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Microwave drying of a low-rank sub-bituminous coal

机译:低等级次烟煤的微波干燥

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摘要

The moisture contents of coals are often too high and need to be reduced before further processing. In this study, the application of microwave radiation as an alternative energy source for the drying of a sub-bituminous coal was investigated. Firstly, the permittivities of the coal were evaluated as a function of temperature and frequency. Secondly, the drying kinetics were studied in a 2.45 GHz microwave system and the effects of incident microwave power, sample mass and initial moisture contents were determined. The results demonstrated that microwave drying had several advantages over conventional drying such as increased drying rates and lower final moisture contents. In some tests, magnetite was added as a susceptor to increase the drying rates. Thirdly, the drying data were fitted to ten exponential decay models, and although reasonable agreement was observed with all the models, the best fit was obtained with the Midilli-Kucuk model. Finally, the effective diffusion coefficients of moisture and also the activation energy of the diffusion process were estimated and used to further elucidate the mechanism of microwave drying.
机译:煤的水分含量通常过高,需要在进一步处理之前降低。在这项研究中,研究了微波辐射作为干燥亚烟煤替代能源的应用。首先,评估煤的介电常数与温度和频率的关系。其次,在2.45 GHz微波系统中研究了干燥动力学,并确定了入射微波功率,样品质量和初始水分含量的影响。结果表明,与常规干燥相比,微波干燥具有若干优势,例如提高了干燥速率并降低了最终水分含量。在某些测试中,添加磁铁矿作为基座以提高干燥速率。第三,将干燥数据拟合到十个指数衰减模型,尽管在所有模型中均观察到合理的一致性,但使用Midilli-Kucuk模型获得了最佳拟合。最后,估算了水分的有效扩散系数以及扩散过程的活化能,并将其用于进一步阐明微波干燥的机理。

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