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2023 | Vol. 17, no 3 | 294--301
Tytuł artykułu

Innovative Technologies for the Use of Drilling Waste in Reclamation and Shaping the Physicochemical Properties of Degraded Soils

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Języki publikacji
EN
Abstrakty
EN
This paper presents an evaluation of the use of drilling tailings in reclamation and development of physical and chemical properties of degraded soils. Composites with drilling wastes and other wastes, useful for the reclamation of degraded soils and their reconstruction in devastated areas, were used in the tests. Comparative objects were anthropogenic soil fertilized with NPK and manure at a dose of 30 Mg/ha + NPK. The research shows that the tested anthropogenic soil was characterized by very poor sorption properties, and especially the composites with the participation of the tested waste improved the described properties. The composite with sewage sludge from ZA Puławy had a more favorable (by approx. 20%) effect on the sorption capacity of the reclaimed anthropogenic soil than the composite with municipal sewage sludge from Lublin. The effect of the tested composites on reducing the hydrolytic acidity of the reclaimed soil was similar, but much more favorable than that of manure. The results of the conducted research confirmed that drilling wastes have environmentally valuable properties, but due to their unbalance, they should not be used alone, but in composites with properly selected other wastes, such as manure or sewage sludge.
Wydawca

Rocznik
Strony
294--301
Opis fizyczny
Bibliogr. 41 poz., fig., tab.
Twórcy
  • Institute of Soil Science, Engineering and Environmental Management, University of Life Sciences in Lublin, Leszczyńskiego Street 7, 20-069 Lublin, Poland, marta.bik-malodzinska@up.lublin.pl
  • Institute of Soil Science, Engineering and Environmental Management, University of Life Sciences in Lublin, Leszczyńskiego Street 7, 20-069 Lublin, Poland
  • Department of Microbiology and Biomonitoring, Agricultural University Hugo Kołłątaj in Kraków, Al. Mickiewicza Street 21, 31-120 Kraków, Poland
Bibliografia
  • 1. Kujawska, J., Pawłowska, M., Wójcik, K., Baran, S., Żukowska, G., Pawłowski, A. The use of mining waste and compost from municipal waste to create soil-like materials for the reclamation of degraded areas. Environmental Protection Yearbook, 18(2), 2016: 709-721.
  • 2. Regulation of the Minister of the Environment of December 14, 2014 on the catalog of waste. (Journal of Laws 2014.1923) (in Polish).
  • 3. Ball S.A., Stewart R.J., Schlieohake K. A review of current options for the treatment and safe disposal of drill cuttings. Waste Management and Research, 30(50), 2015: 457-473.
  • 4. Baran S., Wójcikowska-Kapusta A., Żukowska G. The influence of sewage sludge and Grodan mineral wool used for the reclamation of strongly acidified soils on the content of lead and nickel forms. [In]: Problem Books of Progress in Agricultural Sciences 535, 2009b: 23-31.
  • 5. Baran S., Wójcikowska-Kapusta A., Żukowska G. The impact of composites with drilling waste on the content of heavy metals in reclaimed soil. Proceedings of the 29th Congress of the Polish Society of Soil Science: Soil resources and sustainable development, 2015 Wrocław.
  • 6. Bik-Małodzińska M. Consequential impact of sludge and sludge-ash composts on shaping the properties of reclaimed industrial soil”, PAN Publishing House, Environmental Engineering Committee, Monographs 157, 2019: 120,
  • 7. Pawłowska M., Pawłowski L., Baran S., Kwiatkowski Z., Wesołowski M., Pawłowski A., Cel W., Kujawska J. A method of producing a soil substitute for the reclamation of excavations using used drilling muds. Patent application 2014: P.408947 of July 21.
  • 8. Polish Standard PN-ISO 10390:1997. Soil quality – Determination of pH.
  • 9. Polish Standard PN-R-04027:1997, Determination of heavy metal content.
  • 10. Karczewska A., Kabała C. Methodology of laboratory analyzes of soils and plants. 2008: UP in Wrocław.
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  • 12. Polish Standard PN-ISO-11047:2001, Determination of hydrolytic acidity by the Kappen method.
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  • 15. Regulation of the Minister of the Environment on municipal sewage sludge of February 6, 2015. (Journal of Laws 2015.257).
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  • 18. Technical Report. Land farming of drilling wastes impacts on soil biota within sandy soils in Taranaki (Year 1 of 3). Stratford: Taranaki Regional Council.2011.
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  • 21. Jakubus M. Evaluation of usefulness of sewage sludge in plant fertilization. Water-EnvironmentRural Areas. 6(2), 2006: 87-97.
  • 22. Malczewska B. Research on selected properties of sewage sludge in the light of the possibility of its utilization. Monographs of the University of Life Sciences in Wrocław 2008.
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  • 25. Kijo-Kleczkowska A., Otwinowski H., Środa K., 2012. Properties and production of sewage sludgein Poland with reference to the methods of neutralizing, Archives of Waste Management and Environmental Protection, 14, (4), 2012: 59-78 .
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  • 28. Forsberg L.S., Ledin S. Effects of sewage sludge on pH and plant availability of metals in oxidising sulphide mine tailings. Science of the Total Environment 358, 2006: 21–35.
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  • 30. Skowrońska M., Filipek T. Influence of external organic matter on soil acidification. Problemo notebooks 2008.
  • 31. Baran S. Ability to use mt of mineral wool in postmining reclamation. Development in Production and Use of New Agrochemicals. Chemistry for Agriculture 7, 2006: 662-670.
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  • 33. Bik-Małodzińska M., Grażyna Żukowska G., Paśmionka I., Rybczyńska-Tkaczyk K., Jakubczyk A. Assessment of the Effectiveness of Soil Reclamation Techniques Degraded by the Sulfur Industry. Advances in Science and Technology Research Journal, 16(5), 2022: 324–334, DOI: https://doi. org/10.12913/22998624/155192
  • 34. Baran S., Wójcikowska-Kapusta A., Żukowska G., Oleszczuk P.The use of composts for soil regeneration on land devastated by intense acidification. Year Depth., LV, 2, 2004: 9-15.
  • 35. Baran S., Wójcikowska-Kapusta A., Żukowska G., Bik M. Sorption properties of a soilless formation reclaimed with sewage sludge and mineral wool. notebook test Fast. Agricultural Sciences, 533, 2008a: 39-47.
  • 36. Szymańska M., Łabętowicz J., Korc M. Percentage of cations saturating the sorption complex as an indicator for assessing soil quality. notebook Prob. Post. Agricultural Sciences 520, 2007: 181-187.
  • 37. Stańczyk-Mazanek, E., Piątek, M., Kępa, U. Consequential influence of sewage sludge applied on sandy soils on the properties of the sorption complex. Environmental Protection Yearbook, 15(3), 2013: 2437-2451.
  • 38. Czekaj, L., Fijał, J., Grzywnowicz, I., Jamrozik, A. Impact of drilling waste on selected physicochemical properties of cohesive soil. Drilling, Oil, Gas,2005: 22.
  • 39. Gołda T. Basic conditions for the reclamation of post-mining areas of the Sulfur Mine „Jeziórko”, Ecological Engineering, 1, 2000: 53-61.
  • 40. Jońca M. The use of sewage sludge in land reclamation in the Sulfur Mine „Jeziórko” (in:) Soil protection and reclamation. Ecological Engineering, 1, 2000: 27-30.
  • 41. Kujawska, J., Pawłowska, M., Wójcik, K., Baran, S., Żukowska, G., Pawłowski, A. The use of mining waste and compost from municipal waste to create soil-like materials for the reclamation of degraded areas. Environmental Protection Yearbook, 18(2), 2016: 709-721.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
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Bibliografia
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