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Evaluation of Petroleum Hydrocarbons Elution From Soil

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents studies on oil removal from soil by means of water elution with a help of shaking out the contaminants from the soil. The tests were performed on simulated soil samples contaminated with a mixture of petroleum hydrocarbons. The study consisted in recording the time influence and the number of elution cycles to remove contaminants from the soil. The samples were then subject to the determination of petroleum hydrocarbons, aliphatic hydrocarbons, and BTEX compounds (benzene, toluene, ethylbenzene, xylene). Due to adding various concentrations of petroleum into particular soil samples and applying different shaking times, it was possible to find out the impact of petroleum content and sample shaking duration on the course and possibility of petroleum substances removal by means of elution process.
Słowa kluczowe
Rocznik
Strony
14--19
Opis fizyczny
Bibliogr. 19 poz., tab.
Twórcy
autor
  • Bialystok University of Technology, 45A Wiejska Str., 15-351 Bialystok, Poland
Bibliografia
  • 1. Barański A., Gworek B. 2004. Evaluation of health and environmental risk due to grounds contaminated with petroleum substances. Monograph 11–13, 55–64 (in Polish).
  • 2. Barnes D.L., Asce M. 2003. Estimation of operation time for soil vapor extraction systems. Journal of Environmental Engineering 129, 873.
  • 3. Bear J., Yavuz Corapcioglu M. 1987. Advances in transport phenomena in porous media. Martinus Nijhoff Publishers, Boston, 269–343.
  • 4. Fąfara Z., Miska W. 2005. Dispersion of petroleum contamination in a ground in a view of laboratory studies. Wiertnictwo Nafta Gaz 22, 127–132 (in Polish).
  • 5. Fąfara Z., Rychlicki S. 2005.) Influence of the ground properties on hydrocarbons migration on a base of laboratory studies. Wiertnictwo Nafta Gaz 22, 135–136 (in Polish).
  • 6. Glass D.S. 2000. The petrochemical interface in: modern petroleum technology. Institute of Petroleum, 149–158.
  • 7. Harmsen J., Rulkens W.H., Sims R.C., Rijtema P.E., Zweers A.J. 2008. Theory and application of landfarming to remediate polycyclic aromatic hydrocarbons and mineral oil-contaminated sediments: Beneficial Reuse. J. Environ Qual 36, 1112–1122.
  • 8. Izdebska-Mucha D. 2005. Influence of oil pollution on selected geological-engineering properties of clay soils. Przegląd Geologiczny, 53, 766–769 (in Polish).
  • 9. Jewulski J., Zagrajczuk D. 2005. Selection of parameters for contamination removal from the ground by means of chemical method on a base of laboratory studies. Wiertnictwo Nafta Gaz, 22, 157–158 (in Polish).
  • 10. Kajdas Cz. Chemistry and physicochemistry of petroleum. (Chemia i fizykochemia ropy naftowej), 1979, 16 – 371 (in Polish).
  • 11. Lewkiewicz-Małysa A., Rogowska-Kwas R., Wind B. 2008. Reduction in the contents of hydrocarbon polluting the natural environment, Wiertnictwo Nafta Gaz 25, 454–455 (in Polish).
  • 12. Rychlicki S., Fąfara Z. et al. (Eds) 2006. Methods for removal of hydrocarbon contaminants from the ground-water environment (in Polish).
  • 13. Pastewski S., Czacharowski P., Mędrzycka K. 2009. Washing out of hydrophobic organic pollutants from Soil using surfactants solutions. Monograph Polska Inżynieria Środowiska 1(58), 183 (in Polish).
  • 14. Paudyn K., Paudyn K., Rutter A., Rowe R.K., Poland J.S., 2008. Remediation of hydrocarbon contaminated soils in the Canadian Arctic by landfarming. Cold Regions Sience and Technology 53, 102–114.
  • 15. Schobert H.H. 1990. The chemistry of hydrocarbon fuels. Butterworths, London.
  • 16. Seifert W.K., Teeter R.M. 1970. Identification of polycyclic aromatic and heterocyclic crude oil carboxylic acids. Anal. Chem., 42, 750.
  • 17. Sęk J. Dziubiński M., Błaszczyk M., Padyk A. 2011. Studies upon penetration of plant oils and petroleum substances solutions through porous medium. Inżynieria Ekologiczna 26, 48–49.
  • 18. Taubman J., Blum A. 1967. Petroleum in a contemporary world, 10–67 (in Polish).
  • 19. Wołejko E., Butarewicz A., Wydro U., Łoboda T. 2014. Advantages and potential risks of municipal sewage sludge application to urban soil. Desalination and Water Treatment, 52, 3732–3742.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1f0d9e7a-3329-420f-97cc-3b6b57fcd8da
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