PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Assessment of the Effectiveness of Soil Reclamation Techniques Degraded by the Sulfur Industry

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article shows the results assessment of the impact of various reclamation methods with the use of mineral wool and municipal sewage sludge on chemical and biological indicators, which have an impact on the improvement of the quality of soil degraded by sulfur well mining. The results of the research showed that the type of waste together with it application method, had a beneficial effect on the shaping of the chemical and biological properties of soil. The most favorable effect was noted in the conditions of combining mineral wool with sewage sludge. At this work we used the PHYTOTOXIKIT biological test, as an indicator of the ecotoxicological effect of selected waste added, for the efficiency of the soil remediation process.
Twórcy
  • Institute of Soil Science, Engineering and Environmental Management, University of Life Sciences in Lublin, ul. Leszczyńskiego 7, 20-069 Lublin, Poland
  • Institute of Soil Science, Engineering and Environmental Management, University of Life Sciences in Lublin, ul. Leszczyńskiego 7, 20-069 Lublin, Poland
  • Department of Microbiology and Biomonitoring, Agricultural University Hugo Kołłątaj in Kraków, Al. Mickiewicza 21, 31-120 Kraków, Poland
  • Department of Environmental Microbiology, University of Life Sciences in Lublin, ul. Leszczyńskiego 7, 20-069 Lublin, Poland
  • Department of Food Biochemistry and Chemistry, Faculty of Food Sciences and Biotechnology, University of Life Sciences in Lublin, ul. Skromna 8, 20-950 Lublin, Poland
Bibliografia
  • 1. Likus-Cieślik, J., & Pietrzykowski, M. Vegetation development and nutrients supply of trees in habitats with high sulfur concentration in reclaimed former sulfur mines Jeziórko (Southern Poland). Environmental Science and Pollution Research. 24(25), 2017: 20556–20566.
  • 2. Pytka-Woszczyło A., Różańska-Boczula M., Gizińska-Górna M., Marzec M., Listosz A., Jóźwiakowski K. Efficiency of filters filled with rockfos for phosphorus removal from domestic sewage. Advances in Science and Technology. 16(4), 2022: 176–188, il., bibliogr., sum.
  • 3. Baran S., Jońca M. Possibility of reconstruction and reclamation of soils on devastated land in the area of influence of the sulfur mine „Jeziórko” with the use of municipal sewage sludge from the sewage treatment plant in Krosno. Research report. AR Lublin. 2007 (in Polish).
  • 4. Warzybok W. Reclamation of the mining areas of the Sulfur Mine „Jeziórko”, Materials of the Scientific and Technical Conference – Baranów Sandomierski. Ecological Engineering, 1. Warsaw 2000, 121–133 (in Polish).
  • 5. Baran S., Wójcikowska-Kapusta A., Żukowska G., Strzałka A., Bik M., Strzałka D. Possibilities of using waste mineral wool from crops under cover to increase the productivity of soils and their reclamation in degraded areas. Content report. UP Lublin. 2010 (in Polish).
  • 6. Baran S., Łabętowicz J., Krzywy E. Natural waste utilization. Theoretical and practical foundations. Ed. Powszechne Wydawnictwo Rolnicze i Leśne, 2011, Warsaw, pp. 321 (in Polish).
  • 7. Bik-Małodzińska M., Żukowska G., Myszura M., Wójcikowska-Kapusta A., Mazur J. The changes in physicochemical properties in soils subjected to many years of reclamation. Journal of Ecological Engineering, 22(2), 2021: 47–53, DOI: 10.12911/22998993/130877.
  • 8. Joniec J. Indicators of microbial activity in the assessment of soil conditio subjected to several years of reclamation. Ecological Indicators. 98, 2019: 686–693.
  • 9. Baran S., Wójcikowska-Kapusta A., Żukowska G., Bik-Małodzińska M., Wesołowska-Dobruk S. Influence of sludge-ash composts on some properties of reclaimed land. Archives of Environmental Protection. 41(2), 2015: 82–88. DOI: 10.1515/aep2015–0022.
  • 10. Deeks L.K., Chaney K., Murray C., Sakrabani R., Gedara S., Le M.S., Tyrrel S., Pawlett M., Read R., Smith G.H. A new sludge-derived organo-mineral fertilizer gives similar crop yields as conventional fertilizers. Agronomy for Sustainable Development. 33(3), 2013: 539–549. DOI: 10.1007/s13593–013–0135-z.
  • 11. Filipek T. Natural and anthropogenic causes and effects of soil acidification. Fertilizers and Fertilization, 3(8), 2001: 5–26 (in Polish).
  • 12. Fischer T.B., Potter K., Donaldson S., Scott T. Municipal waste management strategies, strategic environmental assessment and the consideration of climate change in England. Journal of Environmental Assessment Policy and Management, 13(4), 2011: 541–565. DOI: 10.1142/S1464333211004000.
  • 13. Fernández J.M., Plaza C., Garcia-Gil J.C,. Polo A. Biochemical properties and barley yield in a semiarid Mediterranean soil amended with two kinds of sewage sludge. Applied Soil Ecology. 2009; 42, 1, 18–24. DOI: 10.1016/j.apsoil.2009.01.006.
  • 14. Dinel H., Marche T., Schnitzer M., Pare ́ T., Champagne P. Co-composting of Paper Mill Sludge and Hardwood Sawdust Under Two Types of In-Vessel Processes. Journal of Environmental Science and Health, Part B–Pesticides, Food Contaminants, and Agricultural Wastes, Vol. B39(1), 2004: 139–151.
  • 15. Bień J., Neczaj E., Worwąg M., Grosser A., Nowak D., Milczarek M., Janik M. Directions of sediment management in Poland after 2013. Environmental engineering and protection. 14(4), 2011: 375–384 (in Polish).
  • 16. Rosik-Dulewska Cz. Basics of waste management. Wyd. Nauk. PWN, Warszawa. 2012; ss. 378 (in Polish).
  • 17. Kołodziej B., Antonkiewicz J., Stachyra M., Bielińska E.J., Wiśniewski J., Luchowska K., Kwiatkowski C. Use of sewage sludge in bioenergy production – A case study on the effects on sorghum biomass production. European Journal of Agronomy, 69, 2015: 63–74. doi:10.1016/j.eja.2015.06.004, http://dx.doi.org/10.1016/j.eja.2015.06.004.
  • 18. Gondek K. Effect of fertilization with farmyard manure, municipal sewage sludge and compost from biodegradable waste on yield and mineral composition of spring wheat grain. Journal of Elementology. 2, 2012: 231–245. DOI: 10.5601/jelem.2012.17.2.06.
  • 19. Journal Of Laws 10. No. 137, item 924, Regulation of the Minister of the Environment of 13 July 2010 on municipal sewage sludge (in Polish).
  • 20. Journal U. of January 8, 2013, the Waste Act of December 14, 2012 (in Polish).
  • 21. Kęsik K., Jadczyszyn T. Placing on the market of liming materials and calcium-containing mineral fertilizers. Teaching materials, No. 98, 2012. Publisher IUNG-PIB, Puławy, pp. 27 (in Polish).
  • 22. Gondek K., Mierzwa M. Quantity and quality of organic matter in soil after application of various organic materials. Ecol. Chem. Eng. S., 21(3), 2014: 477–485. DOI: 10.2478/eces-2014–0035.
  • 23. Gondek K., Mierzwa-Hersztek M., Smreczak B., Baran A., Kopeć M., Mróz T., Janowski P., Bajda T., Tomczyk A. Content of PAHs, activities of γ-radionuclides and ecotoxicological assessment in biochars. Polish Journal of Chemical Technology. 18(4), 2016: 27–35. DOI: https://doi.org/10.1515/pjct-2016–0067.
  • 24. Harasimowicz-Hermann G., Hermann J. Mixtures of organic-mineral waste intended for use in agriculture. Th. I. Composition of waste and their mixtures. Zesz. Probl. Post. of Agricultural Sciences, 520, 2007A: 295–301(in Polish).
  • 25. Harasimowicz-Hermann G., Hermann J. Mixtures of organic-mineral waste intended for use in agriculture. Th. II. The use of waste mixtures for the fertilization of white mustard (Sinapis alba L.). Problem Journals of Advances in Agricultural Sciences, 520, 2007B: 303–312 (in Polish).
  • 26. Styp-Rekowski M., Hermann J. Uzdatnianie osadów ściekowych tlenkiem wapniowym przykładem recyklingu organicznego. Inżynieria i Aparatura Chemiczna, 5, 2008: 39–41.
  • 27. Loon G.W., Duffy S.J. Environmental Chemistry: A Global Perspective. Oxford University Press. 2005: 613.
  • 28. Harasimowicz-Hermann G., Hermann J. Comparison of the after-effect of cattle manure and compost from municipal sewage sludge „BIOTOP” in wheat cultivation. Problem Journals of Advances in Agricultural Sciences. 499, 2004: 89–96 (in Polish).
  • 29. Hermann J., Harasimowicz-Hermann G., Leszczyński M. The use of calcium fertilizers for hygienisation and treatment of municipal waste. Fertilizers and Fertilization, 2(27), 2006: 153–179 (in Polish).
  • 30. ISO 11269–1:2012. Soil quality – Determination of the effects of pollutants on soil flora – Part 1: Method for the measurement of inhibition of root growth.
  • 31. ISO 11269–2:2012. Soil quality – Determination of the effects of pollutants on soil flora – Part 2: Effects of contaminated soil on the emergence and early growth of higher plants.
  • 32. Persoone, G., Marsalek, B., Blinova, I., Törökne, A., Zarina, D., Manusadzianas, L., ... & Kolar, B. A practical and user-friendly toxicity classification system with microbiotests for natural waters and wastewaters. Environmental Toxicology: An International Journal, 18(6), 2003: 395–402.
  • 33. Baran S. Possibilities of using Grodan mineral wool to shape water properties of soils and land. Zesz. Prob. Post. Of Agricultural Sciences, 533, 2008: 15–19 (in Polish).
  • 34. Sirok, B., Blagojevic, B., & Bullen, P. Mineral wool: production and properties. Elsevier. 2008.
  • 35. Fertilization recommendations. Th. I. Limit numbers for the evaluation of the content of macro- and microelements in soils. Ed. IUNG, Puławy, 44, 1990, pp. 26. (in Polish).
  • 36. Sapek A., Sapek B. Utilization of phosphorus from sewage sludge in agriculture. Folia Uni. Agriculturae Stetinensis 200. Agricultura, 77, 1999: 331–336 (in Polish).
  • 37. Krzywy E., Wołoszyk Cz., Iżewska A. Assessment of suitability for fertilization of composts from sewage sludge from municipal sewage treatment plants. Th. I – yielding recultivation grass mixture in field cultivation.Folia Univ. Agric. Stein. Agricultura, 84, 2000a: 199–204.
  • 38. Aşık B.B., Katkat A.V. Evaluation of wastewater sludge for possible agricultural use. Environmental Engineering and Management Journal, 9(6), 2010: 819–826. http://omicron.ch.tuiasi.ro/EEMJ/.
  • 39. Singh R.P., Agrawal M. Potential benefits and risks of land application of sewage sludge. Waste Management, 28, 2008: 347–358 DOI: 10.1016/j.wasman.2006.12.010.
  • 40. Baran S., Wójcikowska-Kapusta A., Żukowska G., Szczepanowska I. The content of various forms of cadmium in light soil fertilized with sewage sludge. Problem Journals of Advances in Agricultural Sciences. 533, 2008: 59–64 (in Polish).
  • 41. Baran A., Wieczorek J. Application of geochemical and ecotoxicity indices for assessment of heavy metals content in soils, Archives of Environmental Protection. 41(2), 2015: 54–63. DOI: 10.1515/aep2015–0019.
  • 42. Mankiewicz-Boczek, J., Nałęcz-Jawecki, G., Drobniewska, A., Kaza, M., Sumorok, B., Izydorczyk, K., ... & Sawicki, J. Application of a microbiotests battery for complete toxicity assessment of rivers. Ecotoxicology and Environmental Safety. 71(3), 2008: 830–836.
  • 43. Gilewska, M., Otremba, K. Influence of reclamation treatments on the rate of soil-forming processes. Problem Journals of Advances in Agricultural Sciences. 506, 2005: 157–164 (in Polish).
  • 44. Gilewska, M., Plociniczak, A., Otremba, K. Effect of reclamation treatments on the enzymatic activity of power station ash dumps. Problem Journals of Advances in Agricultural Sciences. 515, 2006: 105–112 (in Polish).
  • 45. Ahmed H.Kh., Fawy H.A., Abdel-Hady E.S. Study of sewage sludge use in agriculture and its effect on plant and soil. Agriculture and Biology Journal of North America. 1(5), 2010: 1044–1049. DOI: 10.5251/abjna2010.1.5.1044.1049.
  • 46. Alvarenga P., Mourinha C., Farto M., Santos T., Palma P., Sengo J., Morais M.C., Cunha-Queda C. Sewage sludge, compost and other representative organic wastes as agricultural soil amendments: Benefits versus limiting factors. Waste Management. 40, 2015: 44–52. DOI: 10.1016/j.wasman.2015.01.027.
  • 47. Antonkiewicz J. The effect of furnace ash on crop yields and macroelement content in selected grass species. African Journal of Agricultural Research. 2(8), 2007: 374–379.
  • 48. Antonkiewicz J., Kołodziej B., Bielińska E. The use of reed canary grass and giant miscanthus in the phytoremediation of municipal sewage sludge. Environmental Science and Pollution Research. 23(10), 2016: 9505–9517. DOI: 10.1007/s11356016–6175–6.
  • 49. Antonkiewicz J., Michalak P., Targosz B. Application for a patent for the invention: “Method for the production of fertilizer from sewage sludge”. Application number P. 411157. The application for the invention was filed by the Agricultural University of Hugo Kołłątaja in Kraków, based in Kraków, HELIOCHEM based in Ciechocinek, Fabryka Papieru i Tektury “Beskidy” Spółka Akcyjna based in Wadowice. 2015 (in Polish).
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).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b1e5d606-d286-4df5-b2b7-c218a013b167
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.