. In Proceedings of the Seventh International Working Conference on Stored-Product Protection, Beijing, China, October 14–19, 1998; 1000–1012.
  • Baker, C.G.J.; McKenzie, K.A. Energy consumption of industrial spray dryers. Drying Technology 2005, 23(1–2), 365–386.
  • Kudra, T. Energy performance of convective dryers. Drying Technology 2012, 30(11–12), 1190–1198.
  • Kemp, I.; Oakley, D. Modelling of particlulate drying in theory and practice. Drying Technology 2002, 20(9), 1699–1750.
  • Thibault, J.; Alvarez, P.; Blasco, R.; Vega, R. Modeling the mean residence time in a rotary dryer for various types of solids. Drying Technology 2010, 28, 1136–1141.
  • Xu, Q.; Pang, S. Mathematical modeling of rotary drying of woody biomass. Drying Technology 2008, 26, 1344–1350.
  • Cao, W.F.; Langrish, T.A.G. Comparison of residence time models for cascading rotary dryers. Drying Technology 1999, 17(4 and 5), 825–836.
  • Castanõ, F.; Rubio, F.; Ortega, M. Modeling of a cocurrent rotary dryer. Drying Technology 2012, 30, 839–849.
  • Canales, E.; Borquez, R.; Melo, D. Steady state modelling and simulation of an indirect rotary dryer. Food Control 2001, 12, 77–83.
  • Cao, W.F.; Langrish, T.A.G. The development and validation of a system model for a countercurrent cascading rotary dryer. Drying Technology 2000, 18(1–2), 99–115.
  • Krokida, M.; Maroulis, Z.; Kremalis, C. Process design of rotary dryers for olive cake. Drying Technology 2002, 20(4–5), 771–788.
  • Luz, G.; Paraíso, P.; Jorge, L.; Andrade, C. Modeling and energetic analysis of soybean meal drying in the indirect rotary dryer. Chemical Product and Process Modeling 2009, 4(1), 1–20.
  • Dufour, P. Control engineering in drying technology: Review and trends. Drying Technology 2006, 24(7), 889–904.
  • Jumah, R.Y.; Mujumdar, A.S.; Raghavan, V.G.S. Control of industrial dryers. In Handbook of Industrial Drying, 3rd ed.; A.S. Mujumdar Ed.; CRC Press: Boca Raton, FL, 2006; 1161–1182.
  • Yliniemi, L. Advanced control of a rotary dryer. PhD thesis, University of Oulu, Finland, 1999.
  • Pérez-Correa, J.R.; Cubillos, F.; Zavala, E.; Shene, C.; Álvarez, P.I. Dynamic simulation and control of direct rotary dryers. Food Control 1998, 4, 195–203.
  • Menshutina, N.V.; Kudra, T. Computer aided drying technologies. Drying Technology 2001, 19(8), 1825–1849.
  • Didriksen, H. Model based predictive control of a rotary dryer. Chemical Engineering Journal 2002, 86, 53–60.
  • Savaresi, S.; Bitmead, R.; Peirce, R. On modelling and control of a rotary sugar dryer. Control Engineering Practice 2001, 9, 249–266.
  • Ortega, M.G.; Castanõ, F.; Vargas, M.; Rubio, F.R. Multivariable robust control of a rotary dryer: Analysis and design. Control Engineering Practice 2007, 15, 487–500.
  • Raghavan, G. Commercial grain dryers. In Handbook of Postharvest Technology: Cereals, Fruits, Vegetables, Tea and Spices; A. Chakraverty, A.S. Mujumdar, and H.S. Ramaswamy, Eds.; CRC Press: Boca Raton, FL, 2003; 167–182.
  • Kameoka, T.; Itou, N. Through flow rotary drier for brown rice. Journal of the Japanese Society of Agricultural Machinery 1998, 60(2), 19–26.
  • Regalado, M.; Madamba, P. Design and testing of a combined conduction-convection rotary paddy dryer. Drying Technology 2000, 18(9), 1987–2008.
  • Ilangantileke, S. Comparative analysis of different paddy drying methods in a rotary dryer. American Society of Agricultural Engineers 1990, 90–6618.
  • Soponronnarit, S.; Rodviboonchal, P. Modelling of rotary corn drying. In Proceedings of the Fourteenth ASEAN Seminar on Grain Postharvest Technology, Manila, Philippines, November 5–8, 1991; 438–447.
  • Matchett, A.; Baker, C. Particle residence times in cascading rotary dryers. Part 1: Derivation of the two-stream model. Journal of Separation Process Technology 1987, 8, 11–17.
  • Saeman, W.; Mitchell, T. Analysis of rotary dryer and cooler performance. Chemical Engineering Progress 1954, 50(9), 467–475.
  • Friedman, S.; Marshall, W. Studies in rotary drying dryer—Part I: Holdup and dusting. Chemical Engineering Progress 1949, 45(8), 482–493.
  • Iqbal, M.; Younis, M.; Sabir, M.S.; Qumar, S.A. Design and development of a continous-flow rotary grain dryer. Agricultural Mechanization in Asia, Africa and Latin America 1996, 27(2), 41–45.
  • Mittal, G.; Lapp, H.; Townsend, J. Feasibility of drying wheat with various solid heat transfer media. Canadian Agricultural Engineering 1985, 27(2), 121–125.
  • Tessier, S.; Raghavan, G. Performance of a sand medium dryer for shelled corn. Transactions of the ASAE 1984, 27(4), 1227–1237.
  • Mwithiga, G.; Jindal, V. Coffee drying in a rotary conduction type heating unit. Journal of Food Process Engineering 2004, 27, 143–157.
  • Noomhorm, A.; Remakumar, K. Accelerated drying of groundnuts in batch rotary drier. ASEAN Food Journal 1992, 7(3), 159–160.
  • Ahmed, A.S.; Ramachar, D.; Allabaksh, M.; Rao, T.S. Accelerated drying of groundnuts. Journal of the Science of Food and Agriculture 1967, 18, 116–118.
  • Kaleemullah, S.; Kailappan, R. Drying kinetics of red chillies in a rotary dryer. Biosystems Engineering 2005, 92(1), 15–23.
  • Pääkkönen, K. A combined infrared/heat pump drying technology applied to a rotary dryer. Agricultural and Food Science in Finland 2002, 11, 209–218.
  • Pelegrina, A.; Elustondo, M.; Urbicain, M. Design of a semi-continuous rotary drier for vegetables. Journal of Food Engineering 1998, 37, 293–304.
  • Pelegrina, A.; Elustondo, M.; Urbicain, M. Rotary semi-continuous drier for vegetables: Effect of air recycling. Journal of Food Engineering 1999, 41, 215–219.
  • Pääkkönen, K.; Havento, J.; Galambosi, B.; Pyykkönen, M. Infrared drying of herbs. Agricultural and Food Science in Finland 1999, 8, 19–27.
  • Elustondo, M.; Pelegrina, A.; Urbicain, M. A model for the dehydration rate of onion. Journal of Food Engineeering 1996, 29, 375–386.
  • Krokida, M.K.; Kiranoudis, C.T. Product quality multi-objective optimization of fluidized bed dryers. Drying Technology 2000, 18(1–2), 143–163.
  • Hugget, A.; Sébastian, P.; Nadeau, J.-P. Global optimization of a dryer by using neural networks and genetic algorithms. AIChE Journal 1999, 45(6), 127–1238.
  • Kaensup, W.; Chutima, S.; Wongwises, S. Experimental study on drying of chilli in a combined microwave-vacuum-rotary drum dryer. Drying Technology 2002, 20(10), 2067–2079.
  • Tarhan, S.; Telci, I.; Tuncay, M.; Polatci, H. Product quality and energy consumption when drying peppermint by rotary drum dryer. Industrial Crops and Products 2010, 32(3), 420–427.
  • Osorno, F.L.; Hensel, O. Drying homogeneity of grass mixture components in a rotary drum. Drying Technology 2012, 30, 1931–1935.
  • Patil, R.; Sokhansanj, S.; Arinze, E.; Scherlau, G. Thin layer drying of components of fresh alfalfa. Canadian Agricultural Engineering 1992, 34(4), 343–346.
  • Xianzhe, Z.; Lan, Y.; Jianying, W.; Hangfei, D. Process analysis for an alfalfa rotary dryer using an improved dimensional analysis method. International Journal of Agricultural and Biological Engineering 2009, 2(3), 76–82.
  • Zabaniotou, A. Simulation of forestry biomass drying in a rotary dryer. Drying Technology 2000, 18(7), 1415–1431.
  • Kinoshita, C. Flue gas drying of bagasse. Applied Engineering in Agriculture 1991, 7(6), 729–734.
  • Bern, C., Pate, M. and Shivvers, S. Operating characteristics of a high‐efficiency pilot scale corn distillers grains dryer. Applied Engineering in Agriculture 2011, 27(6), 993–996.
  • Iguaz, A; Esnoz, A; Martínez, G; López, A; Vírseda, P. Mathematical modelling and simulation for the drying process of vegetable wholesale by-products in a rotary dryer. Journal of Food Engineering 2003, 59, 151–160.
  • Iguaz, A.; López, A.; Vírseda, P. Influence of air recycling on the performance of a continuous rotary dryer for vegetable wholesale by-products. Journal of Food Engineering 2002, 54, 289–297.
  • Bates, R.; Morris, J.; Crandall, P. Principles and practices of small- and medium -scale fruit juice processing. FAO Agricultural Service Bulletin 2001, 146, 115–117.
  • Ariona, R.; Ollero, P.; Vidal, F. Automation of an olive waste industrial rotary dryer. Journal of Food Engineering 2005, 68(2), 239–247.
  • Yeole, S.P.; Deshmukh, M.M. Performance analysis of rotary cotton seed dryer with one and three segment flights. Research Journal of Engineering Sciences 2013, 2(4), 5–9.
  • Poels, J.; Van Langenhove, H.; Van der Biest, W.; Neukermans, G. Evaluation of rotary dryer processing pre-dried chicken manure. Biological Wastes 1987, 19, 3–23.
  • Schofield, F.; Glikin, P. Rotary driers and coolers for granular fertilizers. Transactions, Institution of Chemical Engineers 1962, 40, 183–190.
  • Iguaz, A; San Martin, M.B.; Mate, J.I.; Fernandez, T.; Virseda, P. Modelling effective moisture diffusivity of rough rice (Lido cultivar) at low drying temperatures. Journal of Food Engineering 2003, 59, 253–258.
  • Iguaz, A.; Budman, H.; Douglas, P. Modelling and control of an alfalfa rotary dryer. Drying Technology 2000, 20(9), 1869–1887.
  • Sun, D.-W.; Woods, J. Low temperature moisture transfer characteristics of barley: Thin-layer models and equilibrium isotherms. Journal of Agricultural Engineering Research 1994, 59(4), 273–283.
  • Sokhansanj, S.; Patil, R.T. Kinetics of dehydration of green alfalfa. Drying Technology 1996, 14(5), 1197–1234.

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