首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Determination of effective moisture diffusivity and drying kinetics for poplar sawdust by thermogravimetric analysis under isothermal condition
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Determination of effective moisture diffusivity and drying kinetics for poplar sawdust by thermogravimetric analysis under isothermal condition

机译:等温条件下热重分析法测定杨木屑的有效水分扩散率和干燥动力学

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摘要

The current study presents a thermogravimetric method to determine the effective moisture diffusivity and drying kinetics of biomass. Drying experiments on poplar sawdust were performed at four temperatures (60, 70, 80, and 90°C) by a thermogravimetric analyzer (TGA). The major assumption in experimentally determining effective diffusivity by Fick's diffusion equation is that drying is mass transfer limited and temperature remains isothermal during drying. The results indicated that TGA could well achieve these determining conditions. The drying process of sawdust mostly took place in the falling rate period. Midilli-Kucuk model showed the best fit for all experimental data. The effective diffusivity values changed from 9.38×10 ~(-10)m ~2/s to 1.38×10 ~(-9)m ~2/s within the given temperature range, and the activation energy was calculated to be 12.3kJ/mol.
机译:当前的研究提出了一种热重法来确定有效的水分扩散率和生物质的干燥动力学。通过热重分析仪(TGA)在四个温度(60、70、80和90°C)下对杨木屑进行干燥实验。通过Fick扩散方程实验确定有效扩散率的主要假设是,干燥受传质限制,并且干燥过程中温度保持等温。结果表明,TGA可以很好地满足这些确定条件。锯末的干燥过程主要发生在下降时期。 Midilli-Kucuk模型显示出最适合所有实验数据的模型。在给定温度范围内,有效扩散系数从9.38×10〜(-10)m〜2 / s变为1.38×10〜(-9)m〜2 / s,活化能计算为12.3kJ /摩尔

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