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Investigation of the permeability of petroleum derivatives by arable soils of different classes

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Spills of petroleum substances into soils, originating from vehicles, public transport or agricultural machinery pose a serious environmental threat, leading to soil contamination and degradation. This phenomenon requires special attention due to its potential ecological consequences and the significance of soil as a resource for agricultural activity. In 2023, the Chojnice County Fire Department recorded 998 local hazards, 140 of which involved the neutralization and absorption of chemicals, and 88 cases involved limiting spills and leaks. In response to the magnitude of this issue, laboratory studies were carried out to analyse the permeability of selected soil types when in contact with petroleum substances. The aim of the study was to verify the influence of different arable classes of soils on petroleum permeability. The studies involved soils of different arable classes (IIIa, IVa, V), which were exposed to selected contaminants from vehicles and agricultural machinery. Parameters such as permeability, permeability coefficient and capillary capacity were measured as part of the experiment. The analysis results were presented in the form of charts and discussed in detail. The data showed that all studied soils exhibited good permeability levels (Grade IV according to C. Święcicki’s classification). The results allowed conclusions regarding differences in soil reactions to petroleum substance contact, which could be crucial for pollution management and soil environmental protection.
Rocznik
Strony
7--21
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
  • student of Fire University, Faculty of Safety and Civil Protection Engineering, Warsaw, Poland
  • Fire University, Faculty of Safety and Civil Protection Engineering, Warsaw, Poland
Bibliografia
  • [1] Ahmed, F., Fakhruddin, ANM., (2018). A Review on Environmental Contamination of Petroleum Hydrocarbons and its Biodegradation. International Journal of Environmental Sciences and Natural Resources, 11, 3. DOI: 10.19080/IJESNR.2018.11.555811
  • [2] Broll, G., (2023). Encyclopedia of Soils in the Environment (Second Edition). Osnabrueck, Germany: University of Osnabrueck. https://doi.org/10.1016/B978-0-12-822974-3.00200-7
  • [3] Brouwer, C., Prins, K., Kay, M., Heibloem, M., (1988). Training manual no 5, soilhealth.ucdavis.edu.
  • [4] Dmochowska, A., Polańczyk, A., (2024). Impact of selected remediation methods on soils contaminated with petroleum substances, Zeszyty Naukowe SGSP, 90(1), 93–107. DOI:10.5604/01.3001.0054.6243
  • [5] GIOS, (2022). Report Stan środowiska w Polsce. Warsaw: Biblioteka Monitoringu Środowiska.
  • [6] Herewati, A., Syamsiyah, J., Baldan, SK., Arifin, I., (2021). Application of soil amendments as a strategy for water holding capacity in sandy soils. IOP Conference Series: Earth and Environmental Science. DOI: 10.1088/1755-1315/724/1/012014
  • [7] Jadczyszyn, J., Smreczak, B., Skłodowski, P., (2019). Agricultural suitability and land use of chernozems in Poland. Soil Science Annual, 70, 3, 270.
  • [8] Kabała, C., (2022). Origin, transformation and classification of alluvial soils (mady) in Poland – soils of the year 2022. Soil Science Annual, 73, 3, 1–13.
  • [9] Karczewska, A., Wielgosiński, G., Wszołek, T., , Wolska, M., Miksch, K., Rosik-Dulewska, C., Surowska, B., Korzeniowski, P., Krystek, J., Poskrobko, T., (2018). Ochrona środowiska dla inżynierów. Warsaw: PWN.
  • [10] Krasilnikov, P., Ibáñez Martí, J., Arnold, R., Shoba, S., (2009). A Handbook of Soil Terminology, Correlation and Classification, Chapter: Soil Classification of Poland, 1 Edition.
  • [11] Łabaz, B., Bogacz, A., Kabała, C., (2014). Anthropogenic transformation of soils in the Barycz valley – conclusions for soil classification. Soil Science Annual, 65(3), 103–110, DOI: 10.2478/ssa-2019-0024
  • [12] Łachacz, A., Smreczak, B., (2019). Soil types specified in the bonitation classification and their analogues in the sixth edition of the Polish Soil Classification. Soil Science Annual, 70, 2, 115–136. DOI:10.2478/ssa-2019-0011
  • [13] Polańczyk, A., Piechota-Polańczyk, A., Dmochowska, A., (2019). The Influence of the Soil Type on the Permeability of Petroleum Derivatives. Rocznik Ochrona Środowiska, 21 , pp. 281–293.
  • [14] Regulation of the Council of Ministers of 12 September 2012 on soil classification of land (Polish Journal of Laws/Dz.U. of 2012, item 1246).
  • [15] Ruziwa, D., Rutsito, D., Chaukura, N., (2022). Environmental Pollutants: Organic and Emerging Contaminants. In: Selvasembian R., van Hullebusch E., Mal J. (eds), Biotechnology for Environmental Protection, Springer, Singapore. https://doi.org/10.1007/978-981-19-4937-1_2
  • [16] Smreczak, B., Jadczyszyn, J., Ukulska-Jaruga, A., Niedźwiecki, J., Pindral, S., Gregoliński, D., Łysiak, M., (2024). Alluvial soils in agricultural divisions and their utility value in Poland. Soil Sci. Ann., 75(2)189472. DOI: https://doi.org/10.37501/soilsa/189472
  • [17] Stepanova, A., Gladkov, E., Osipova, E., Gladkova, O., Tereshonok, D., (2022). Bioremediation of Soil from Petroleum Contamination. Processes, 10(6):1224. DOI: https://doi.org/10.3390/pr10061224
  • [18] Święcicki, C., (1965). The structure of soil profile and water melioration of soils. Postępy Nauk Rolniczych, 12, 2.
  • [19] Thapa, B., Kumar, A., Ghimire, A., (2012). A review on bioremediation of petroleum hydrocarbon contaminants in soil. Kathmandu University Journal of Science, Engineering and Technology, 8, No. I, pp. 164–170.
  • [20] Tuli, A., Hopmans, J., Rolston, D., Moldrup, P., (2005). Comparison of Air and Water Permeability between Disturbed and Undisturbed Soils. Soil Science Society of America Journal, 98. https://doi.org/10.2136/sssaj2004.0332
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-26844341-e9c7-46ac-a76d-07e0a1e2f736
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