| Peer-Reviewed

Risk Management of Implementation of Reagentless Treatment of Acid Mine Water

Received: 15 January 2022    Accepted: 4 February 2022    Published: 16 February 2022
Views:       Downloads:
Abstract

The task of managing the risk of introducing reagentless treatment of acid mine water is considered. The task is solved, first of all, for natural technological complexes formed by coal and copper-zinc-pyrite mines transferred to "wet" preservation due to unprofitability. To solve the problem, a mobile technological complex operating in a flow-through mode is used. The solution of the problem is based on a system decomposition of the object, tasks and research criteria. The object of the analysis are large volumes of heterogeneous flows of mine water arriving for treatment. The set task is a multi-criteria one. Multi-agent modeling integrating several applications interacting by means of input and output data flows is used for the system design. Decomposition of the set task on the basis of a joint study of mine water properties and treatment technology on a laboratory bench, on which it is possible to reproduce the minimum required set of treatment operations and water conditioning is performed. The structure of the system integrating the concept of safety and the concept of extraction of high value products from mine water is offered. Results of X-ray phase analysis of sediments obtained after cavitation treatment of mine water are presented.

Published in International Journal of Materials Science and Applications (Volume 11, Issue 1)
DOI 10.11648/j.ijmsa.20221101.14
Page(s) 21-28
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Risk Management, Reagent-free Treatment of Mine Water, Mobile Technological Complex, Multi-agent Modeling, Decomposition, Laboratory Bench, Mobile Technological Complex Group Management

References
[1] D. M. Belozerov, A. K. Guts, Software WEB-implementation of DSM-method of automatic hypothesis generation based on inductive logic // Mathematical Structures and Modelling 2020. № 3 (55). С. 72-102.
[2] Technogenic water: problems, technologies, resource value / [Z. M. Shulenina, V. V. Bagrov, A. V. Desyatov et al.] - Moscow: Bauman Moscow State Technical University Publisher, 2015.- 401, p.: ill.
[3] V. I. Demkin, A. A. Kharionovsky, N. N. Gusev, E. L. Kaplunov, V. Y., Kirsch Jorg. To the problem of complex processing of mine waters in Russia / / Mining Information and Analytical Bulletin (scientific and technical journal, 2009, 209-219.
[4] Zobnin, B. B. Justification of a set of controlled parameters in the primary processing of acid mine water "without reagent" method / B. B. Zobnin, V. V. Kochetkov //VII International Scientific and Practical Conference, Environmental and technical safety of mining regions, 2019, 86-92.
[5] Zobnin, B. B. Bench tests of reagentless treatment of acid mine water/B. B. Zobnin, D. S. Shokurov, O. A. Korolev // Proceedings of the V-th Congress with international participation Technogen-2021, p. 340-343.
[6] B. B. Zobnin, A. A. Makov, Ba Mamadou Gando. Types of uncertainties arising in the evaluation of investment projects of mine water processing// Algorithms, methods and data processing systems: electronic scientific journal, 2019, vol. 2 (40), p. 35-42.
[7] Zobnin B. B., Vozhegov A. V. Multiagent systems. Management of complex technological complexes//LAP, ISBN: 978-3-659-51978-9, 2014, 148 p.
[8] Zobnin B. B., Kochetkov V. V.. Paradigm of minimization of environmental and economic risks of copper-zinc-copper-copper-ore mine closure// ASU Scitech Forum 2020 International Scientific and Practical Forum, Barnaul, Russia.
[9] L. A. Kulsky et al. Technology of Natural Water Treatment. Kiev: Higher School, 1981, 327 p.
[10] M. S. Mullakaev, G. B. Veksler, V. O. Abramov, A. R. Vakhitov. Ultrasound in acid mine water treatment processes// Ecology and Industry of Russia, 2015. Т. 19. № 12. С. 4-10.
[11] Moore J. V., Ramamurthy S. - Heavy Metals in Natural Waters / Moscow: Mir, 1987, 250 p.
[12] Kochetkov, V. V. Problems and prospects of using cross-platform programming in the development of a mobile acid mine water processing complex / V. V. Kochetkov, B. B. Zobnin// Colloquium Publishing House, 2019, pp. 60-62.
[13] Patent 2464109 Russian Federation IPC B06B 1/18) Method and device for generating pressure oscillations in fluid flow [Text]/Abdrashitov A. A., Kravtsov Y. I., Marfin E. A.; Applicant and patent holder Institution of the Russian Academy of Sciences, Kazan Scientific Centre RAS, Application: May 21, 2010, publ. 20.10.2012 Bulletin no. 29.
[14] Patent 2739259 Russian Federation MPK C02F1/48, B01D17/06 Method of acid mine water treatment and mobile technological complex for its implementation / B. B. Zobnin, V. V. Kochetkov, A. V. Vozhegov, A. I. Semiachkov, Ponomarev O. A., Matevosyan M. B.; Applicant and patent holder Federal State Budgetary Educational Institution of Higher Education "Ural State Mining University. 2020.04.15, op. 2020.12.22, Bulletin N 36.
[15] Radzyuk A. Y., Kulagin V. A., Istyagina E. B., Pyanikh T. A. Modernization of the cavitation stand to study two-phase flow regimes// Siberian Federal University, 2019, 4.
[16] Rybnikova L. S., Rybnikov P. A. Navolokina V. A. Assessment of the impact of the flooded Lyovikha copper-pyrite mine on the quality of surface waters of the Tagil River//Problems of Subsoil Use, 2019, N3, p. 155-161.
[17] Shadrunova I. V., Chalkova N. L., Orekhova N. N., Chalkova K. D. Substantiation of effective parameters of zinc ions extraction from mine water by electrochemical method // Advances in Modern Natural Science, 2016 № 1, p. 157-160.
[18] Vladimir A. Kulagin, Ekaterina S. Sapoghnikovaa, Olesya P. Stebeleva, Ludmila V. Kashkina, Zhi-Ying Zhengb, Qian Lib and Feng-Chen Features of Influence of Cavitation Effects on the Physicochemical Properties of Water and Wastewater // Journal of Siberian Federal University. Engineering & Technologies 5 (2014 7) 605-614.
Cite This Article
  • APA Style

    Zobnin Boris Borisovich, Kochetkov Vitaly Victorovich, Shokurov Denis Sergeyevich, Korolev Oleg Anatolevich. (2022). Risk Management of Implementation of Reagentless Treatment of Acid Mine Water. International Journal of Materials Science and Applications, 11(1), 21-28. https://doi.org/10.11648/j.ijmsa.20221101.14

    Copy | Download

    ACS Style

    Zobnin Boris Borisovich; Kochetkov Vitaly Victorovich; Shokurov Denis Sergeyevich; Korolev Oleg Anatolevich. Risk Management of Implementation of Reagentless Treatment of Acid Mine Water. Int. J. Mater. Sci. Appl. 2022, 11(1), 21-28. doi: 10.11648/j.ijmsa.20221101.14

    Copy | Download

    AMA Style

    Zobnin Boris Borisovich, Kochetkov Vitaly Victorovich, Shokurov Denis Sergeyevich, Korolev Oleg Anatolevich. Risk Management of Implementation of Reagentless Treatment of Acid Mine Water. Int J Mater Sci Appl. 2022;11(1):21-28. doi: 10.11648/j.ijmsa.20221101.14

    Copy | Download

  • @article{10.11648/j.ijmsa.20221101.14,
      author = {Zobnin Boris Borisovich and Kochetkov Vitaly Victorovich and Shokurov Denis Sergeyevich and Korolev Oleg Anatolevich},
      title = {Risk Management of Implementation of Reagentless Treatment of Acid Mine Water},
      journal = {International Journal of Materials Science and Applications},
      volume = {11},
      number = {1},
      pages = {21-28},
      doi = {10.11648/j.ijmsa.20221101.14},
      url = {https://doi.org/10.11648/j.ijmsa.20221101.14},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijmsa.20221101.14},
      abstract = {The task of managing the risk of introducing reagentless treatment of acid mine water is considered. The task is solved, first of all, for natural technological complexes formed by coal and copper-zinc-pyrite mines transferred to "wet" preservation due to unprofitability. To solve the problem, a mobile technological complex operating in a flow-through mode is used. The solution of the problem is based on a system decomposition of the object, tasks and research criteria. The object of the analysis are large volumes of heterogeneous flows of mine water arriving for treatment. The set task is a multi-criteria one. Multi-agent modeling integrating several applications interacting by means of input and output data flows is used for the system design. Decomposition of the set task on the basis of a joint study of mine water properties and treatment technology on a laboratory bench, on which it is possible to reproduce the minimum required set of treatment operations and water conditioning is performed. The structure of the system integrating the concept of safety and the concept of extraction of high value products from mine water is offered. Results of X-ray phase analysis of sediments obtained after cavitation treatment of mine water are presented.},
     year = {2022}
    }
    

    Copy | Download

  • TY  - JOUR
    T1  - Risk Management of Implementation of Reagentless Treatment of Acid Mine Water
    AU  - Zobnin Boris Borisovich
    AU  - Kochetkov Vitaly Victorovich
    AU  - Shokurov Denis Sergeyevich
    AU  - Korolev Oleg Anatolevich
    Y1  - 2022/02/16
    PY  - 2022
    N1  - https://doi.org/10.11648/j.ijmsa.20221101.14
    DO  - 10.11648/j.ijmsa.20221101.14
    T2  - International Journal of Materials Science and Applications
    JF  - International Journal of Materials Science and Applications
    JO  - International Journal of Materials Science and Applications
    SP  - 21
    EP  - 28
    PB  - Science Publishing Group
    SN  - 2327-2643
    UR  - https://doi.org/10.11648/j.ijmsa.20221101.14
    AB  - The task of managing the risk of introducing reagentless treatment of acid mine water is considered. The task is solved, first of all, for natural technological complexes formed by coal and copper-zinc-pyrite mines transferred to "wet" preservation due to unprofitability. To solve the problem, a mobile technological complex operating in a flow-through mode is used. The solution of the problem is based on a system decomposition of the object, tasks and research criteria. The object of the analysis are large volumes of heterogeneous flows of mine water arriving for treatment. The set task is a multi-criteria one. Multi-agent modeling integrating several applications interacting by means of input and output data flows is used for the system design. Decomposition of the set task on the basis of a joint study of mine water properties and treatment technology on a laboratory bench, on which it is possible to reproduce the minimum required set of treatment operations and water conditioning is performed. The structure of the system integrating the concept of safety and the concept of extraction of high value products from mine water is offered. Results of X-ray phase analysis of sediments obtained after cavitation treatment of mine water are presented.
    VL  - 11
    IS  - 1
    ER  - 

    Copy | Download

Author Information
  • Depatment of Computer Science, Ural State Mining University, Ekaterinburg, Russia

  • Depatment of Computer Science, Ural State Mining University, Ekaterinburg, Russia

  • Depatment of Computer Science, Ural State Mining University, Ekaterinburg, Russia

  • Depatment of Computer Science, Ural State Mining University, Ekaterinburg, Russia

  • Sections