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Drying characteristics of porous material immersed in a bed of hygroscopic porous particles fluidized under reduced pressure

机译:浸入在减压条件下流化的吸湿性多孔颗粒床中的多孔材料的干燥特性

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A relatively large wet material was immersed in a fluidized bed of hygroscopic porous particle (silica gel beads) under reduced pressure. And then the drying characteristics were compared with those in the case of inert particle (glass beads). The comparison of drying characteristics is performed experimentally and theoretically. In calculation, the water transfer from the sample to the fluidized bed was considered. The calculation results are in good agreement with the experimental data. The effects of the operational conditions (the pressure in the drying chamber and the temperature of the drying gas) on the drying characteristics were also examined in both fluidizing particles. The drying finishes earlier in the case of hygroscopic porous particle than in the case of inert particle regardless of pressure in the drying chamber, since the water transfer front the sample facilitates the drying in the case of hygroscopic porous particles. The temperature decrement in drying appears in the case of inert particle. This phenomenon is also observed in the case of hygroscopic porous particle, but the decrement degree of the temperature is much smaller than that in the case of inert particle. The difference of the minimum temperature in the sample in drying between the cases of hygroscopic porous particle and inert particle is very slight for different pressures in the drying chamber. (c) 2007 Published by Elsevier Ltd.
机译:将相对大的湿材料在减压下浸入吸湿性多孔颗粒(硅胶珠)的流化床中。然后将干燥特性与惰性颗粒(玻璃珠)的情况进行比较。干燥特性的比较是通过实验和理论进行的。在计算中,考虑了水从样品到流化床的转移。计算结果与实验数据吻合良好。在两种流化颗粒中,还检查了操作条件(干燥室中的压力和干燥气体的温度)对干燥特性的影响。不管干燥室中的压力如何,在吸湿性多孔颗粒的情况下,干燥都比在惰性颗粒的情况下更早完成,因为在吸湿性多孔颗粒的情况下,水的前移使样品易于干燥。在惰性颗粒的情况下,干燥温度会降低。在吸湿性多孔颗粒的情况下也观察到这种现象,但是温度的降低程度比惰性颗粒的情况小得多。对于干燥室中的不同压力,在吸湿性多孔颗粒和惰性颗粒的情况下,样品中干燥的最低温度的差异很小。 (c)2007年由Elsevier Ltd.发布。

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