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Algorithm for controlling the process of buffer wastewater neutralization
Author(s) -
Анатолій Іванович Жученко,
Ruslan Osipa,
Liudmyla Osipa,
Lesia Ladieva
Publication year - 2021
Publication title -
vìsnik nacìonalʹnogo tehnìčnogo unìversitetu ukraïni «kiïvsʹkij polìtehnìčnij ìnstitut ìmenì ìgorâ sìkorsʹkogo». serìâ «hìmìčna ìnženerìâ, ekologìâ ta resursozberežennâ»
Language(s) - English
Resource type - Journals
eISSN - 2664-1763
pISSN - 2617-9741
DOI - 10.20535/2617-9741.3.2021.241028
Subject(s) - process (computing) , wastewater , software , buffer (optical fiber) , computer science , simulation software , quality (philosophy) , neutralization , process engineering , environmental science , environmental engineering , engineering , physics , operating system , telecommunications , quantum mechanics , antibody , immunology , biology
In Ukraine, the condition of surface water near industrial enterprises is extremely critical. The operation of enterprises leads to intensive water pollution with industrial and domestic wastewater. Therefore, improving the quality of treatment facilities through the introduction of automated control systems is an urgent problem. For the operation of automated control systems for typical cleaning processes, a software package is required, which is developed on the basis of appropriate algorithmic software and mathematical models of processes. To obtain them, methods of mathematical and simulation modeling and block diagram method of algorithmization were used. In order to assess the quality of the developed algorithm for controlling the process of buffer wastewater neutralization during operation, a comparison of control system operation based on this algorithm with the most successful foreign variants of neutralization control systems was made. Simulation for the average values of operating parameters Q = 75 m3 / h, CP = 75 g / l, and Ck = 2 g / l at minimum b = 0.02 g / l pH and maximum buffer value b = 0.47 g / l pH, and also with  unidirectional extreme combination of parameters Q = 50 m3 / h, CP = 100 g / l, b = 0,02 g / l pH and Q = 100 m3 / h, CP= 50 g / l, for minimum b = 0.02 g / l pH and maximum buffering value  b = 0.47 g / l pH shows that the best quality of transient processes is for the control system operating on the basis of the developed algorithm. For any combination of parameters, the transients for this control system provide better quality transients. Studies have shown that the control system based on the developed algorithm in comparison with the previously proposed systems provides better process control by reducing the time of transients and reducing the dynamic deviation of the output parameters, which improves the quality of wastewater treatment. Given the non-stationary process and high requirements for the cleaning parameters, manual control of this process is beyond the power of even an experienced operator. The developed mathematical model describing the dynamics of the wastewater neutralization reactor with buffer properties and the process control algorithm made it possible to proceed to the development of the control system software, which is necessary for the automated control of this process.

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