Computer prediction of technological modes of rapid cone-shaped adsorption filters with automated discharge of part of heat from separation surfaces in filtering mode

Yu. E. Klymiuk, A. Bomba
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Abstract

In the paper a mathematical models of technological modes of filtration with automated removal of part of heat from interface surfaces (water purification from multicomponent impurities), backwashing, chemical regeneration and direct washing of rapid cone-shaped adsorption filters with chemical regeneration of piecewise homogeneous porous loads while maintaining constant velocities of the respective modes is formulated. The proposed models in the complex allow to conduct computer experiments to investigate the change in the concentrations of components of a multicomponent impurity in the filtration stream and on the surface of the loading adsorbent, retained by both physical and chemical adsorption, filtration flow temperature, filtration coefficient, active porosity and pressure along the filter height and on their basis to predict more optimal options for the use of adsorbents of each loading layer and increase the protective time of rapid cone-shaped adsorption filters with automated heat removal from the interface surfaces in filter mode.
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过滤方式下自动排出分离面部分热量的快速锥形吸附过滤器工艺模式的计算机预测
本文建立了从界面表面自动去除部分热量(从多组分杂质中净化水)、反冲洗、化学再生和快速锥形吸附过滤器的直接洗涤等工艺模式的数学模型,并对分段均质多孔负荷进行化学再生,同时保持各自模式的恒定速度。该综合设施中提出的模型允许进行计算机实验,以研究过滤流中多组分杂质组分浓度的变化,以及通过物理和化学吸附保留的负载吸附剂表面,过滤流温度,过滤系数,活性孔隙度和压力沿过滤器的高度,并在其基础上预测更多的最佳选择,以使用吸附剂的每个加载层,并增加快速锥形吸附过滤器的保护时间,在过滤模式下,自动从界面表面散热。
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