The discussions about the temperature and adsorbed mass distribution in the adsorbent bedduring adsorption and desorption processes are shown with numerical method. Both models with equilibrium and non-equilibrium adsorption are compared with each other.
本文对吸附床在吸附、解吸过程中的温度场和吸附率分布进行了模拟计算,并将其与采用平衡吸附模型的计算结果进行了比较,文中比较及结论有助于深入认识吸附床在制冷循环中工作特性,并为吸附床的设计提供参考依据。
参考来源 - 具有非平衡吸附特征的吸附床传热特性研究 INVESTIGATION OF HEAT TRANSFER CHARACTER ON ADSORBENT BED WITH CONSIDERATION OF NON·2,447,543篇论文数据,部分数据来源于NoteExpress
The concentration helped to increase the equilibrium adsorption capacity.
初始浓度的增大有利于提高平衡吸附容量。
The higher the temperature was, the stronger equilibrium adsorption capacity was.
温度升高,平衡吸附量增大。
The results of static equilibrium adsorption showed nda-150 had higher adsorption capacities.
结果表明NDA—150树脂对硝基化合物的吸附效果较好。
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