Vol. 33, issue 12, article # 2

Pozhitkov R. Yu. The content of particulate matter PM2.5 and PM10 in the surface air layer of Tyumen in June 2020. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 913–917. DOI: 10.15372/AOO20201202 [in Russian].
Copy the reference to clipboard

Abstract:

The content of particulate matter PM2.5 and PM10 in the surface air layer of the city of Tyumen in June 2020 is estimated. The measurements were made using a hand-held portable particle counter AIR TESTER CW-HAT 200. The content of PM2.5 and PM10 in the city air is not highly variable; their average values are several times less than the one-time maximum permissible concentrations. This allows us to conclude that the surface air in Tyumen is moderately polluted with suspended particles. With the help of ArcGIS 10.6.1 software, schemes of the distribution of particles over the city territory are constructed; two highly polluted regions are identified caused by high traffic and wind pattern, respectively. The correlations between the content and distribution of PM2.5 and PM10 with air temperature and relative humidity are analyzed.

Keywords:

particulate matter, dust pollution, РМ2,5, РМ10, environmental monitoring, Tyumen

References:

  1. Vsemirnaya organizaciya zdravoohraneniya, Evropejskoe regional'noe byuro. Obzor dannyh o vozdejstvii zagryazneniya vozduha na zdorov'e – proekt REVIHAAP. Kratkoe izlozhenie nauchnogo otcheta [Elektronnyj resurs]. URL: https://www.euro.who.int/__data/assets/ pdf_file/0009/218574/REVIHAAP-Final-technical-report-Rus.pdf (data obrashcheniya: 15.08.2020).
  2. Zavorueva E.N., Zavoruev V.V., Pechenkin F.A. Koncentraciya vzveshennyh chastic v prizemnom sloe atmosfery goroda Krasnoyarska v 2013–2016 godah // Put' nauki. 2017. N 4(38). P. 13–15. 
  3. Kalyuzhina E.A., Nesvetaev G.V., Azarov V.N. Issledovaniya znachenij PM10 i PM2.5 v vybrosah v atmosferu i rabochuyu zonu pri remontno-stroitel'nyh rabotah // Internet-vestnik VolgGASU. 2012. N 1(20). P. 24.
  4. Golohvast K.S., Kodincev V.V., Kutaj V.V., Chajka V.V., Drozd V.A. Issledovanie zagryazneniya atmosfery goroda Blagoveshchenska chasticami PM1, PM10, PM50 // Byull. fiziologii i patologii dyhaniya. 2018. N 67. P. 41–44. DOI: 10.12737/article_5a9f262e41cf97. 42049946.
  5. Azarov V.N., Kalyuzhina E.A. Ob organizacii monitoringa PM10 i PM2.5 na primere g. Volgograda // Vestn. Volgograd. gos. arhitekturno-stroitel'nogo un-ta. Ser.: Stroitel'stvo i arhitektura. 2011. N 25(44). P. 398–401.
  6. Stepanova N.V., Fomina S.F. Ocenka dlitel'nogo zagryazneniya vzveshennymi chasticami PM2.5 i PM10 atmosfernogo vozduha g. Kazani // Analiz riska zdorov'yu Rise-2020 i kruglym stolom po bezopasnosti pitaniya. Materialy X Vseros. nauch.-prakt. mezhdunar. konf. V 2 V. 2020. P. 262–271.
  7. Vlasov D.V., Kasimov N.S., Kosheleva N.E. Geohimiya dorozhnoj pyli (Vostochnyj okrug Moskvy) // Vestn. Mosk. un-ta. Ser. 5: Geografiya. 2015. N 1. P. 23–33.
  8. Querol X., Moreno T., Karanasiou A., Reche C., Alastuey A., Viana M., Font O., Gil J., de Miguel E., Capdevila M. Variability of levels and composition of PM10 and PM2.5 in the Barcelona metro system // Atmos. Chem. Phys. 2012. V. 12, N 11. P. 5055–5076. DOI: 10.5194/acp-12-5055-2012.
  9. Namazbaeva Z.I., Bazelyuk L.T., Ageev D.V., Sabirov Zh.B. Izmenenie funkcional'nogo sostoyaniya kletochnyh struktur u krys pri vozdejstvii vzveshennyh pylevyh chastic (PM2.5, PM10) // Innovacii v nauke. 2014. N 34. P. 91–103.
  10. De Miranda R.M., Andrade M. de F., Fornaro A., Astolfo R., de Andre P.A., Saldiva P. Urban air pollution: a representative survey of PM2.5 mass concentrations in six Brazilian cities // Air Qual., Atmos. Health. 2012. V. 5, N 1. P. 63–77. DOI: 10.1007/s11869-010-0124-1.
  11. Wang Y.Q., Zhang X.Y., Sun J.Y., Zhang X.C., Che H.Z., Li Y. Spatial and temporal variations of the concentrations of PM10, PM2.5 and PM1 in China // Atmos. Chem. Phys. 2015. V. 15, N 23. P. 13585–13598. DOI: 10.5194/acp-15-13585-2015.
  12. Rogula-Kozƚowska W., Klejnowski K., Rogula-Kopiec P., Osrodka L., Krajhny E., Blaszezak B., Mathews B. Spatial and seasonal variability of the mass concentration and chemical composition of PM2.5 in Poland // Air Qual., Atmos. Health. 2014. V. 7, N 1. P. 41–58. DOI: 10.1007/s11869-013-0222-y.
  13. Maremuha T.P., Petrosyan A.A. Zagryaznenie atmosfernogo vozduha frakciyami melkodispersnoj pyli (PM10 i PM2,5) v rajone funkcionirovaniya ugol'noj TES // Zdorov'e i okruzh. sreda. 2016. N 26. P. 39–42.
  14. Boldo E., Medina S., Le Tertre A., Hurley F., Mücke H-G., Ballester F., Aguilera I., Eilstein D. Apheis: Health impact assessment of long-term exposure to PM2.5 in 23 European cities // Eur. J. Epidemiol. 2006. V. 21, N 6. P. 449–458. DOI: 10.1007/s10654-006-9014-0.
  15. Goroda Rossii. Gorod Tyumen'. Obshchie svedeniya i opisanie Tyumeni [Elektronnyj resurs]. URL: http://xn ----7sbiew6aadnema7p.xn--p1ai/sity_id.php?id=25 (data obrashcheniya: 16.08.2020).
  16. Petuhov A.S., Kremleva T.A., Hritohin N.A., Petuhova G.A., Kajdunova P.I. Soderzhanie tyazhelyh metallov (Cu, Zn, Fe, Mn, Pb, Cd) v pochvah g. Tyumeni // Vestn. Nizhnevart. gos. un-ta. 2020. N 1. P. 127–134. DOI: 10.36906/2311-4444/20-1/19.
  17. Abdulaev E.K., Grudinin N.N. Obrazovanie melkodispersnyh tverdyh chastic РМ10 и РМ2,5 pri ekspluatacii avtomobil'nyh shin // Tendencii razvitiya nauki i obrazovaniya. 2018. N 43–8. P. 5–7. DOI: 10.18411/lj-10-2018-179.
  18. Li X., Zhang H., Jing J., Huang D. Surface modification of a low-density ceramic for gas-solid separation // Surf. Coat. Technol. 2015. V. 262. P. 103–110. DOI: 10.1016/j.surfcoat.2014.12.020.
  19. Zhu X., Lei L., Wang X., Zhang Y. Air quality and passenger comfort in an air-conditioned bus micro-environment // Environ. Monit. Assess. 2018. V. 190, N 5. P. 276. DOI: 10.1007/s10661-018-6593-7.
  20. Liu J., Man Y., Liu Y. Temporal variability of PM10 and PM2.5 inside and outside a residential home during 2014 Chinese Spring Festival in Zhengzhou, China // Natural Hazards. 2014. V. 73, N 3. P. 2149–2154. DOI: 10.1007/s11069-014-1157-9.
  21. Watson D.F., Philip G.M. A refinement of inverse distance weighted interpolation // Geo-processing. 1985. V. 2, N 4. P. 315–327.
  22. Bell M.L., Dominici F., Ebisu K., Zeger S.L., Samet J.M. Spatial and temporal variation in PM2.5 chemical composition in the United States for health effects studies // Environ. Health Perspect. 2007. V. 115, N 7. P. 989–995. DOI: 10.1289/ehp.9621.
  23. Zhao X., Zhang X., Xu X., Xu J., Meng W., Pu W. Seasonal and diurnal variations of ambient PM2.5 concentration in urban and rural environments in Beijing // Atmos. Environ. 2009. V. 43, N 18. P. 2893–2900. DOI: 10.1016/j.atmosenv.2009.03.009.
  24. Khan M.F., Shirasuna Y., Hirano K., Masunaga S. Characterization of PM2.5, PM2.5–10 and PM > 10 in ambient air, Yokohama, Japan // Atmos. Res. 2010. V. 96, N 1. P. 159–172. DOI: 10.1016/j.atmosres.2009. 12.009.
  25. Kulshrestha A., Satsangi P.G., Masih J., Taneja A. Metal concentration of PM2.5 and PM10 particles and seasonal variations in urban and rural environment of Agra, India // Sci. Total Environ. 2009. V. 407, N 24. P. 6196–6204. DOI: 10.1016/j.scitotenv.2009.08.050.
  26. Sillanpää M., Hillamo R., Kerminen V.M., Pakken T., Salonen R., Pennanen A., Aarnio P., Koskentalo T. Chemical composition and mass balance of an urban aerosol during various seasons // J. Aerosol Sci. 2000. V. 31. P. S309–S310.
  27. Akyüz M., Çabuk H. Meteorological variations of PM2.5/PM10 concentrations and particle-associated polycyclic aromatic hydrocarbons in the atmospheric environment of Zonguldak, Turkey // J. Hazard. Mater. 2009. V. 170, N 1. P. 13–21. DOI: 10.1016/j.jhazmat. 2009.05.029.
  28. Sillanpää M., Hillamo R., Saarikoski S., Frey A., Pennanen A., Makkonen U., Spolnik Z., van Grieken R., Braniš M., Brunekreef B., Chalbot M-C., Kuhlbusch T., Sunyer J., Kerminen V-M., Kulmala M., Salonen R-O. Chemical composition and mass closure of particulate matter at six urban sites in Europe // Atmos. Environ. 2006. V. 40. P. 212–223. DOI: 10.1016/j.atmosenv.2006.01.063.
  29. Rogula-Kozƚowska W., Klejnowski K., Rogula-Kopiec P., Mathews B., Szopa S. A Study on the seasonal Mass closure of ambient fine and coarse dusts in Zabrze, Poland // Bull. Environ. Contam. Toxicol. 2012. V. 88, N 5. P. 722–729. DOI: 10.1007/s00128-012-0533-y.
  30. RD 52.04.830-2015. Massovaya koncentraciya vzveshennyh chastic PM10 i PM2.5 v atmosfernom vozduhe. Metodika izmerenij gravimetricheskim metodom. SPb.: GGO im. A.I. Voejkova, 2015. 41 p.
  31. Health impact of PM10 and ozone in 13 Italian cities. Copenhagen, WHO: 2006. 133 p.
  32. Gvozdeckij N.A. Fiziko-geograficheskoe rajonirovanie Tyumenskoj oblasti. M.: Izd-vo Mosk. un-ta, 1973. 246 p.
  33. Pogoda v Tyumeni v iyune 2020 goda [Elektronnyj resurs]. URL: http://weatherarchive.ru/Temperature/Tyumen/June-2020 (data obrashcheniya: 25.08.2020).