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Risk-Oriented Approach to Assessment of Hexamethylenediamine Pollution of Aquatic Ecosystems

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EN
Abstrakty
EN
HMD is widely used by industry in the manufacture of polyamide materials, as well as a substance in the production of epoxy resins and other substances. At the same time, HMD is a physiologically active, toxic and dangerous substance (hazard class II), which can cause burns, eczema-like dermatitis, diseases of the nervous system and gastrointestinal tract in humans. Wastewater contaminated with HMD, which is discharged into natural reservoirs, causes the death of aquatic organisms and aquatic vegetation, degrades the quality of water, which becomes unusable. HMDA is listed as a hazardous substance by the European Chemicals Agency and the American Conference of Government Hygienists of Industry.
Twórcy
  • National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", 37 Peremohy Ave., Kyiv, 03056, Ukraine
  • Taurida National V.I. Vernadsky University, 33 Ivana Kudri, Kyiv, 04000, Ukraine
autor
  • National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", 37 Peremohy Ave., Kyiv, 03056, Ukraine
Bibliografia
  • 1. Cronover R. 2000. Fractals and chaos in dynamical systems. Fundamentals of theory. -M.: Postmarket. (in Russion)
  • 2. Dudnyk S., Yevtushenko M. 2013. Aquatic toxicology: basic theoretical positions and their practical application. Monograph Kyiv. (in Ukrainian)
  • 3. Dychko A., Yeremeev I. 2014. Organization of environmental monitoring using fractal theory methods. Management of complex systems development. (in Ukrainian)
  • 4. Dychko A., Yeremeyev I., Remez N., Kraychuk S., Ostapchuk N. 2020. Structural redundancy as robustness assurance of complex geoengineering systems. In E3S Web of Conferences. EDP Sciences, 166, 11003.
  • 5. Gemstat, Water Quality Dashboard. 2020. https://gemstat.org/data/water-quality-indicators/
  • 6. Gvozdyak P. 2012. Biochemistry of water as a scientific basis for biotechnology of water: collection. scientific tr. Protection of water and air basins. Waste disposal. - VODGEO. - Kharkiv, IPP “Contrast”. (in Ukrainian)
  • 7. Lazarev N. 1976. Harmful substances in industry. Handbook for chemists, engineers and doctors - Lviv: Chemistry. (in Ukrainian)
  • 8. Lytvynenko V., Dychko A. 2021. Efficiency of application of the microbiological method of waste water treatment to remove hexamethylendiamine. EP, 6(1), 28–32.
  • 9. Pankevich O., Shtovba S. 2005. Diagnosis of cracks of building structures with the help of fuzzy knowledge bases – Vinnytsia: UNIVERSUM-Vinnytsia, 108. (in Ukrainian)
  • 10. Pankratova N., Manyak Y. 2018. Fuzzy-multiple approach in problems of cognitive modeling of complex systems System Analysis and Information Technologies. 20th International Conference SAIT Proceedings, Kyiv 2018, 83–84. (in Ukrainian)
  • 11. Rothstein A. 1999. Intelligent identification technologies: fuzzy logic, genetic algorithms, neural networks. - Vinnytsia: UNIVERSUM-Vinnytsia, 320. (in Ukrainian)
  • 12. Rabinovich V. 1977. Short chemical reference book. Lviv, "Chemistry", P. 210. (in Ukraine)
  • 13. Tsyganok V., Roik P. 2018. Determining the consistency of expert assessments in support of group decision making. System Analysis and Information Technologies. 20th International Conference SAIT 2018 Proceedings, 96–97. (in Ukrainian)
  • 14. Urban Waste Water Treatment map https://www.eea.europa.eu/themes/water/european-waters/water-use-and-environmental-pressures/uwwtd/interactive-maps/urban-waste-water-treatment-maps-3
  • 15. Water Framework Directive, 2021. Percentage of water bodies, not in good ecological status or potential, per river basic district, 28 Jul 2021. https://www.eea.europa.eu/data-and-maps/figures/proportion-of-classified-surface-water-7
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-02e02449-7f49-4718-b1af-69552bf38c98
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