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Екологія та технології захисту навколишнього середовища

July 4, 2025; Zurich, Switzerland: VIII Міжнародна науково-практична конференція «GRUNDLAGEN DER MODERNEN WISSENSCHAFTLICHEN FORSCHUNG»


ECOLOGICAL MONITORING: THE ROLE OF NEW TECHNOLOGIES IN THE CONSERVATION OF NATURAL RESOURCES


DOI
https://doi.org/10.36074/logos-04.07.2025.017
Опубліковано
04.07.2025

Анотація

Ecological monitoring is a critical tool for the conservation of natural resources and sustainable environmental management. In recent years, factors such as environmental changes, climate change, population growth, and industrialization have made the conservation of ecosystems increasingly difficult. Issues such as radiation, air quality, water, and soil pollution require the application of modern technologies to monitor environmental conditions and identify risks in this field. The importance of ecological monitoring becomes evident here.

Посилання

  1. Akhundov R.G., Hashimov E.G. (2025) Radiation and chemical protection as a strategic priority of environmental security in the military sphere // Здобутки та досягнення прикладних та фундаментальних наук XXI століття: збірник наукових праць з матеріалами IX Міжнародної наукової конференції. p.202-211. DOI: https://doi.org/10.62731/mcnd-16.05.2025.005
  2. Akhundov R.G., Hashimov E.G. (2025) The impact of new technologies on enhancing the efficiency of armed. İn Проблеми та перспективи реалізації та впровадження міждисциплінарних наукових досягнень: збірник наукових праць з матеріалами IX Міжнародної наукової конференції. Луцьк, p.p.186-195. DOI: https://doi.org/10.62731/mcnd-13.06.2025.004
  3. Akhundov, E.F., et al. (2023) Increasing efficiency of operation of shut-off valves in pipelines // The 19th International Conference on “Technical and Physical Problems of Engineering” (ICTPE-2023), p.138-142.
  4. Akhundov, R. (2017). Radiation-thermal activation of coal for water purification. In Ecological and environmental chemistry (pp. 141-141).
  5. Akhundov, R. (2023). Application of means of remote radiation reconnaissance. In Modern trends ın the development of ınformatıon and communıcatıon technologıes and management tools. Abstracts of the Thirteenth International Scientific and Technical Conference. – Kharkiv, Ukraine (Vol. 2, pp. 8-9).
  6. Akhundov, R. (2024). Environmental Warfare–Modern Global Challenge. In Modeling, Control and Information Technologies: Proceedings of International scientific and practical conference (No. 7, pp. 332-335).
  7. Akhundov, R. (2024). The Environmental Consequences of Military Activity. In 20 години България в НАТО и НАТО в България (pp. 410-422). Военна академия „Г. C Раковски".
  8. Akhundov, R. G. (2023). Methods of conducting chemical exploration. Abstracts of reports of the eleventh international scientific and technical conference ”Problems of ınformatızatıon”. – Kharkiv, Ukraine (Vol 2, pp.104-105).
  9. Akhundov, R. G., & Ibadov, P. (2023). Problematic issues and prospects for the development of airborne radiation, chemical and biological reconnaissance systems. Baku: National security and military sciences, -2023.-1 (9). – p, 38-46.
  10. Akhundov, R. G., & Mustafayev, I. I. (2020). Radiation-initiated processes of activation of charcoal. Journal of Radiation Researches, 7(1), 27-34.
  11. Akhundov, R., & Hashimov, E. (2025). Military activity and the environment: The need for a systemic approach to radiological and chemical safety. In Zdobutky ta dosyagnennya prykladnykh ta fundamentalʹnykh nauk XXI stolittya: Zbirnyk naukovykh prats z materialamy IX Mizhnarodnoyi naukovoyi konferentsiyi (pp. 187-196). UKRLOGOS Group. https://doi.org/10.62731/mcnd-16.05.2025.004
  12. Akhundov, R., & Islamov, I. (2025). Implementation of new technologies for cleaning and neutralizing radiological and chemical contaminants in military environments. Матеріали конференцій МЦНД, (30.05. 2025; Київ, Україна), 321-329. https://doi.org/10.62731/mcnd-30.05.2025.006
  13. Axundov, R. Q. (2022). Radiasiya və kimyəvi təhdidlərdən mühafizənin vəziyyəti və inkişaf perspektivləri. Bakı: Milli təhlükəsizlik və hərbi elmlər, (3), 8.
  14. Axundov, R. Q. (2023). Azərbaycan Ordusunda radiasiya, kimyəvə bioloji mühafizənin inkişaf problemləri və onlarin həlli yollari. Hərb sənətinin aktual problemləri” beynəlxalq elmi-praktik konfransın materialları,–Bakı: MMU, 137-138.
  15. Axundov, R. Q. (2023). Azərbaycan Ordusunda radiasiya, kimyəvi və bioloji kəşfiyatının əsasları. Bakı: Hərbi bilik, (4), 16-20.
  16. Axundov, R. Q. (2023). Dərinin fərdi qoruyucu vasitələrinin tətbiqi və inkişaf perspektivləri. Bakı: Milli təhlükəsizlik və hərbi elmlər, (4), 9.
  17. Axundov, R. Q. (2023). Radiasiya, kimyəvi və bioloji mühafizə sisteminin texniki təminatının analizi. Ümummilli lider Heydər Əliyevin anadan olmasının, 100, 470-472.
  18. Axundov, R. Q. (2023). Radiasiya, kimyəvi və bioloji mühafizə sisteminin təkmilləşdirilmə istiqamətləri. Müdafiə sənayesi üzrə ixtisaslı kadr hazırlığı: radioelektron, aerokosmik sistemlər və robotlar” mövzusunda II Respublika elmi-texniki konfransın materialları,–Bakı: AzTU, 89-92.
  19. Bayramov, A. A. et al. (2018, April). The supervisory control systems deployment in mountainous terrain. In VIII Int. Conf.“Modern development trends of ICT and control methods”. (pp. 3-4).
  20. Bayramov, A. A., et al. (2018). SMART control system of systems for dynamic objects group. Bulgarska Voenna Misal.
  21. Dergachov, K., et al. (2025) Adaptive algorithm for visual positioning of UAVs in the local environment // Proceedings of the International Workshop on Computational Methods in Systems Engineering (CMSE 2025) Kyiv, Ukraine. https://ceur-ws.org/Vol-3981/
  22. Garayev M.F., et al. (2024) Analysis of the possibilities of the photogrammetry method in object detection. İn Problems of informatization. Proceedings of 12-th Inter. Scientific and Tech. Conf. Vol.2. -p.6.
  23. Garayev, M.F. et al. (2024) Application of composite materials for military purposes // Problems of informatization. Proceedings of 12-th International Scientific and Technical Conference. Vol. 3. -p.25.
  24. Garayev, M.F., Hashimov, E.G. (2024) About one electrical compound as a source of energy // Problems of informatization. Proceedings of 12-th International Scientific and Technical Conference. Vol. 3, p.117.
  25. Hasanov, A. H. et al. (2023). Comparative analysis of the efficiency of various energy storages. Advanced Information Systems, 7(3), 74-80.
  26. Hashimov, E. G., & Bayramov, A. A. (2017). Application of GIS and seismic location method for detection of invisible military objects. Monograph //- Baku: Military Publishing House, 2017, 246 p.
  27. Hashimov, E. G., Bayramov, A. A., & Khalilov, B. M. (2015). Operative detection of ground enemy objects. Baku: Herbi Bilik, (1), 33-47.
  28. Hashimov, E. G., Bayramov, A.A., & Sabziev, E. N. (2017, May). Determination of the bearing angle of unobserved ground targets by use of seismic location cells. In 2017 International Conference on Military Technologies (ICMT) (pp. 185-188).
  29. Hashimov, E., Sabziev, E., & Huseynov, B. (2023). Targeting a rocket at a moving object using unmanned aerial vehicles (UAVs). Journal of defense resources management, 14(2). pp.117-124
  30. Hashimov, E.G., Bayramov, A.A. (2015). Detection unobserved moving armored vehicles by seismic method. National Security and Military Sciences, 1(1), 128-132.
  31. Hashimov, E.G., Bayramov, A.A., & Sabziev, E.N. (2019). Detection of Unobserved Ground Targets by Use of Seismic Location Stations. Advances in Military Technology, 14(1),
  32. -139.
  33. Huseynov, B. S., & Hashimov, E. G. (2023). Characteristics of UAVs application during the Second Karabakh War. In Problems of Informatization. Proceedings of 11-th International Scientific and Technical Conference (Vol. 3, pp. 10-11).
  34. Muradov, S. A., & Hashimov, E. G. (2023). Development prospects of beacon systems. In Problems of Informatization. Proceedings of 11-th International Scientific and Technical Conference (Vol. 1, pp. 31).
  35. Pankratov, D. L., Shaparev, A. V., Pankratov, D. D., Garayev, M., & Azizli, Z. (2024). The Use Hot Stamping to Restore the Efficiency Tie Rod Ball Pins Trucks. Advances in Science and Technology, 148, 73-79.
  36. Piriyev, H.K., Hashimov, E.G. (2023) The Second Karabakh War: military-political and military-technical aspects. Scientific Works. 1(21), 7-16.
  37. Talibov, A.M., Hashimov, E.G., Akhundov, R.G. (2024) Environmental safety of nanomaterials application // Problems of informatization. Proceedings of 12-th International Scientific and Technical Conference. Vol. 3, p.55-56.
  38. Караев, М.Ф. (1996) Обеспечение требуемой точности размеров изготавливаемых деталей валов с помощью автоматической самоорганизующейся технологической системы. Автореферат диссертации.
  39. Ибрагимов, Б. Г. О., & Гасанов, А. Г. О. (2017). Исследование и оценка эффективности мультисервисных сетей NGN/IMS при передаче мультимедийных трафиков. T-Comm-Телекоммуникации и Транспорт, 11(2), 15-18.
  40. Ибрагимов, Б. Г. О., Гасанов, А. Г. О., Алиева, А. А. К., & Исаев, А. М. О. (2019). Исследование показателей качества функционирования мультисервисных телекоммуникационных сетей на базе архитектурной концепции будущих сетей. Надежность и качество сложных систем, (1 (25)), 88-95.
  41. Babanlı, A. M., & Ibragimov, B. G. (2017). Specific heat in diluted magnetic semiconductor quantum ring. Superlattices and Microstructures, 111, 574-578.
  42. Ibrahimov, B. (2023). Investigation of Noise Immunity telecommunication systems according to the criterion energy efficiency. Transport and Telecommunication, 24(4), 375-384.
  43. Ibrаhimov, B. G., & Hashimov, E. G. (2023). Research quality of functioning of the efficiency optical telecommunication systems using spectral technologies.
  44. Hasanov, A. H., & Talibov, A. M. (2024). Scientific and technological progress or environmental safety. In Problems of informatization: Abstracts of the 12th International Scientific and Technical Conference, November 21-22, 2024, Baku, Kharkiv, Bielsko-Biała (Vol. 3, pp. 22-23). National University of Defense of the Republic of Azerbaijan [et al.]. Impress.