Prospects of the development and harmonization of hygienic standardization taking into account the risk of odour in the ambient air

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Introduction. The presence of a specific odour in the ambient air in the areas where various enterprises are located with formal compliance with environmental legislation indicates the need to update the methodology of hygienic standardization of odourous substances.

The purpose of the work is to analyze modern methods of the establishment of standards for odourous complex multicomponent mixtures of substances in the atmospheric air and substantiate ways to harmonize them in this field of knowledge.

Materials and methods. The paper systematizes existing approaches to regulating the quality of atmospheric air in areas where odourous emissions sources are located, taking into account certain provisions of regulatory and methodological documents, publications on approaches, and criteria for quantitative sanitary and hygienic assessment of the quality of the environment and public health, as well as the authors’ long-term experience in this field.

Results. The basic principles of hygienic standardization of the permissible content of odorous mixtures of substances in the atmospheric air taking into account their odour are formulated. The substantiation of hygienic standards is carried out with the allocation of substances identified as priority (indicator), based on the results of studying the production technology and the formation of emissions, olfactory properties of the mixture under experimental conditions, with the possibility of monitoring the established standard in atmospheric air by certified instrumental methods of analysis.

Limitations. The limitations of the study are due to the fact that this article does not fully reflect the issues of the development of the entire atmospheric air quality management system taking into account the risk of odour outside the focus of this work, which will be covered in the preparation of the following articles.

Conclusion. The ongoing process of harmonization of domestic and foreign approaches used in hygienic standardization including the field of regulation of atmospheric air pollution by specific odours makes it necessary to significantly expand approaches to the issues of rationing and assessment of environmental pollution by complex multicomponent emissions of odour-source enterprises taking into account modern experience.

Compliance with ethical standards. The study does not require the submission of the conclusion of the biomedical ethics committee or other documents.

Contribution:
Kuzmin S.V. — research concept and design, article editing;
Budarina O.V. — research concept and design, material collection and processing, text writing;
Rakhmanin Yu.A. — text writing, article editing;
Pinigin M.A. — research concept and design, article editing;
Dodina N.S. — collection and processing of the material, editing of the article;
Skovronskaya S.A. — collection and processing of the material.
All authors are responsible for the integrity of all parts of the manuscript and approval of the manuscript final version.

Conflict of interest. The authors declare no conflict of interest.

Acknowledgement.  The study was carried out within the framework of the state task No. 121090800064-5.

Received: December 11, 2023 / Accepted: December 28, 2023 / Published: March 15, 2024

作者简介

Sergey Kuzmin

Federal Scientific Center of Hygiene named after F.F. Erisman» of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing

编辑信件的主要联系方式.
Email: noemail@neicon.ru
ORCID iD: 0000-0002-0209-9732

MD, PhD, DSci., Professor, Director of the Federal Scientific Center of Hygiene named after F.F. Erisman of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing, Mytishchi, 141014, Russian Federation

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Olga Budarina

Federal Scientific Center of Hygiene named after F.F. Erisman» of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing

Email: budarina.ov@fncg.ru
ORCID iD: 0000-0003-4319-7192

MD, PhD, DSci., chief researcher of the Dept. of analysis of public health risks Federal Scientific Center of Hygiene named after 
F.F. Erisman of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing, Mytishchi, 141014, Russian Federation

e-mail: budarina.ov@fncg.ru

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Yuri Rakhmanin

Federal Scientific Center of Hygiene named after F.F. Erisman» of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing; Centre for Strategic Planning of FMBA of Russia

Email: noemail@neicon.ru
ORCID iD: 0000-0003-2067-8014

MD, PhD, DSci., Professor, Academician of the RAS, Chief Researcher of the “TsSP” FMBA of Russia, 119121, Moscow, Russia; Ch. scientific co-workers dept.  water hygiene of the Federal Scientific Center of Hygiene named after F.F. Erisman of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing, Mytishchi, 141014, Russian Federation

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Migmar Pinigin

Federal Scientific Center of Hygiene named after F.F. Erisman» of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing; Centre for Strategic Planning of FMBA of Russia

Email: noemail@neicon.ru
ORCID iD: 0000-0001-5291-9009

MD, PhD, DSci., Professor, leading researcher of the Centre for Strategic Planning of FMBA of Russia, Moscow, 119121, Russian Federation​, chief researcher of the Dept. of analysis of public health risks of the Federal Scientific Center of Hygiene named after F.F. Erisman of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing, Mytishchi, 141014, Russian Federation

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Natalia Dodina

Federal Scientific Center of Hygiene named after F.F. Erisman» of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing

Email: dodina.ns@fncg.ru
ORCID iD: 0000-0001-6693-922X

MD, PhD, head of the Dep. of analysis of public health risks of the Federal Scientific Center of Hygiene named after 
F.F. Erisman of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing, Mytishchi, 141014, Russian Federation

e-mail: dodina.ns@fncg.ru

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Svetlana Skovronskaya

Federal Scientific Center of Hygiene named after F.F. Erisman» of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing

Email: sko_sveta@mail.ru
ORCID iD: 0000-0002-6374-9292

MD, PhD, senior researcher of the Dept. of analysis of public health risks of the Federal Scientific Center of Hygiene named after F.F. Erisman of the Federal Service for Supervision in Protection of the Rights of Consumer and Man Wellbeing, Mytishchi, 141014, Russian Federation

e-mail: sko_sveta@mail.ru

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参考

  1. Ministry of Health of the USSR. Temporary methodological guidelines for the justification of the MPC of pollutants in the atmospheric air of populated areas. Moscow; 1989. (in Russian)
  2. Pinigin M.A., Tepikina L.A., Budarina O.V. The problem of odour in the air and how to solve it in Russia. In: Environmental Odour Management. International Conference. Dusseldorf; 2004: 563–7.
  3. Recommendations on air quality in Europe. 2nd edition. Moscow: Ves’ mir; 2004. (in Russian)
  4. Gurinov B.P. Maximum permissible concentrations of hydrogen sulfide in the atmospheric air of populated areas. In: Ryazanov V.A., ed. Maximum permissible concentrations of atmospheric pollution: Issue I [Predel’no dopustimye kontsentratsii atmosfernykh zagryazneniy: Vypusk I]. Moscow: Medgiz; 1952: 55–62. (in Russian)
  5. Loginova R.A. Materials to substantiate the maximum permissible concentration of hydrogen sulfide in atmospheric air: Diss. Moscow; 1954. (in Russian)
  6. Budarina O.V., Fedotova L.A., Potapchenko T.D. The principles for setting standards for complex multicomponent odoriferous emissions. Meditsina truda i promyshlennaya ekologiya. 2017; 57(9): 29. https://elibrary.ru/zfqikp (in Russian)
  7. Budarina O.V., Pinigin M.A., Fedotova L.A., Sabirova Z.F., Shipulina Z.V. Justification of maximum (one-time) allowable concentration of volatile organic compounds, emerging during the high temperature treatment of wood in chipboard production, in the ambient air. Toksikologicheskiy vestnik. 2017; (6): 42–7. https://doi.org/10.36946/0869-7922-2017-6-42-47 https://elibrary.ru/zwqtij (in Russian)
  8. Budarina O.V., Fedotova L.A., Shipulina Z.V., Potapchenko T.D. Justification of maximum single allowable concentrations of 1-methyl-4-isopropenylcyclohex-1-ene (limonene), 3,7,7-trimethylbicyclo[4.1.0]hept-2-ene (3-carene) and 2,2-dimethyl-3-methylenebicyclo[2.2.1]heptane (camphene) in ambient air. Toksikologicheskiy vestnik. 2020; (1): 39–44. https://doi.org/10.36946/0869-7922-2020-1-39-44 https://elibrary.ru/vehhlb (in Russian)
  9. RWDI. Odour management in British Columbia: review and recommendations. Final report; 2005. Available at: https://www.for.gov.bc.ca/hfd/library/documents/bib95377.pdf
  10. Institute of Air Quality Management (IAQM). Guidance on the assessment of odour for planning. London; 2018. Available at: https://www.iaqm.co.uk/text/guidance/odour-guidance-2014.pdf
  11. Bokowa A., Diaz C., Koziel J.A., McGinley M., Barclay J., Schauberger G., et al. Summary and overview of the odor regulations worldwide. Atmosphere. 2021; 12(2): 206. Available at: https://doi.org/10.3390/atmos12020206
  12. Budarina O.V., Sabirova Z.F., Shipulina Z.V. International experience of regulation of odorous substances in the ambient air (literature review). Gigiena i Sanitaria (Hygiene and Sanitation, Russian journal). 2022; 101(12): 1476–81. https://doi.org/10.47470/0016-9900-2022-101-12-1476-1481 https://elibrary.ru/gcncwz (in Russian)
  13. Sydney Gateway Road Project. Technical Working Paper 17 – Odour Assessment; 2019. Available at: https://clck.ru/399SSu
  14. Department of Environmental Protection. Odour Methodology Guideline. Perth; 2002. Available at: https://www.docslides.com/pamella-moone/odour-methodology-guideline-department-of-environme
  15. Review of Odour Management in New Zealand. Air Quality Technical Report No. 24; 2002. Available at: https://environment.govt.nz/assets/Publications/Files/odour-tr-aug02.pdf
  16. IPPC H4. Horizontal Guidance for Odour. Part 1 – Regulation and Permitting. Available at: https://www.zut.edu.pl/fileadmin/pliki/odory/pdf/IPPC_H4_part_1.pdf
  17. IPPC H4. Horizontal Guidance for Odour. Part 2 – Assessment and Control. Draft. Available at: https://www.zut.edu.pl/fileadmin/pliki/odory/pdf/IPPC_H4_part_2.pdf
  18. Environment Agency. Assessment of community response to odorous emissions. R&D Technical report P4 – 095/TR; 2002. Available at: https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/file/290405/sp4-095-tr-e-e.pdf
  19. Environmental Agency. Odour Management at Intensive Livestock Installations. Integrated Pollution and Prevention Control; 2005. Available at: https://www.sepa.org.uk/media/60931/ippc_srg6_02_odour-management-at-intensive-livestock-installations-may-2005.pdf
  20. EN 13725:2003. Air quality – Determination of odour concentration by dinamic olfactometry. European Committee for Standardisation (Comité Européen de Normalisation).; 2003.
  21. GOST R 58578–2019. Rules for setting standards and controlling odour emissions into the atmosphere. Moscow: Standartinform; 2019. (in Russian)
  22. VDI. Effects and assessment of odours. Assessment of odour annoyance. Questionnaires. VDI 3883 Blatt 1; 2015. Available at: https://www.vdi.de/en/home/vdi-standards/details/vdi-3883-blatt-1-effects-and-assessment-of-odours-assessment-of-odour-annoyance-questionnaires
  23. Brancher M., David Griffiths K., Franco D., De Melo Lisboa H. A review of odour impact criteria in selected countries around the world. Chemosphere. 2016; 168(11): 1532–70. https://doi.org/10.1016/j.chemosphere.2016.11.160
  24. Budarina O.V. Scientific substantiation of modern hygienic bases of rationing, control and evaluation of odour in the atmospheric air of populated areas: Diss. Moscow; 2020. https://elibrary.ru/gfxxuy (in Russian)
  25. MUK 4.1.2973–12. Chromato-mass spectrometric determination of volatile organic substances of coffee in atmospheric air. Мoscow; 2012. (in Russian)
  26. MUK 4.1.2974–12. Chromato-mass spectrometric determination of limited volatile organic substances of coffee in atmospheric air. Мoscow; 2012. (in Russian)
  27. MUK 4.1.3141–13. Chromato-mass spectrometric determination of volatile components of food flavorings in atmospheric air during their production. Мoscow; 2014. (in Russian)
  28. Svitskov S.V., Malykh O.S. The VKH industry requires odour rationing. Nailuchshie dostupnye tekhnologii vodosnabzheniya i vodootvedeniya. 2020; (2): 32–8. https://elibrary.ru/ggzblt (in Russian)
  29. Yatsenko-Khmelevskaya M.A., Tsibul’skiy V.V., Khitrina N.G., Korolenko L.I. Olfactometric investigations of odor emissions by industrial enterprises in Russia. Biosfera. 2013; 5(3): 303–10. https://elibrary.ru/rdcisl (in Russian)

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