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Development of a mathematical model of molecular-selective gas transfer in a hybrid membrane-adsorption oxygen concentrator

机译:杂交膜吸附氧浓缩器中分子选择性气体转移数学模型的发展

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Most modern oxygen concentrators use sorption air separation technology. The development of a hybrid membrane-sorption separation technology can improve the energy efficiency of the process. The paper considers a mathematical model of molecular-selective gas transfer in a hybrid oxygen concentrator consisting of adsorption and membrane units combined into a circulation loop. The considered hybrid model has based on a model of equilibrium isothermal sorption with linear isotherms without longitudinal mixing for numerical calculation of the adsorption unit of the system and a model of ideal displacement in the high-pressure cavity with perpendicular outflow in the low-pressure cavity to calculate the system membrane unit. In the course of the study, the high adequacy of the model was obtained with an experiment in the range of oxygen concentrations up to 90%, and a comparison was made with previously obtained results. A new model has been proposed that can take into account the equalization and countercurrent blowing stages.
机译:大多数现代氧气聚光器使用吸附空气分离技术。混合膜吸附分离技术的发展可以提高该方法的能量效率。本文考虑了由组合成循环回路的混合氧浓缩器中的分子选择性气体转移的数学模型。所考虑的混合模型基于平衡等温吸附模型,其线性等温器没有纵向混合,用于系统的吸附单元的数值计算和高压腔中的理想位移模型,低压腔中的垂直流出计算系统膜单元。在研究过程中,在氧浓度范围内的实验中获得了模型的高充分性,并且通过先前获得的结果进行了比较。提出了一个新模型,可以考虑均衡和逆流吹阶段。

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