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- W2181746844 abstract "The aim of this paper was to model the drying kinetics of distiller's spent grain (DSG) on an inert body in superheated steam (SS). The inert material was a Teflon sphere on which a thin layer of DSG was deposited. Drying curves were determined at SS temperatures between 110, 130 and160°C and steam velocity of 1.0 m/s. The falling drying rate data were used to calculate the effective moisture diffusion coefficients from the Fick's equation for an infinite plate of the thickness of the DSG layer deposited on the surface of the inert body. The computer simulations were conducted at the diffusivity determined with no shrinkage and when the change in the layer thickness was due to shrinkage but with the diffusivity determined based on non-shrinkage conditions. Assuming no shrinkage took place, the values of effective moisture diffusivity ranged between 3.02×10 −8 and 5.28×10 −8 m 2 /s, while it was between 1.45×10 −9 and 2.06×10 −9 m 2 /s when a change in the layer thickness was due to shrinkage. Neglecting the shrinkage phenomenon during drying overestimated the diffusivity of DSG. The diffusivity coefficient determined for the best fit conditions for the experimental data ranged from 5.08×10 −10 to 8.24×10 −10 ." @default.
- W2181746844 created "2016-06-24" @default.
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- W2181746844 date "2010-07-06" @default.
- W2181746844 modified "2023-09-26" @default.
- W2181746844 title "Shrinkage effect on moisture diffusivity calculation during superheated steam drying of distiller's spent grain" @default.
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