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Drying Technology
An International Journal
Volume 16, 1998 - Issue 1-2
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Original Articles

IMPROVING ENERGY EFFICIENCY IN COMBINED MICROWAVE-CONVECITVE DRYING

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Pages 123-140 | Published online: 28 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (9)

D. Zare & M. Ranjbaran. (2012) Simulation and Validation of Microwave-Assisted Fluidized Bed Drying of Soybeans. Drying Technology 30:3, pages 236-247.
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Natalia Jaramillo, Ramiro Restrepo, Claudia García & Jairo Marín. (2012) Comparative Study of Two Methods of Drying an Electro-Porcelain Paste. Drying Technology 30:1, pages 37-43.
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S. J. Kowalski & K. Rajewska. (2009) Convective Drying Enhanced with Microwave and Infrared Radiation. Drying Technology 27:7-8, pages 878-887.
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Stefan Jan Kowalski & Bolesław Mielniczuk. (2007) Analysis of Effectiveness and Stress Development during Convective and Microwave Drying. Drying Technology 26:1, pages 64-77.
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A. B. Bonafonte, O. Iglesias & J. L. Bueno. (2007) Effects of Operating Conditions on the Combined Convective-Microwave Drying of Agar Gels. Drying Technology 25:11, pages 1867-1873.
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Tian Yu, Fang Lin & Huang Jun Li. (2007) Effect of Microwave Radiation on Immobilization of Heavy Metals in Sediment Sludge. Soil and Sediment Contamination: An International Journal 16:6, pages 605-615.
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StefanJ. Kowalski, Kinga Rajewska & Andrzej Rybicki. (2005) Stresses Generated During Convective and Microwave Drying. Drying Technology 23:9-11, pages 1875-1893.
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Janusz Stanisławski. (2005) Drying of Diced Carrot in a Combined Microwave–Fluidized Bed Dryer. Drying Technology 23:8, pages 1711-1721.
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A. B. Bonafonte, O. Iglesias & J. L. Bueno. (2002) COMBINED CONVECTIVE-MICROWAVE DRYING OF AGAR GELS: INFLUENCE OF MICROWAVE POWER ON DRYING KINETICS. Drying Technology 20:1, pages 93-108.
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Articles from other publishers (13)

Tushar Gulati, Huacheng Zhu & Ashim K. Datta. (2016) Coupled electromagnetics, multiphase transport and large deformation model for microwave drying. Chemical Engineering Science 156, pages 206-228.
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Ali Motevali, Saeid Minaei, Ahmad Banakar, Barat Ghobadian & Mohammad Hadi Khoshtaghaza. (2014) Comparison of energy parameters in various dryers. Energy Conversion and Management 87, pages 711-725.
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Robert H. Walters, Bakul Bhatnagar, Serguei Tchessalov, Ken-Ichi Izutsu, Kouhei Tsumoto & Satoshi Ohtake. (2014) Next Generation Drying Technologies for Pharmaceutical Applications. Journal of Pharmaceutical Sciences 103:9, pages 2673-2695.
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Stefan J. Kowalski. 2014. Modern Drying Technology. Modern Drying Technology 125 154 .
S. J. Kowalski, A. Rybicki & K. Rajewska. (2013) Optimal control of convective drying of saturated porous materials. AIChE Journal 59:12, pages 4846-4857.
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Stefan J. Kowalski, Jacek Banaszak & Andrzej Rybicki. (2012) Damage analysis of microwave-dried materials. AIChE Journal 58:7, pages 2097-2104.
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SHUZHENG FANG, ZHENGFU WANG, XIAOSONG HU, FANG CHEN, GUANGHUA ZHAO, XIAOJUN LIAO, JIHONG WU & YAN ZHANG. (2011) ENERGY REQUIREMENT AND QUALITY ASPECTS OF CHINESE JUJUBE (ZIZYPHUS JUJUBA MILLER) IN HOT AIR DRYING FOLLOWED BY MICROWAVE DRYING. Journal of Food Process Engineering 34:2, pages 491-510.
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Attila Göllei, András Vass, Attila Magyar & Elisabeth Pallai. (2009) Apparatus and method for investigation of energy consumption of microwave assisted drying systems. Review of Scientific Instruments 80:10.
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Stefan J. Kowalski, Grzegorz Musielak & Jacek Banaszak. (2009) Heat and mass transfer during microwave-convective drying. AIChE Journal, pages NA-NA.
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Yi-Chung Fu, Li Dai & Binghuei B. Yang. (2005) Microwave finish drying of (tapioca) starch pearls. International Journal of Food Science and Technology 40:2, pages 119-132.
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Y.‐C. Fu, C.‐H. Tong & D.B. Lund. (2006) Moisture Migration in Solid Food Matrices. Journal of Food Science 68:8, pages 2497-2503.
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Susanta Kumar Das & Amalendu Chakraverty. 2003. Handbook of Postharvest Technology. Handbook of Postharvest Technology 139 166 .
Q Gan. (2000) A case study of microwave processing of metal hydroxide sediment sludge from printed circuit board manufacturing wash water. Waste Management 20:8, pages 695-701.
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