Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Plants are used for wastewater treatment, which is a natural and ecological method. It is an alternative to conventional methods for wastewater from various sources. Because they take advantage of the capabilities of nature and naturally occurring adapted plants, they are characterized by their ability to carry out many processes and transformations that they carry out themselves and those occurring within them, such as in the aerobic and anaerobic zones of the root zone. Microorganisms present in the soil provide additional support for the vegetation, supporting the treatment processes. Due to the rising cost of wastewater treatment in typical wastewater treatment plants, the hydrophytic method is becoming competitive due to the low expenses associated with its operation and control. This method also works well for industrial wastewater, including tannery wastewater. Wastewater from the tanning industry is troublesome to manage and can also be a source of chromium, while studies have confirmed the possibility of treating such wastewater on plant beds.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
165--174
Opis fizyczny
Bibliogr. 37 poz. , rys., tab.
Twórcy
autor
- Białystok University of Technology, ul. Wiejska 45a, 15-351 Bialystok, Poland
autor
- Białystok University of Technology, ul. Wiejska 45a, 15-351 Bialystok, Poland
Bibliografia
- 1. Alemu A., Gabbiye N., Lemma B. 2021. Evaluation of tannery wastewater by integrating vesicular basalt with local plant species in a constructed wetland system. Frontiers in Environmental Science. 9, 721014.
- 2. Ascón-Aguilar E., Marrufo-Saldaña L., Neyra-Ascón W. 2019. Reduction of total chromium levels from raw tannery wastewater via electrocoagulation using response surface methodology, Journal of Ecological Engineering, 20(11), 217–224.
- 3. Bergier T., Czech A., Czupryński P., Łopata A., Wachniew P., Wojtał J. 2004. Plant-based wastewater treatment plants. A guide for municipalities. Natural Systems Publishing House, Cracow
- 4. Boruszko D., Dąbrowski W., Grygorczuk-Petersons E., Magrel L., Wiater J. 2014. Low-cost methods of wastewater treatment and sludge treatment. Construction and Environmental Engineering, 5, 135–142.
- 5. Calheiros C.S.C., Rangel A.O.S.S., Castro P.M.L. 2007. Constructed wetland systems vegetated with different plants applied to the treatment of tannery wastewater, Water Research 41(8), 1790–1798.
- 6. Calheiros C.S.C., Rangel A.O.S.S., Castro P.M.L. 2014. Constructed wetlands for tannery wastewater treatment in portugal: Ten years of experience, International Journal of Phytoremediation, 16(9), 859–870.
- 7. Celary P., Sobik-Szołtysek J. 2014. Vitrification of sludge from the tanning industry with cullet, Environmental Engineering and Protection, 17(3), 449–457.
- 8. de Souza T.D., Borges A.C., de Matos A.T., Mounteer A.H., de Queiroz M.E.L.R. 2017. Removal of chlorpyrifos insecticide in constructed wetlands with different plant species. Revista Brasileira de Engenharia Agrícola e Ambiental. 21(12), 878–883.
- 9. Dziadel M. 2022. Treatment of wastewater from the tanning industry by hydrophytic methods, Master’s thesis, Bialystok University of Technology, Bialystok.
- 10. Dziadel M., Ignatowicz K. 2022. Assessment of the quality of wastewater generated during production at a tannery plant, Journal of Ecological Engineering, 23(5), 109–115.
- 11. Famielec S. 2014. The process of burning tannery waste in a tunnel kiln as a method of its disposal. Rozporawa doktorska, Kraków.
- 12. Gajewska M. 2019. Hydrophytic beds with vertical wastewater flow. Characteristics of processes and applications. Published by the Polish Academy of Sciences, Monographs of the Committee on Environmental Engineering, Warsaw.
- 13. Giero M. 2012. Technological concept of a domestic sewage treatment plant, in Environmental Engineering - Young Eye, ed. Skoczko I., Bialystok, 1, 54–58.
- 14. Ignatowicz K., Puchlik M. 2011. Rotary Biological Contactor as Alternative for Small Amount of Wastewater Treatment. Rocznik Ochrona Środowiska, 13, 1385-1404.
- 15. Ignatowicz K., Puchlik M., Lozowicki J. 2020. Removal of Pesticides from Wastewater by the Use of Constructed Wetlands. Journal of Ecological Engineering, 21(1), 219-223.
- 16. Klodowska I.M. 2021. Environmentally friendly hydrophytic systems. Warmińsko-Mazurski Ośrodek Doradztwa Rolniczego based in Olsztyn. Olsztyn
- 17. Jóźwiakowski K. 2012. Studies on the effectiveness of wastewater treatment in selected soil-plant systems. Habilitation dissertation. Commission for Technical Infrastructure of Villages of the Polish Academy of Sciences, Krakow, Association Infrastruktura i Ekologia Terenów Wiejskich, Krakow.
- 18. Karczmarczyk A., Mosiej J. 2007. Efficiency of wastewater treatment in hydrophytic systems on the example of horizontal flow reed beds. ACTA Scientiarum Polonorum, Architectura, 6(4), 79–88.
- 19. Lofrano G., Meriç S., Zengin G.E., Orhon D. 2013. Chemical and biological treatment for leather tannery chemicals and wastewaters: A review, Science of the Total Environment, 461–462, 265–281.
- 20. May K., Koszelnik P. Hydrophytic treatment plants as a solution to wastewater problems in scattered housing developments. [n.r.], [n.m.], 91–101.
- 21. Malovanyy M., Palamarchuk O., Trach I., Petruk H., Sakalova H., Soloviy K., Vasylinych T., Tymchuk I., Vronksa N. 2020. Adsorption Extraciotn of Chromium Ions (III) with the Help of Bentonite Clays. Journal of Ecological Engineering, 21(7), 178–185.
- 22. Rahman M.E., Halmi M.I.E.B., Samad M.Y.B.A., Uddin M.K., Mahmud K., Shukor M.Y.A., Abdullah S.R.S., Shamsuzzaman S.M. 2020. Design, operation and optimization of constructed wetland for removal pollutant, International Journal of Environmental Research and Public Health, 17, 8339.
- 23. Mendrycka M., Stawarz M. 2012. Application of a biopreparation supporting the treatment of tannery wastewater with activated sludge, Ecological Engineering, 28, 43–56.
- 24. Obarska-Pempkowiak H., Gajewska M., Wojciechowska E. 2010. Hydrophytic treatment of water and wastewater. Wydawnictwo Naukowe PWN SA, Warsaw.
- 25. Olejnik D., Wolska M., Wojciechowski K. 2016. Evaluation of the efficiency of operation of selected hydrophytic systems. Technology and Product Quality, 61, 5–16.
- 26. Piecuch T., Andriyevska L., Dąbrowski J., Dąbrowski T., Jurasza B., Kowalczyk A. 2015. Treatment of wastewater from car repair stations. Yearbook of Environmental Protection, 17, 814–832.
- 27. Rydin S., Black M., Scalet B.M., Canova M. 2013. Best available techniques (BAT) reference document for: Leather tanning. Directive 2010/75/EU on industrial emissions (Integrated Pollution Prevention and Control).
- 28. Szalińska E. 2002. Chromium transformations in an aquatic environment polluted with tannery wastewater, Cracow University of Technology, Cracow.
- 29. Szymura M., Szymura T., Dunajski A., Bergier T. 2010. Plant-based treatment plants as a solution to wastewater problems in scattered housing facilities. Center for System Solutions, Provincial Fund for Environmental Protection and Water Management in Wroclaw, Sendzimir Foundation, Wroclaw.
- 30. Śliwka M. 2007. Application of laser stimulation of selected hydrophytes species to enhance their bioremediation capacity. Doctoral dissertation. Cracow.
- 31. Tang Z., Wood J., Smith D., Thapa A., Aryal N. 2021. A Review on Constructed Treatment Wetlands for Removal of Pollutants in the Agricultural Runoff. Sustainability, 13, 13578.
- 32. Tilley E., Ulrich L., Lüthi C., Reymond P., Zurbrügg C. 2014. Compedium of sanitation systems and technologies – 2nd revised edition. Swiss Federal Institute of Aquatic Science and Technology (Eawag), Duebendorf, Switzerland.
- 33. Vymazal J. 2014. Constructed wetlands for treatment of industrial wastewaters: A review. Ecological Engineering, 73, 724–751.
- 34. Warężak T., Myszograj S., Dera M. 2014. Efficiency of removal of organic and nutrient compounds in a hydrophytic bioreactor using a biopreparation. Journal of Civil, Environmental and Architectural Engineering, 31, 61(3/I/14), 387–399.
- 35. Wieczorek- Ciurowa K., Famielec S., Fela K., Woźny Z. 2010. The process of combustion of waste from the tanning industry, CHEMIK 2011, 65, 10, 917–922.
- 36. Younas A., Kumar L., Deitech M.J., Qureshi S.S., Shafiq J., Ali Naqvi S., Kumar A., Amjad A.Q., Nizamuddin S. 2022. Treatment of industrial wastewater in floating treatment wetland: A case study of sialkot tannery. Sustainability, 14, 12854
- 37. Zapana J.S.P., Arán D.S., Bocardo E.F., Harguinteguy C.A. 2020. Treatment of tannery wastewater in pilot scale hybrid constructed wetland system in Arequipa, Peru. International Journal of Environmental Science and Technology.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d8ad177b-f92c-4a3c-a99e-88c1cb207217
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