Abdelmotaleb, A., El-Kholy, M. M., Abou-El-Hana, N. H., & Younis, M. A. (2009). Thin layer drying of garlic slices using convection and combined (convection - infrared) heating modes. Misr J. Ag. Eng., 26(January 2009), 251–281.
Azadbakht, M., Torshizi, M. V., Ziaratban, A., & Aghili, H. (2017). Energy and exergy analyses during eggplant drying in a fluidized bed dryer. International Agricultural Engineering Journal, 19(3), 177–182.
Azadbakht, M., Vehedi Torshizi, M., Aghili, H., & Ziaratban, A. (2018). Application of artificial neural network (ann) in drying kinetics analysis for potato cubes. CARPATHIAN JOURNAL OF FOOD SCIENCE AND TECHNOLOGY, 10(2), 96–106.
Brooker, D. B., Bakker-Arkema, F. W., & Hall, W. (1992). Drying and storage of grains and oilseeds. Van Nostrand Reinhold, New York., 49(0), 450.
Darvishi, H. (2017). quality, performance analysis, mass transfer parameters and modeling of drying kinetics of soybean. Brazilian Journal of Chemical Engineering, 34(1), 143–158. doi:10.1590/0104-6632.20170341s20150509
Darvishi, H., Zarein, M., & Farhudi, Z. (2016). Energetic and exergetic performance analysis and modeling of drying kinetics of kiwi slices. Journal of Food Science and Technology, 53(5), 2317–2333. doi:10.1007/s13197-016-2199-7
Darvishi, H., Zarein, M., Minaei, S., & Khafajeh, H. (2014). Exergy and energy analysis, drying kinetics and mathematical modeling of white mulberry drying process. International Journal of Food Engineering, 10(2), 269–280. doi:10.1515/ijfe-2013-0065
Deshmukh, A. W., Varma, M. N., Yoo, C. K., & Wasewar, K. L. (2013). Effect of ethyl oleate pretreatment on drying of ginger: Characteristics and mathematical modelling. Journal of Chemistry, 2013. doi:10.1155/2013/890384
Dincer, I. (2000). Thermodynamics , Exergy and Environmental Impact. Energy Sources, 22(January 2014), 723–732. doi:10.1080/00908310050120272
Dincer, I., & Sahin, A. Z. (2004). A new model for thermodynamic analysis of a drying process. International Journal of Heat and Mass Transfer, 47(4), 645–652. doi:10.1016/j.ijheatmasstransfer.2003.08.013
Jindarat, W., Rattanadecho, P., & Vongpradubchai, S. (2011). Analysis of energy consumption in microwave and convective drying process of multi-layered porous material inside a rectangular wave guide. Experimental Thermal and Fluid Science, 35(4), 728–737. doi:10.1016/j.expthermflusci.2010.11.008
Min, Z., Chunli, L., & Xiaolin, D. (2005). Effects of Heating Conditions on the Thermal Denaturation of White Mushroom Suitable for Dehydration. Drying Technology, 23(5), 1119–1125. doi:10.1081/drt-200059145
Mokhtarian, M., Tavakolipour, H., & Kalbasi-Ashtari, A. (2016). Energy and exergy analysis in solar drying of pistachio with air recycling system. Drying Technology, 34(12), 1484–1500. doi:10.1080/07373937.2015.1129499
Nouroallahi Soghani, B., Azadbakht, M., & Darvishi, H. (2018). Ohmic blanching of white mushroom and its pretreatment during microwave drying.
Orikasa, T., Ono, N., & Watanabe, T. (2018). Impact of blanching pretreatment on the drying rate and energy consumption during far-infrared drying of Paprika ( Capsicum annuum L .), (April), 1–7. doi:10.1093/fqsafe/fyy006
R, I. D. (2002). On energetic , exergetic and environmental aspects of drying systems S, 727(May 2001), 717–727. doi:10.1002/er.792
Salengke, S., & Sastry, S. K. (2005). An Effect of Ohmic Pretreatment on the Drying Rate of Grapes and Adsorption Isotherm of Raisins. Drying Technology, 23(November 2013), 37–41. doi:10.1081/DRT-200054131
Sarker, M. S. H., Ibrahim, M. N., Abdul Aziz, N., & Punan, M. S. (2015). Energy and exergy analysis of industrial fluidized bed drying of paddy. Energy, 84, 131–138. doi:10.1016/j.energy.2015.02.064
Sharma, G. P., & Prasad, S. (2006). Specific energy consumption in microwave drying of garlic cloves. Energy, 31(12), 1585–1590. doi:10.1016/j.energy.2005.08.006
Soysal, Y., Öztekin, S., & Eren, Ö. (2006). Microwave Drying of Parsley: Modelling, Kinetics, and Energy Aspects. Biosystems Engineering, 93(4), 403–413. doi:10.1016/j.biosystemseng.2006.01.017
Wray, D., & Ramaswamy, H. S. (2015). Novel Concepts in Microwave Drying of Foods. Drying Technology, 33(7), 769–783. doi:10.1080/07373937.2014.985793
Yogendrasasidhar, D., & Pydi Setty, Y. (2018). Drying kinetics, exergy and energy analyses of Kodo millet grains and Fenugreek seeds using wall heated fluidized bed dryer. Energy, 151, 799–811. doi:10.1016/j.energy.2018.03.089
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