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A kinetic study of microwave and fluidized-bed drying of a Chinese lignite
Authors:Arash Tahmasebi  Jianglong Yu  Yanna Han  Huan Zhao  Sankar Bhattacharya
Affiliation:1. Key Laboratory of Advanced Coal and Coking Technology of Liaoning Province, School of Chemical Engineering, University of Science and Technology Liaoning, No. 185 Qianshan Zhong Road, Anshan 114051, PR China;2. Thermal Energy Research Centre, Shenyang Aerospace University, No. 37 Daoyi Nan Avenue, Shenyang 110136, PR China;3. Department of Chemical Engineering, Monash University, Clayton, VIC 3800, Australia
Abstract:
The drying kinetics of Chinese lignite in nitrogen fluidized-bed, superheated steam fluidized-bed and microwave were investigated. The changes in the mass as a function of drying time were measured under various drying conditions. The variations of moisture ratio with time were used to test ten different thin-layer empirical drying models given in the literature. In studying the consistency of all the models, some statistical tests, such as χ2, residual sum of squares (RSS) and F-value were also used as well as coefficient of determination R2. In nitrogen fluidized-bed and superheated steam fluidized-bed, the Midilli–Kucuk model best described the lignite drying process. Drying data in microwave were best described by the Page model, indicative of a difference in kinetics between the two drying methods. This difference was attributed to different heat transfer mechanisms under conventional and microwave drying conditions. The effects of drying parameters in nitrogen fluidized-bed, superheated steam fluidized-bed and microwave drying on the constants and coefficients of the selected models were studied by multiple regression analysis. The apparent diffusion coefficient of moisture in samples was obtained from the kinetics data and the apparent activation energies under nitrogen fluidized-bed, superheated steam fluidized-bed and microwave drying were found to be rather similar.
Keywords:Drying kinetics   Lignite   Superheated steam drying   Microwave drying   Apparent diffusion coefficient   Activation energy
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