Modelling the Dehydration Characteristics of Taro (Colocasia Esculenta) Slices in a Convective Cabinet Dryer
- Authors
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A. P. Olalusi
Federal University of Technology Akure
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M. S. Obot
Federal University of Technology Akure
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A. S. Ogunlowo
Federal University of Technology Akure
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- Keywords:
- Array, Array, Array, Array
- Abstract
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This study was undertaken to determine the thin layer dehydration characteristics of Taro (Colocasia esculenta) slices in a convective cabinet dryer. The dehydration characteristics of the untreated taro slices were examined at air temperatures of 50, 60 and 70°C, sample thickness of 4 and 8 mm and at air velocity of 1.2 m/s. The effects of air temperature and sample thickness on the dehydration characteristics were determined. The experimental data obtained were fitted to eight thin layer dehydration models which are Newton, Page, Modified page, Henderson and Pabis, Logarithmic, Two terms, Wang and Singh, and the Two term exponential models. The regression was done using Sigma plots 10 statistical software. The accuracies of the models were measured using four statistics namely the coefficient of determination (R2), Reduced Chi square (χ2), Root mean square error (RMSE), and the Mean bias error (MBE). All the drying models used, except the Modified Page's model, were able to describe the dehydration characteristics of taro slices. However, the Logarithmic model proved to be the most précised for the description of the dehydration of the taro slices in a convective cabinet dryer.
- Author Biographies
- References
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AOAC, 1990.Official Methods Of Analysis(15th edition) Association of official Analytical chemists Washinton, DC.
Doymaz I.and Pala M. 2002. The effects of dipping pretreatment on air-drying rates of seedless grapes. Journal of Food Engineering, 52: 413–427.
Ertekin, C. and Yaldiz, O. 2004. Drying of eggplant and selection of a Journal of Food Engineering, 63(3) 349-359.
Falade, K. O., T. O. Olurin, E. A. Ike, and O. C. Aworh. 2007.Effect of pretreatment on air drying of Dioscorea alata and Dioscorea rotundata slices. Journal of Food Engineering, 80(4), 1002-1010.
Goyal, R.K., Kinglsy, A.R.P., Manikantan, M.R and Ilyas, S.M. 2007. Mathematical meodelling of thin layer dring kinetics of plum in a tunnel dryer. Journal of Food Enginnering, 79, 1 7 8 - 180.
Kingsly, A.R., Rajbir S., R.K. Goyal and D.B. Singh; 2007. Thin layer drying Behaviour of organically Produced Tomato. American Journal of food Technology, 2 (2), 71-78.
Krokida, M.K. and Marinos-Kouris, D. 2003. Rehydration kinetics of dehydration products. Journal of Food Engineering, 57(1), 1-7
Liu, Q. and F.W. Bakker-Arkema. 1997. Stochastic modeling of grain drying, part 2: model development. Journal of Agricultural Engineering Res; 66: 275-280.
Madamba, P.S., Driscoll, R.H and Buckle, K.A. 1996.Tthe thin laner drying characteristics of garlic slices. Journal of Food Eng., 29:97
Maskan M (2000). The thin-layer Modeling of Tomato Drying Process. Agriculturae conspectus Scientificus,72 (4), 343-349.
Nguyen, M., and Price, W.E. (2007. Air drying of Banana: Influence of experimental parameters slab thickness banana maturity and harvesting season. Journal of food Enginering, 79, 200-207.
Olurin, T. O., Adelekan, A.O. and W. A. Olosunde. 2012. Mathematical modelling of drying characteristics of blanched field pumpkin (Cucurbita pepo L) slices. Agric Eng Int: CIGR Journal, 14, 4, 246 – 254.
Overhults, D.D., G.M. White, M.E. Hamilton and I.J. Ross. 1973. Drying soybeans with heated air. Tran. ASAE, 16, 195-200
Oyerinde A. S., A.P. Olalusi and A.S.Ogunlowo. 2006. Evaluation of selected mathematical models for describing thin layer drying of Gari. Nigerian Drying Symposium series II. Faculty of engineering, Uniport, Nigeria, 77-84
Rahman, M.S., Perera, C.O. and Theband, C. 1998. Desorption isotherm and heat pump drying kinetics of Thompson seedless grapes J. food Eng 39, 211-216.
Sacilik, K. and Unal, G. 2005. Dehydration characteristics of kastamonu Gavlic Slices, Biosystems Engineering, 209
Saravadia, P.N., Sawhney, R.L., Pangavhare, D.R and singh, S.P.1999. Dring behaviour of brined onion slices. Journal of Food Engineering 40, 219-226
Sharaf- Eldeen, Y.I., J.L. Elaisdell and M.Y. Hamdy. 1980. A model for ear corn drying. Transaction of the ASAE, 5, 1261-1265.
Togrul, I.T and Pehlivan, I. 2002. Mathematical Modelling of solar drying of apricots in thin layers. J. food Eng., 55: 216
Wang, C.Y. and Sing R.P. 1978. A single layer drying equation for rough rice. America society Agricultural Engineering, paper N0. 78-3001,, St Josephy, MI, USA
Zhang, Q. and Litchfield., J.B. 991. An optimization of intermittent corn drying in a laboratory scale thin layer drying. Dry Technology, 9, 383-395.
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