KINETIC MODEL OF THE INITIAL STAGE OF THE PROCESS OF COLLOID RETENTION BY THE PORE SPACE OF SOKYRNITE

Y. Onanko, A. Onanko
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Abstract

The physicochemical phenomena occurring on the surface of sokyrnite grains in complex system "medium grain surface - dispersion medium - surface of suspended particles" have been studied. The framework structure of the sokyrnite structure (rough surface, presence of pores and channels, entrance windows) enables it to work as a "molecular sieve" and to be a highly efficient sorbent-ion exchanger. The porosity of the filter media was determined. Namely: the porosity of the media grains (also called the internal porosity) and the porosity of the intergranular space (media layer). The internal surface area, which is an important quality parameter for sokyrnite as a physical adsorbent, was determined. Several other properties associated with sokyrnite and retained colloidal particles, which affect the strength of the physical adsorption, were investigated. The relationships characterizing the parameters of the zeolite filter media layer were formulated and given. In these studies, the requirements for determining the filter charging time and the optimal technological and design parameters of the filter, according to the operating conditions at a specific water treatment facility, were considered. They determined the need for more detailed research and development of a kinetic model for the initial stage of filtering an aqueous suspension through a filter containing zeolite media. A differential material balance expression for the zeolite filter was formulated. Based on the developed kinetic model, comparative experiments on iron removal from underground natural waters using the above-mentioned filter material were planned and carried out. The mechanism of the distribution of iron ions in the filter space due to the phenomenon of diffusion, in accordance with Fick's first law, is given. The mechanism of iron flake retention by the zeolite media pore space, the consolidation of which occurs during the transition of iron from a divalent to trivalent form, is described. The factors that interfere with autocatalytic processes in iron sediments were described. The dynamics of changes in the concentration of iron in the filtrate after the end of the ion-exchange resource of sokyrnite were studied.
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沸石孔隙中胶体滞留过程初始阶段的动力学模型
研究了“中粒表面-分散介质-悬浮颗粒表面”复杂体系中碳化硅颗粒表面的物理化学现象。钛矿结构的框架结构(粗糙的表面,孔隙和通道的存在,入口窗口)使其能够作为“分子筛”工作,并成为高效的吸附离子交换剂。测定了滤料的孔隙率。即:介质颗粒的孔隙度(也称为内部孔隙度)和粒间空间(介质层)的孔隙度。测定了作为物理吸附剂的sosonite的重要质量参数—内表面积。研究了与钛矿和保留的胶体颗粒有关的其他一些影响物理吸附强度的性质。给出了表征沸石滤料层各参数的关系式。在这些研究中,根据特定水处理设施的运行条件,考虑了确定过滤器充注时间的要求以及过滤器的最佳工艺和设计参数。他们确定需要更详细的研究和开发动力学模型,用于通过含有沸石介质的过滤器过滤含水悬浮液的初始阶段。给出了沸石滤料的微分物料平衡表达式。基于建立的动力学模型,规划并开展了上述滤料对地下天然水除铁效果的对比实验。根据菲克第一定律,给出了铁离子在过滤空间中由于扩散现象而分布的机理。描述了沸石介质孔隙空间对铁片的保留机制,即铁从二价到三价形态的转变过程中铁片的固结发生。介绍了影响铁沉积物自催化过程的因素。研究了沸石离子交换资源结束后滤液中铁浓度的动态变化。
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