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Chemical risk assessment in a selected Romanian stainless steel processing company

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Języki publikacji
EN
Abstrakty
EN
The production and use of chemicals are continuously increasing worldwide. For example, the global output of chemicals increased approximately 12 times between 1970 and 2020. The burden of disease attributable to exposure to chemicals is significant. World Health Organization estimates that globally, about 5 million deaths and 90 million disability - adjusted life years are attributable to occupational, environmental exposure and management. Public authorities and employers need access to reliable information on chemicals and practical, widely-accepted risk assessment methods in order to effectively control and minimize this threat. To support the management of chemical substances in small and mediumsized enterprises, the UK Health and Safety Executive developed the Control of Substances Hazardous to Health Essentials (COSHH Essentials), a control banding technique that determines the management method by assigning the qualitative work environment characteristics of the enterprises to a hazard and exposure prediction band. Qualitative tools were used for assessing the risk of these chemicals, creating solutions, and implementing control measures in various industrial fields. The present paper synthesizes the results of an extensive research study, dedicated to the evaluation of chemical risks within a Romanian company which has as object of activity the mechanical processing of steel laminates and their treatment by methods of electrochemical deposition of hard chromium / electrochemical nickel plating. The application of the simplified health, safety and environmental risk assessment methodology developed by the French National Security Research Institute (INRS) was considered to be the most appropriate in the preliminary phase of identifying and prioritizing the risks associated with chemicals used in technological processes in selected company. Based on the obtained results, the prevention and protection plan regarding the chemical risks was elaborated, the implementation of which led to the reduction of the workers' exposure and to the minimization of the probability and severity of the potential consequences.
Wydawca
Rocznik
Strony
257--268
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
  • University of Petroşani, Romania
  • University of Petroşani, Romania
Bibliografia
  • 1. Aven, T, Vinnem, J.E., Røed, W., 2006. On the use of goals, quantitative criteria and requirements in safety management, Risk Management Int. Journal, No 8, 118-32.
  • 2. Băbuţ, G.B., Moraru, R.I., Băbuţ, M.C., 2011. Developing a more effective risk management process in the restructured Romanian mining, Proceedings of the 11th International Multidisciplinary Scientific GeoConference - SGEM 2011, Volume I, 767-774, Albena, Bulgaria, 20-25.06.2011.
  • 3. Berrubé, A., Mosqueron, L., Cavereau, D., Gangneux, J-P., Thomas, O., 2013. Méthodologie d’évaluation semi-quantitative du risque chimique en établissement de soins. Environnement, Risques & Santé;12(6):508-520. doi:10.1684/ers.2013.0659.
  • 4. Carter, DA, Hirst, I.L., Maddison, T.E., Porter, S.R., 2003, Appropriate risk assessment methods for major accident establishments”, Trans IChemE, No 81B, 12–18.
  • 5. Cioca, L.I., Moraru, R., Băbuţ, G., 2010. Occupational Risk Assessment: A Framework for Understanding and Practical Guiding the Process in Romania, Proceedings of the International Conference on Risk Management, Assessment and Mitigation (RIMA ’10), pp. 56-61, Bucharest, Romania, 20-22.04.2010, WSEAS Press, 2010; ISSN: 1790-2769, ISBN: 978-960-474-182-3.
  • 6. INRS, 1998, Produits dangereux. Guide d’évaluation des risques, ED 1476, Paris, 1998, 6 p.
  • 7. ISO, 2018, ISO 31000: 2018. Risk management - Principles and guidelines, International Organization for Standardization.
  • 8. Moraru, R., Băbuţ, G., Principles and guidelines regarding the risk management implementation: The new ISO 31000:2009 standard, Quality - Access to Success, Volume 11, Issue 4, 50-59.
  • 9. Romanian Parliament, 2006. The 319/2006 Act on Occupational Health and Safety”, Oficial Journal of Romania, Part I, No 646/26.07.2006.
  • 10. Romanian Government, 2006, H.G. no. 1425/2006 for the approval of the Methodological Norms for the application of the provisions of the Law on safety and health at work no. 319/2006, Official Gazette of Romania, Part I, no. 882 / 30.10.2006.
  • 11. Romanian Government, 2010. H.G. no. 955/2010 for the modification and completion of the Methodological Norms for the application of the provisions of the Law on safety and health at work no. 319/2006, approved by H.G. no. 1425/2006, Official Gazette of Romania, Part I, no. 661 / 27.09.2010.
  • 12. Sillière, J., 2014. Évaluation du risque chimique en milieu de soins : application aux activités de désinfection et stérilisation et aux blocs opératoires dans deux cliniques. Sciences pharmaceutiques. ffdumas-00933415.
  • 13. Triolet, J., 2009. Prévention technique des risques chimiques, EMC (Elsevier Masson SAS), Pathologie professionnelle et de l’environnement, 16-685-C-10, Paris, 8 p.
  • 14. Vincent R., Bonthoux F., Mallet G., Iparraguirre J.-F., Rio S., 2005. Méthodologie d’évaluation simplifiée du risque chimique : un outil d’aide à la décision. INRS, Hygiène et sécurité du travail- Cahiers de notes documentaires, ND 2233, N° 200, Paris
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-39edf3c1-519e-49f3-b4e4-d1a406ba8766
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