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Assessment of the impact of working risks in the exploitation of raw materials

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The presented article deals with the use and evaluation of individual risks of work in the environment of Slovak mining company. The mining company is also a manufacturing company. The company mines the raw material and the final product (clinker). The main goal of the article is to monitor the incidence of accidents over the last 10 years, to analyse the group of risks that have a significant impact on accidents in mining companies and to evaluate them. The Risk Matrix, shows the relationship between estimated consequences and probability of risks formation. The next step is to use the workplace Risk Assessment Method to define acceptable risks and minimize the impact on workers. Another method we used is the Fault Tree Analysis (FTA) model. The output of the FTA model is the creation of a faulty tree, which resulted in the individual traumatized accidents that resulted in the definition of the resulting risk - namely a load injury.
Wydawca
Rocznik
Tom
Strony
86--94
Opis fizyczny
Bibliogr. 36 poz., rys., tab.
Twórcy
  • Technical University of Košice Faculty of Mining, Ecology, Process Control and Geotechnologies Institute of Earth Resources Letná 9, 040 00 Košice, Slovakia
  • Technical University of Košice Faculty of Mining, Ecology, Process Control and Geotechnologies Institute of Earth Resources Letná 9, 040 00 Košice, Slovakia
  • Technical University of Košice Faculty of Mining, Ecology, Process Control and Geotechnologies Institute of Earth Resources Letná 9, 040 00 Košice, Slovakia
Bibliografia
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  • [6] A. Dzhambov, D. Dimitrova. "Occupational noise exposure and the risk for work-related injury: A systematic review and meta-analysis". Ann. Work Expo. Health, 2017, 61, pp. 1037-1053.
  • [7] M. Cehlar, K. Teplicka, A. Senova. ”Risk management as instrument for financing projects in mining industry.” 11th International Multidisciplinary Scientific GeoConference, Bulgaria, vol.1, pp. 913-920, 2011.
  • [8] A. Senova, K. Teplicka, H. Pavolova. ”The Process Of Risk Assesment Method RBMI in The Mining Enterprise.” SGEM 2015 – Sofia: STEF92 Technology, pp. 705-712, 2015 .
  • [9] S. Filip. ”Manazment rizika.” Bratislava, Sprint Dva, p. 202, 2011.
  • [10] N. Akatov, Z. Mingaleva, I. Klackova, G. Galieva N. Shaidurova. ”Expert Technology for Risk Management in the Implementation of QRM in a High-Tech Industrial Enterprise.” Management Systems in Production Engineering, vol. 27, no. 4, pp. 250-254, 2019, https://www.sciendo.com/article/10.1515/mspe-2019-0039
  • [11] M. Niciejewska, A. Idzikowski K. Lestyanszka Skurkova. ”Impact of Technical, Organizational and human factors on accident rate of small-sized enterprises.” Management Systems in Production Engineering, vol. 29, no. 2, pp. 139- 144, 2021.
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  • [13] H. Pacaiova. ”Manazerstvo rizik 2.” Kosice: Technicka univerzita v Kosiciach, p. 131, 2016.
  • [14] A. M. Donoghue ”Occupational health hazards in mining: an overview.” Occupational Medicine, vol. 54, no. 5, pp. 283-289, 2004, https://academic.oup.com/occmed/article/54/5/283/1399618
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  • [16] H. Pacaiova M. Andrejiova, M. Balazikova, M. Tomaskova, T. Gazda, K. Chomova, J. Hijj, L. Salaj. ”Methodology for Complex Efficiency Evaluation of Machinery Safety Measures in a Production Organization.” Appl. Sci., vol. 11, p. 453, 2021, https://www.mdpi.com/2076- 3417/11/1/453
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  • [19] W.S. Lee, D.L. Grosh, F.A. Tillman, C.H. Lie. ”Fault Tree Analysis, Methods, and Applications and a Review.” IEEE Transactions on Reliability, 34 (3), pp. 194-203, 1985, doi: 10.1109/TR.1985.5222114
  • [20] D. Yuhua, Y. Datao. ”Estimation of failure probability of oil and gas transmission pipelines by fuzzy fault tree analysis.” Journal of Loss Prevention, 2005.
  • [21] S. Markulik, M. Solc, J. Petrik, M. Balazikova, P. Blasko, J. Kliment, M. Bezak. ”Application of FTA analysis for Calculation of the Probability of the Failure of the Pressure Leaching Process.” Appl. Sci. 11, 6731, 2021, https://doi.org/10.3390/app11156731
  • [22] M. Shafiee, E. Enjema, A. Kolios. ”An integrated FTA-FMEA model for risk analysis of engineering systems: A case study of subsea blowout preventers.” Appl. Sci., 9 (6), 1192, 2019, https://doi.org/10.3390/app9061192
  • [23] J. Sadeghi, M.H. Esmaeili, M. Akbari. ”Reliability of FTA general vibration assessment model in prediction of subway induced ground borne vibrations.” Soil dynamics and earthquake engineering, vol. 117, pp. 300-311, 2019. https://www.sciencedirect.com/science/article/pii/S0267726118305633?via%3Dihub
  • [24] A. Dyczko, M. Malec, M. Ahmad. SOK Research Project – Bw-1n gallery drilling test using Bolter Miner and exclusive bolting in Polish conditions. Min. Mach. 2022, vol. 40 issue 1, pp. 45-53. DOI: 10.32056/KOMAG2022.1.5
  • [25] J. Harangozo, M. Mencik. ”Bezpecnost a ochrana zdravia pri praci z pohladu banskej cinnosti.” Integral safety of environs, Proceedings of the International Scientific Conference, Zilina, 2016.
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  • [28] D. Beck, U. Lenhardt. ”Consideration of psychosocial factors in workplace risk assessments: findings from a company survey in Germany.” Int Arch Occup Environ Health, vol. 92, pp. 435-451, 2019, https://doi.org/10.1007/ s00420-019-01416-5.
  • [29] S. Hurna, K. Teplicka, M. Straka. ”Use of statistical quantitative methods for monitoring quality parameters of raw materials.” Przemysl chemiczny, vol. 97, no. 1, pp. 59-63, 2018.
  • [30] World Health Organization. ”Quality assurance of pharmaceuticals: a compendium of guidelines and related materials.” Good manufacturing practices and inspection, 2nd ed. World Health Organization, vol. 2, 2007, [Online]. Available on: https://apps.who.int/iris/handle/10665/43532
  • [31] Guideline No. 30/2010 of the SR Ministry of Health of 07. 09. 2010 that adjusts the procedure used at assessing the exposure to noise level in employees using hearing protectors, [Online]. Available on: https://www.epi.sk/vestnik-mzsr/2010-30.
  • [32] Hlavny bansky urad, ”Sprava o stave bezpecnosti a ochrany zdravia pri praci, vyvoji racovnej urazovosti, chorob z povolania a inych poskodeni zdravia z prace v SR za oblast hlavneho dozoru statnej banskej spravy SR za rok 2016.” 2016, [Online]. Available on: ttps://www.hbu.sk/files/documents/spravy/bozp/2016/sprava-o-stave-bozp-za-rok-2016.pdf
  • [33] SR Government regulation No. 115/2006 Coll. on minimal health and safety requirements for protecting employees against the exposure to health related risks and hazards.
  • [34] E. Bakhtavar and S. Yousefi. ”Assessment of workplace accident risks in underground collieries by integrating a multi goal cause and effect analysis method with MCDM sensitivity analysis.” Springer-Verlag GmbH Germany, 2018.
  • [35] J. Tabor. ”Ranking of management factors for safe maintenance system based on Grey Systems Theory.” Production Engineering Archives, 27 (3), pp. 196-202, 2021, doi: 10.30657/pea.2021.27.26.
  • [36] E. Sujova, H. Cierna, J. Stefkova. "Ethical Credibility Risks Monitoring in Manufacturing Companies in Slovakia and V4 Countries "Management Systems in Production Engineering", 29 (4), 2021, pp. 302-308. https://doi.org/ 10.2478/mspe-2021-0038.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu „Społeczna odpowiedzialność nauki” - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4c5a4759-8233-458a-a008-36ff3945e3ba
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