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首页> 外文期刊>Chemical Engineering Science >DRYING KINETICS - A COMPARISON OF DIFFUSION COEFFICIENTS FROM MOISTURE CONCENTRATION PROFILES AND DRYING CURVES
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DRYING KINETICS - A COMPARISON OF DIFFUSION COEFFICIENTS FROM MOISTURE CONCENTRATION PROFILES AND DRYING CURVES

机译:干燥动力学-水分浓度曲线和干燥曲线的扩散系数比较

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摘要

The mathematical formulation of mass transfer in drying processes is often based on the diffusion equation. In principle the diffusion coefficient as a function of moisture content has to be determined experimentally. The most direct approach is to derive the diffusion coefficient from experimental moisture concentration profiles in the material during drying. In this work, the diffusion coefficient determined in this way is called the actual diffusion coefficient. Very often, however, an indirect method is used based on drying curves (average moisture content of a sample vs time). Since the diffusion coefficient is determined indirectly from the macroscopic behaviour of the sample, this coefficient will be called the apparent diffusion coefficient. A comparison of diffusion coefficients as a function of moisture content using both methods shows that for porous materials such as clays, the apparent diffusion coefficient depends on experimental conditions. This can be explained by the fact that the apparent diffusion coefficient is in agreement with the actual diffusion coefficient over a limited range of moisture content only. For materials such as clays, drying curves are not suited to derive diffusion coefficient as a function of moisture content in a satisfactory and consistent way. [References: 8]
机译:干燥过程中传质的数学公式通常基于扩散方程。原则上,扩散系数作为水分含量的函数必须通过实验确定。最直接的方法是从干燥过程中材料中的实验水分浓度曲线得出扩散系数。在这项工作中,以此方式确定的扩散系数称为实际扩散系数。但是,通常会根据干燥曲线(样品的平均水分含量随时间变化)使用间接方法。由于扩散系数是根据样品的宏观行为间接确定的,因此将该系数称为表观扩散系数。使用这两种方法比较扩散系数与水分含量的关系,结果表明,对于多孔材料(例如粘土),表观扩散系数取决于实验条件。这可以通过以下事实解释:表观扩散系数仅在有限的水分含量范围内与实际扩散系数一致。对于诸如粘土的材料,干燥曲线不适合以令人满意且一致的方式得出作为水分含量的函数的扩散系数。 [参考:8]

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