Analysis and Calculation of the Probability Selectivity Using the Modern Distributed Algorithms

Author:

Umarova Zhanat1,Botayeva Saule1,Zhidebayeva Aziza2,Torebay Nursaule2

Affiliation:

1. South Kazakhstan State University, Shymkent, Kazakhstan

2. Silkway International University, Shymkent, Kazakhstan

Abstract

The calculation of the characteristics of the selectivity in the membrane separation of mixtures, based on basic physicochemical characteristics of the solution, is a difficult task due to the large number of influencing factors. To solve this problem, for a theoretical evaluation of the selectivity of ultrafiltration membranes, modern distributed algorithms are used for a probabilistic approach, in which the mechanism of the separation process differs significantly from the separation mechanism in nanomembranes. As a result of the proposed models and modern distributed algorithms, estimates of the selectivity of nanofiltration membranes for individual ions were obtained. It was found that an important feature of mixing with the mixture flowing through the membrane is the dependence of the effective diffusion coefficient on time. Also, as a result of calculations by the proposed model, it was found that this feature is modeled by the coefficient of anomalous fractal diffusion in time, as well as by the displacement of the effective separation zone in the membrane.

Publisher

IGI Global

Subject

Computer Networks and Communications,Hardware and Architecture

Reference21 articles.

1. Bekman, I. (2015). Unusual membrane processes: non-stationary modes, inhomogeneous and moving membranes.

2. Bekman, I. (2016). Diffusion mathematics.

3. Bertil, H. (2018). Membrane permeation and ion selectivity. Journal of General Physiology, 46-56.

4. Brener, A. M., Muratov, A. S., & Tashimov, L. (2004). Non-linear model of time-dependent relaxation cores for the systems with cross transfer effects. WIT Transactions on Engineering Sciences, 46.

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