Assessment of Environmental Risks to Public Health in the Voronezh Region as a Result of Chemical Contamination of Drinking Water

The research was carried out at the expense of the grant of the Russian Science Foundation No. 25-17-00219, https://rscf.ru/project/25-17-00219/

Authors

  • Tatiana Ivanovna Prozhorina Voronezh State University
  • Pavel Alekseevich Sukhanov Voronezh State University
  • Anastasia Sergeevna Boeva Voronezh State University

DOI:

https://doi.org/10.52575/2712-7443-2025-49-4-782-793

Keywords:

centralized water supply systems, environmental risks, drinking water, sanitary and hygienic requirements, chemical pollution, public health

Abstract

The purpose of the study is to analyze the effects of chemical pollutants in drinking water flowing through centralized water supply systems on the health of residents of the Voronezh region in the context of assessing environmental (non-carcinogenic) risks. As part of the work, priority pollutants and territories that pose the greatest danger to residents of the region have been identified. The study uses data from laboratory monitoring of drinking water for 2024 and the first half of 2025 obtained from the Department of Rospotrebnadzor in the Voronezh region. We studied the indicators of 2,100 samples taken from centralized water supply systems in 32 municipal districts and one urban district of the region. The main focus was on the content of key chemical pollutants and their impact on public health. The results showed that 45.9 % of the studied territories exceeded the standards for total water hardness. The calculation of the likely risks, based on the average and maximum concentrations of harmful substances, allowed us to establish that due to the consumption of low-quality water, about 0.27 % of adults and 0.63 % of children in the region may face an increased likelihood of developing various diseases.

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Author Biographies

Tatiana Ivanovna Prozhorina, Voronezh State University

Candidate of Chemical Sciences, Associate Professor at the Department of Geoecology and Environmental Monitoring, Voronezh, Russia

Pavel Alekseevich Sukhanov, Voronezh State University

Postgraduate Student of the Department of Geoecology and Environmental Monitoring, Voronezh, Russia
E-mail: sukhanov.1990@bk.ru

Anastasia Sergeevna Boeva, Voronezh State University

Candidate of Geographical Sciences, Senior Lecturer at the Department of Geoecology and Environmental Monitoring, Voronezh, Russia

References

Список источников

Численность населения Воронежской области на 1 января 2025 года. Электронный ресурс. URL: https://36.rosstat.gov.ru/naselenie (дата обращения: 21.06.2025).

Р 2.1.10.3968-23. Руководство по оценке риска здоровью населения при воздействии химических веществ, загрязняющих среду обитания». 2023. Москва, Роспотребнадзор, 301 с.

Список литературы

Боева А.С. 2023. Оценка экологических рисков для здоровья населения Воронежской обла-сти, связанных с качеством питьевой воды в источниках децентрализованного водо-пользования. Вестник Воронежского государственного университета. Серия: Геогра-фия. Геоэкология, 3: 90–97. https://doi.org/10.17308/geo/1609-0683/2023/3/90-97

Девятова Т.А., Божко С.Н., Яблонских Л.А., Чувычкин А.Л. 2015. Влияние отраслей народно-го хозяйства Центрального Черноземья на загрязнение водных объектов. Вестник Во-ронежского государственного университета. Серия: Химия. Биология. Фармация, 1: 54–58.

Константинова Н.А. 2022. Загрязнение вод как фактор экологической медицины. Авиакосми-ческая и экологическая медицина, 56(6): 16–22. https://doi.org/10.21687/0233-528X-2022-56-6-16-22

Куролап С.А., Клепиков О.В. 2013. Интегральное медико-экологическое зонирование как ос-нова региональной стратегии устойчивого развития Воронежского региона. Вестник Тамбовского университета. Серия: Естественные и технические науки, 18(2): 516–519.

Куролап С.А., Механтьев И.И., Клепиков О.В., Баскакова А.Г. 2021. Оценка риска для здоро-вья населения, связанного с качеством питьевой воды и безопасностью систем водо-снабжения. В кн.: Оценка экологических рисков водопользования на территории круп-ного урбанизированного региона. Воронеж, Цифровая полиграфия: 5–19.

Куролап С.А., Клепиков О.В., Прожорина Т.И., Клевцова М.А., Виноградов П.М., Умывакин В.М., Сарычев Д.В. 2020. Современные подходы к оценке экологических рисков для населения крупных промышленных городов (региональная урбоэкодиагностика). В кн.: Региональная экологическая диагностика состояния воздушной среды промышленных городов. Воронеж, Цифровая полиграфия: 6–35.

Механтьев И.И. 2020. Риск здоровью населения Воронежской области, обусловленный каче-ством питьевой воды. Здоровье населения и среда обитания, 4(325): 37–42. https://doi.org/10.35627/2219-5238/2020-325-4-37-42

Механтьев И.И., Клепиков О.В., Куролап С.А., Попова Л.В. 2021. Современные гигиениче-ские проблемы питьевого водоснабжения населения Воронежской области. Тенденции развития науки и образования, 79(1): 28–32. https://doi.org/10.18411/trnio-11-2021-09

Механтьев И.И., Клепиков О.В., Масайлова Л.А., Баскакова А.Г. 2020. Проблема нитратного загрязнения в отдельных источниках питьевого водоснабжения Воронежской области. В кн.: Региональная геоэкологическая диагностика состояния хозяйственно-питьевого и рекреационного водопользования. Воронеж, Цифровая полиграфия: 36–46.

Новикова Ю.А., Мясников И.О., Ковшов А.А., Тихонова Н.А., Башкетова Н.С. 2020. Методи-ческие подходы к организации программ мониторинга качества питьевой воды. Здоро-вье населения и среда обитания, 10(331): 4–8. https://doi.org/10.35627/2219-5238/2020-331-10-4-8

Прожорина Т.И., Куролап С.А. 2020. Оценка экологических рисков для здоровья населения города Павловска вследствие загрязнения источников питьевого водоснабжения. Есте-ственные и технические науки, 10(148): 109–115.

Прожорина Т.И., Куролап С.А., Преснякова Ю.А. 2020. Геоэкологическая оценка качества источников хозяйственно-питьевого водоснабжения урбанизированных и сельских тер-риторий Воронежской области. Вестник Удмуртского университета. Серия: Биология. Науки о Земле, 30(1): 53–63. https://doi.org/10.35634/2412-9518-2020-30-1-53-63

Рахманин Ю.А., Мельцер А.В., Киселев А.В., Ерастова Н.В. 2017. Гигиеническое обоснова-ние управленческих решений с использованием интегральной оценки питьевой воды по показателям химической безвредности и эпидемиологической безопасности. Гигиена и санитария, 96(4): 302–305. https://doi.org/10.18821/0016-9900-2017-96-4-302-305

Рахманин Ю.А., Онищенко Г.Г. 2022. Гигиеническая оценка питьевого водообеспечения населения Российской Федерации: проблемы и пути рационального их решения. Гигие-на и санитария, 101(10): 1158–1166. https://doi.org/10.47470/0016-9900-2022-101-10-1158-1166

Сазонова О.В., Сергеев А.К., Чупахина Л.В., Рязанова Т.К., Судакова Т.В. 2021. Анализ риска здоровью населения, обусловленного загрязнением питьевой воды (опыт Самарской области). Анализ риска здоровью, 2: 41–51. https://doi.org/10.21668/health.risk/2021.2.04

Стёпкин Ю.И., Мамчик Н.П., Платунин А.В., Колнет И.В., Русин В.И. 2012. Оценка риска здоровью населения Воронежской области, связанная с загрязнением питьевой воды химическими веществами. Гигиена и санитария, 91(5): 105–106.

Трофимович Е.М., Недовесова С.А., Айзман Р.И. 2019. Экспериментальная гигиеническая оценка содержания кальция, магния в питьевой воде и уровня её жёсткости. Гигиена и санитария, 98(8): 811–819. https://doi.org/10.18821/0016-9900-2019-98-8-811-819

Corso M, Galey C, Seux R, Beaudeau P. 2018. An Assessment of Current and Past Concentrations of Trihalomethanes in Drinking Water throughout France. International Journal of Environ-mental Research and Public Health, 15(8): 1669. https://doi.org/10.3390/ijerph15081669

Eslami F., Yaghmaeian K., Mohammadi A., Salari M., Faraji M. 2019. An Integrated Evaluation of Groundwater Quality Using Drinking Water Quality Indices and Hydrochemical Characteris-tics: a Case Study in Jiroft, Iran. Environmental Earth Sciences, 78: 314. https://doi.org/10.1007/s12665-019-8321-1

Jones E.R., Bierkens M.F.P., van Puijenbroek P.J.T.M., van Beek L.(R.)P.H., Wanders N., Suta-nudjaja E.H. van Vliet M.T.H. 2023. Sub-Saharan Africa will increasingly become the domi-nant hotspot of surface water pollution. Nature Water, 1: 602–613. https://doi.org/10.1038/s44221-023-00105-5

Levêque J.G., Burns R.C. 2018. Drinking Water in West Virginia (USA): Tap Water or Bottled Wa-ter – What is the Right Choice for College Students? Water and Health, 16(5): 827–838. https://doi.org/10.2166/wh.2018.129

Guidelines for drinking-water quality (4th ed.). 2022. Geneva, World Health Organization, 515 p.

References

Boeva A.S. 2023. Assessment of Environmental Risks to Public Health Associated with the Quality of Drinking Water from Fecentralised Water Sources in the Voronezh Region. Proceedings of Voronezh State University. Series: Geography. Geoecology, 3: 90–97 (in Russian). https://doi.org/10.17308/geo/1609-0683/2023/3/90-97

Devyatova T.A., Bozhko S.N., Yablonskikh L.A., Chuvychkin A.L. 2015. Influence of Branches of a National Economy of the Central Chernozem Region on Pollution of Water Objects. Pro-ceedings of Voronezh State University. Series: Chemistry. Biology. Pharmacy, 1: 54–58 (in Russian).

Konstantinova N.A. 2022. Water Pollution as a Factor of Environmental Medicine. Aerospace and Environmental Medicine, 56(6): 16–22 (in Russian). https://doi.org/10.21687/0233-528X-2022-56-6-16-22

Kurolap S.A., Klepikov O.V. 2013. Integral Health-Ecological Zoning as Basis of Regional Strategy for Sustainable Development of Voronezh Region. Tambov University Reviews. Series Natu-ral and Technical Sciences, 18(2): 516–519 (in Russian).

Kurolap S.A., Mekhantyev I.I., Klepikov O.V., Baskakova A.G. 2021. Otsenka riska dlya zdo-rov'ya naseleniya, svyazannogo s kachestvom pit'evoy vody i bezopasnost'yu sistem vodos-nabzheniya [Assessment of Population Health Risks Associated with Drinking Water Quality and Water Supply System Safety]. In: Otsenka ekologicheskikh riskov vodopol'zovaniya na territorii krupnogo urbanizirovannogo regiona [Assessment of Environmental Risks of Water Use in a Large Urbanized Region]. Voronezh, Pabl. Tsifrovaya poligrafiya: 5–19.

Kurolap S.A., Klepikov O.V., Prozhorina T.I., Klevtsova M.A., Vinogradov P.M., Umyvakin V.M., Sarychev D.V. 2020. Sovremennye podkhody k otsenke ekologicheskikh riskov dlya nasele-niya krupnykh promyshlennykh gorodov (regional'naya urbokodiagnostika) [Modern Ap-proaches to Assessing Environmental Risks for Population of Large Industrial Cities (Region-al Urban Ecodiagnostics)]. In: Regional'naya ekologicheskaya diagnostika sostoyaniya vozdushnoy sredy promyshlennykh gorodov [Regional Environmental Diagnostics of the Air Quality in Industrial Cities].Voronezh, Pabl. Tsifrovaya poligrafiya: 6–35.

Mehantiev I.I. 2020. Health Risks for the Population of the Voronezh Region Related to Drinking Water Quality. Public Health and Life Environment, 4(325): 37–42 (in Russian). https://doi.org/10.35627/2219-5238/2020-325-4-37-42

Mehantiev I.I., Klepikov O.V., Kurolap S.A., Popova L.V. 2021. Sovremennye gigienicheskie problemy pit'evogo vodosnabzheniya naseleniya Voronezhskoy oblasti [Modern Hygienic Problems of Drinking Water Supply for Voronezh Region Population]. Tendentsii razvitiya nauki i obrazovaniya, 79(1): 28–32. https://doi.org/10.18411/trnio-11-2021-09

Mehantiev I.I., Klepikov O.V., Masaylova L.A., Baskakova A.G. 2020. Problema nitratnogo zag-ryazneniya v otdel'nykh istochnikakh pit'evogo vodosnabzheniya Voronezhskoy oblasti [Problem of Nitrate Pollution in Separate Drinking Water Sources of Voronezh Region]. In: Regional'naya geoekologicheskaya diagnostika sostoyaniya khozyaystvenno-pit'evogo i rekreatsionnogo vodopol'zovaniya [Regional Geoecological Diagnostics of the State of Do-mestic, Drinking and Recreational Water Use].Voronezh, Pabl. Tsifrovaya poligrafiya: 36–46.

Novikova Yu.A., Myasnikov I.O., Kovshov A.A., Tikhonova N.A., Bashketova N.S.2020. Meth-odological Approaches to Organization of Drinking Water Quality Monitoring Programs. Pub-lic Health and Life Environment, 10(331): 4–8 (in Russian). https://doi.org/10.35627/2219-5238/2020-331-10-4-8

Prozhorina T.I., Kurolap S.A. 2020. Environmental Health Risk Assessment Population of the City of Pavlovsk from Pollution Sources of Drinking Water Supply. Natural and technical scienc-es, 10(148): 109–115 (in Russian).

Prozhorina T.I., Kurolap S.A., Presnyakova Yu.A. 2020. Geoecological Assessment of the Quality of Drinking Water Sources in Urban And Rural Areas of Voronezh Region. Bulletin of Ud-murt University. Series Biology. Earth Sciences, 30(1): 53–63 (in Russian). https://doi.org/10.35634/2412-9518-2020-30-1-53-63

Rakhmanin Yu.A., Meltser A.V., Kiselev A.V., Erastova N.V. 2017. Hygienic Substantiation of Management Decisions with the Use of the Integral Assessment of Drinking Water on Indices of Chemical Harmlessness and Epidemiological Safety. Hygiene and Sanitation, 96(4): 302–305 (in Russian). https://doi.org/10.18821/0016-9900-2017-96-4-302-305

Rakhmanin Yu.A., Onishchenko G.G. 2022. Hygienic Assessment of Drinking Water Supply of the Population of the Russian Federation: Problems and the Way Their Rational Decision. Hy-giene and Sanitation, 101(10): 1158–1166 (in Russian). https://doi.org/10.47470/0016-9900-2022-101-10-1158-1166

Sazonova O.V., Sergeev A.K., Chupakhina L.V., Ryazanova T.K., Sudakova T.V.2021. Analyzing Health Risks Caused by Contaminated Drinking Water (Experience Gained in Samara Re-gion). Health Risk Analysis, 2: 42–52 (in Russian). https://doi.org/10.21668/health.risk/2021.2.04.eng

Stepkin Yu.I., Mamchik N.P., Platunin A.V., Kolnet I.V., Rusin V.I. 2012. Assessment of Risk As-sociated with the Contamination of Drinking Water with Chemicals to Population Health of the Voronezh Region. Hygiene and Sanitation, 91(5): 105–106 (in Russian).

Trofimovich E.M., Nedovesova S.A., Aizman R.I. 2019. Experimental Hygienic Estimation of Cal-cium and Magnesium Concentrations in Drinking Water, and Its Hardness. Hygiene and Sani-tation, 98(8): 811–819 (in Russian). https://doi.org/10.18821/0016-9900-2019-98-8-811-819

Corso M, Galey C, Seux R, Beaudeau P. 2018. An Assessment of Current and Past Concentrations of Trihalomethanes in Drinking Water throughout France. International Journal of Environ-mental Research and Public Health, 15(8): 1669. https://doi.org/10.3390/ijerph15081669

Eslami F., Yaghmaeian K., Mohammadi A., Salari M., Faraji M. 2019. An Integrated Evaluation of Groundwater Quality Using Drinking Water Quality Indices and Hydrochemical Characteris-tics: a Case Study in Jiroft, Iran. Environmental Earth Sciences, 78: 314. https://doi.org/10.1007/s12665-019-8321-1

Jones E.R., Bierkens M.F.P., van Puijenbroek P.J.T.M., van Beek L.(R.)P.H., Wanders N., Suta-nudjaja E.H. van Vliet M.T.H. 2023. Sub-Saharan Africa will increasingly become the domi-nant hotspot of surface water pollution. Nature Water, 1: 602–613. https://doi.org/10.1038/s44221-023-00105-5

Levêque J.G., Burns R.C. 2018. Drinking Water in West Virginia (USA): Tap Water or Bottled Wa-ter – What is the Right Choice for College Students? Water and Health, 16(5): 827–838. https://doi.org/10.2166/wh.2018.129

Guidelines for drinking-water quality (4th ed.). 2022. Geneva, World Health Organization, 515 p.


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Published

2025-12-30

How to Cite

Prozhorina, T. I., Sukhanov, P. A., & Boeva, A. S. (2025). Assessment of Environmental Risks to Public Health in the Voronezh Region as a Result of Chemical Contamination of Drinking Water: The research was carried out at the expense of the grant of the Russian Science Foundation No. 25-17-00219, https://rscf.ru/project/25-17-00219/. Regional Geosystems, 49(4), 782-793. https://doi.org/10.52575/2712-7443-2025-49-4-782-793

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Methodology of geosystems research

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