ON ASSESSING THE MORBIDITY OF THE POPULATION ASSOCIATED WITH THE ATMOSPHERIC AIR QUALITY ON THE EXAMPLE OF A RUSSIAN CONSTITUENT ENTITY
Abstract
According to the World Health Organization (WHO), 24% of the global burden of diseases and 23% of all deaths associate with environmental factors. The presence of chemical impurities in the air can have an adverse effect on the health of the population. A connection has been established between the increased content of chemical impurities in the air and the development of such pathologies as diseases of the respiratory system, circulatory system, the formation of malformations, etc. Many countries implement projects to improve air quality. For the purpose of targeted development of management decisions aimed at minimizing the adverse impact of atmospheric air on the health of the population, the study of the morbidity of the population associated with the impact of priority atmospheric air hazard factors is relevant. The research goal is to characterize the morbidity of the population associated with air quality (on the example of Krasnoyarsk Krai) to identify the priority factors of atmospheric air that form the greatest contribution to the associated morbidity. The qualitative characteristics of the atmosphere and the level of morbidity of the population in Krasnoyarsk Krai are estimated on the basis of official data of federal and industry statistics. The analysis of the primary morbidity of the population, designated by the WHO as an indication of the effect of environmental factors, has been carried out. The authors calculate the number of third-party cases of diseases associated with the quality of the atmosphere and determine the priority risk factors. High proportions of air samples that do not meet the standards for the content of heavy metals, benz(a)pyrene, xylenes (59% of samples) have been registered over the territory of Krasnoyarsk Krai. Since 2012, there has been an increase of 0.2%–6.4% in the indicators of primary morbidity, indicated by the WHO as an indicator of the effect of environmental factors and a significant increase in congenital anomalies (the growth rate is 93.2%). Up to 231 thousand third-party cases of diseases of the general population with diseases affecting the respiratory organs, circulatory system, hematopoietic organs, nervous system, eyes and their appendages determine the presence of aromatic hydrocarbons, nitrogen dioxide, hydroxybenzene (as well as its derivatives), benz(a)pyrene, nitrogen oxide, ammonia, dihydrosulfide and carbon disulfide, sulfur dioxide in the air in concentrations exceeding the standards. The most substantial number of diseases associated with air quality forms in the class of respiratory diseases (2020 – 587.4 cases per 100 thousand population, 64.5% of the total air-associated morbidity).
Downloads
References
References
Vozdeystviye okruzhayushchey sredy na zdorov’ye. Situatsiya v mire, n. d. [Environmental impacts on health. The situation in the world, n. d.]. URL: https://www.who.int/quantifying_ehimpacts/publications/PHE-prevention-diseases-infographic-RU.pdf
Tikhonova I. V., Zemlyanova M. A., Koldybekova Yu. V., Peskova E. V., Ignatova A. M. Gigiyenicheskaya otsenka aerogennogo vozdeystviya vzveshennykh veshchestv na zabolevayemost’ detey boleznyami organov dykhaniya v zone vliyaniya vybrosov metallurgicheskogo proizvodstva [Hygienic assessment of aerogenic exposure to particulate matter and its impacts on morbidity with respiratory diseases among children living in a zone influenced by emissions from metallurgic production]. Analiz Riska Zdorovyu [Health Risk Analysis], 2020, vol. 3, pp. 60–68. https://doi.org/10.21668/health.risk/2020.3.07
Gosudarstvennyy doklad “O sostoyanii sanitarno-epidemiologicheskogo blagopoluchiya naseleniya v Rossiyskoy Federatsii v 2019 godu,” 2020 g [State report “On the state of sanitary and epidemiological welfare of the population in the Russian Federation in 2019,” 2020]. URL: https://www.rospotrebnadzor.ru/upload/iblock/8e4/gosdoklad-za-2019_seb_29_05.pdf
Zaytseva N. V., May I. V., Klein S. V., Kiryanov D. A. Metodicheskiye aspekty i rezul’taty otsenki demograficheskikh poter’, assotsiirovannykh s vrednym vozdeystviyem faktorov sredy obitaniya i predotvrashchayemykh deystviyami Rospotrebnadzora, v regionakh Rossiyskoy Federatsii [Methodological aspects and results of estimation of demographic loss associated with harmful influence of environment factors and preventive activities of Rospotrebnadzor in regions of the Russian Federation]. Zdorov’ye naseleniya i sreda obitaniya – ZNISO [Public Health and Life Environment-ZNISO], 2018, vol. 4, no. 248, pp. 10–13. https://doi.org/10.35627/2219-5238/2018-301-4-15-20
MR 5.1.0095-14 Raschet fakticheskikh i predotvrashchennykh v rezul’tate kontrol’no-nadzornoy deyatel’nosti ekonomicheskikh poter’ ot smertnosti, zabolevayemosti i invalidizatsii naseleniya, assotsiirovannykh s negativnym vozdeystviyem faktorov sredy obitaniya, 2014 g [MP 5.1.0095-14 Methodological recommendations Calculation of actual and prevented economic losses from mortality, morbidity, and disability of the population associated with the adverse impact of environmental factors, 2014]. URL: https://docs.cntd.ru/document/1200129398
Statisticheskiy sbornik 2015 god, 2016 g [Statistical collection 2015, 2016]. URL: https://minzdrav.gov.ru/ministry/61/22/stranitsa-979/statisticheskie-i-informatsionnye-materialy/statisticheskiy-sbornik-2015-god
May I. V., Vekovshinina S. A., Kleyn S. V., Balashov S. Yu., Andrishunas A. M., Goryaev D. V. Federal’nyy proyekt «chistyy vozdukh»: prakticheskiy opyt vybora khimicheskikh veshchestv dlya informatsionnoy sistemy analiza kachestva atmosfernogo vozdukha Noril’ska [“Pure air” federal project: Practical experience in selecting chemicals for an information system for the analysis of ambient air quality]. Gigiena i Sanitariya [Hygiene and Sanitation], 2020, vol. 99, vol 8, pp. 766–772. https://doi.org/10.47470/0016-9900-2020-99-8-766-772
Tsinker M. Yu., Kiriyanov D. A., Klein S. V. Statisticheskoye modelirovaniye dlya otsenki vliyaniya faktorov sredy obitaniya na indikatornyye pokazateli zdorov’ya naseleniya Rossiyskoy Federatsii [Application of statistical modelling for the assessment of environment influence on the population health in Russian Federation]. Gigiena i Sanitariya [Public Health and Life Environment], 2013, vol. 11, no. 248, pp. 10–13.
Baktybaeva Z. B., Suleymanov R. A., Kulagin A. A., Giniyatullin R. Kh., Valeev T. K. Ekologo-gigiyenicheskaya otsenka zagryazneniya atmosfernogo vozdukha i sostoyaniya zdorov’ya detskogo naseleniya na territoriyakh s razvitoy neftyanoy otrasl’yu [Environmental and hygienic assessment of ambient air pollution and pediatric population health in areas with developed oil industry]. Gigiena i Saitariya [Hygiene and Sanitation], 2019, vol. 98, no. 9, pp. 949–955.
Brook R. D., Franklin B., Cascio W., Hong Y., Howard G., Lipsett M., Luepker R., Mittleman M., Samet J., Smith Jr S. C., Tager I. Air pollution and cardiovascular disease. Circulation, 2004, vol. 109, no. 21, pp. 2655-2667. https://doi.org/10.1161/01.cir.0000128587.30041.c8
Directive 2008/50/EC of the European Parliament and of the Council of 21 May 2008 on ambient air quality and cleaner air for Europe, 2008. URL: https://eur-lex.europa.eu/eli/dir/2008/50/oj
Manisalidis I., Stavropoulou E., Stavropoulos A., Bezirtzoglou E. Environmental and health impacts of air pollution: A review. Frontiers in Public Health, 2020, vol. 8, no. 14. http://dx.doi.org/10.3389/fpubh.2020.00014
Preventing disease through healthy environments. Towards an estimate of the environmental burden of disease, 2006. URL: https://www.who.int/publications/i/item/9241593822
Schraufnagel D. E., Balmes J. R., Cowl C. T., Wuebbles D. J. Air pollution and non-communicable diseases: A review by the Forum of International Respiratory Societies’ environmental committee, part 1: The damaging effects of air pollution. Chest, 2019, vol. 155, pp. 409-416. http://dx.doi.org/10.1016/j.chest.2018.10.042
Tang-Tat C., Kuo-Ying W. An association between air pollution and daily most frequently visits of eighteen outpatient diseases in an industrial city. Scientific Reports, 2020, vol. 10, no. 1, e2321. https://doi.org/10.1038/s41598-020-58721-0
Thurston G. D., Kipen H., Annesi-Maesano I., Brunekreef B. A joint ERS/ATS policy statement: What constitutes an adverse health effect of air pollution? An analytical framework. European Respiratory Journal, 2017, vol. 49, no. 1, e1600419. http://dx.doi.org/10.1183/13993003.00419-2016
Список литературы
Воздействие окружающей среды на здоровье. Ситуация в мире, н. д. URL: https://www.who.int/quantifying_ehimpacts/publications/PHE-prevention-diseases-infographic-RU.pdf
Гигиеническая оценка аэрогенного воздействия взвешенных веществ на заболеваемость детей болезнями органов дыхания в зоне влияния выбросов металлургического производства / Тихонова И. В., Землянова М. А., Кольдибекова Ю. В., Пескова Е. В., Игнатова А. М. // Анализ риски здоровью. 2020. № 3. С. 60–68. https://doi.org/10.21668/health.risk/2020.3.07
Государственный доклад “О состоянии санитарно-эпидемиологического благополучия населения в Российской Федерации в 2019 году,” 2020 г. URL: https://www.rospotrebnadzor.ru/upload/iblock/8e4/gosdoklad-za-2019_seb_29_05.pdf
Зайцева Н. В., Май И. В., Клейн С. В., Кирьянов Д. А. Методические аспекты и результаты оценки демографических потерь, ассоциированных с вредным воздействием факторов среды обитания и предотвращаемых действиями Роспотребнадзора, в регионах Российской Федерации // Здоровье населения и среда обитания – ЗНИСО. 2018. Т. 4. № 248. С. 10–13. https://doi.org/10.35627/2219-5238/2018-301-4-15-20
МР 5.1.0095-14 Расчет фактических и предотвращенных в результате контрольно-надзорной деятельности экономических потерь от смертности, заболеваемости и инвалидизации населения, ассоциированных с негативным воздействием факторов среды обитания, 2014 г. URL: https://docs.cntd.ru/document/1200129398
Статистический сборник 2015 год, 2016 г. URL: https://minzdrav.gov.ru/ministry/61/22/stranitsa-979/statisticheskie-i-informatsionnye-materialy/statisticheskiy-sbornik-2015-god
Федеральный проект «чистый воздух»: практический опыт выбора химических веществ для информационной системы анализа качества атмосферного воздуха Норильска / Май И. В., Вековшинина С. А., Клейн С. В., Балашов С. Ю., Андришунас А. М., Горяев Д. В. // Гигиена и санитария. 2020. Т. 99. № 8. С. 766–772. https://doi.org/10.47470/0016-9900-2020-99-8-766-772
Цинкер М. Ю., Кирьянов Д. А., Клейн С. В. Статистическое моделирование для оценки влияния факторов среды обитания на индикаторные показатели здоровья населения Российской Федерации // Здоровье населения и среда обитания – ЗНИСО. 2013. Т. 11. № 248. С. 10–13.
Эколого-гигиеническая оценка загрязнения атмосферного воздуха и состояния здоровья детского населения на территориях с развитой нефтяной отраслью / Бактыбаева З. Б., Сулейманов Р. А., Кулагин А. А., Гиниятуллин Р. Х., Валеев Т. К. // Гигиена и санитария. 2019. Т. 98. № 9. С. 949–955.
Brook R. D., Franklin B., Cascio W., Hong Y., Howard G., Lipsett M., Luepker R., Mittleman M., Samet J., Smith Jr S. C., Tager I. Air pollution and cardiovascular disease // Circulation, 2004, vol. 109, no. 21, pp. 2655-2667. https://doi.org/10.1161/01.cir.0000128587.30041.c8
Directive 2008/50/EC of the European Parliament and of the Council of 21 May 2008 on ambient air quality and cleaner air for Europe, 2008. URL: https://eur-lex.europa.eu/eli/dir/2008/50/oj
Manisalidis I., Stavropoulou E., Stavropoulos A., Bezirtzoglou E. Environmental and health impacts of air pollution: A review // Frontiers in public health, 2020, vol. 8, no. 14. http://dx.doi.org/10.3389/fpubh.2020.00014
Preventing disease through healthy environments. Towards an estimate of the environmental burden of disease, 2006. URL: https://www.who.int/publications/i/item/9241593822
Schraufnagel D. E., Balmes J. R., Cowl C. T., Wuebbles D. J. Air pollution and non-communicable diseases: A review by the Forum of International Respiratory Societies’ environmental committee, part 1: The damaging effects of air pollution // Chest, 2019, vol. 155, pp. 409-416. http://dx.doi.org/10.1016/j.chest.2018.10.042
Tang-Tat C., Kuo-Ying W. An association between air pollution and daily most frequently visits of eighteen outpatient diseases in an industrial city // Scientific reports, 2020, vol. 10, no. 1, e2321. https://doi.org/10.1038/s41598-020-58721-0
Thurston G. D., Kipen H., Annesi-Maesano I., Brunekreef B. A joint ERS/ATS policy statement: What constitutes an adverse health effect of air pollution? An analytical framework // European respiratory journal, 2017, vol. 49, no. 1, e1600419. http://dx.doi.org/10.1183/13993003.00419-2016
Copyright (c) 2023 Nadezhda V. Nikiforova, Nina V. Zaitseva, Svetlana V. Kleyn

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.






















































