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The paper presents the research on how the effectiveness of removing organic substances is affected by the use of polyurethane foam fillings characterized by a varied porosity and the temperature of the process of treating landfill leachate in a biological sequencing batch reactor. The information on the conversion of organic compounds during the operation of the reactor was obtained by measuring the absorbance for selected wavelengths to describe the process of humification. It was found that the technological conditions used in the experiment affected the effectiveness of reducing the COD, but did not affect the type or amount of the humic substances in the leachate treated. In all of the variants examined, the COD decreased the as the humification level increased, and yet this relation was not linear in character.
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Tom
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75--82
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
- University of Rzeszow, Faculty of Biology and Agriculture, Department of Biological Basis of Agriculture and Environmental Education, Cwiklinskiej 1a St., 35-601 Rzeszow, Poland
autor
- University of Rzeszow, Faculty of Biology and Agriculture, Department of Biological Basis of Agriculture and Environmental Education, Cwiklinskiej 1a St., 35-601 Rzeszow, Poland
autor
- University of Rzeszow, Faculty of Biology and Agriculture, Department of Biological Basis of Agriculture and Environmental Education, Cwiklinskiej 1a St., 35-601 Rzeszow, Poland
Bibliografia
- 1. Chen, J., Gu, B., LeBooeuf, E., Pan, H., Dai, S., 2002. Spectroscopic characterization of the structural and functional properties of natural organicmatter fractions. Chemosphere, 48, 59-68.
- 2. Chmiel A. 2009. Wpływ biochemicznych przemian zanieczyszczeń na ich podatność na koagulację. Praca doktorska, Politechnika Wrocławska, Wydział Inżynierii Środowiska, Wrocław.
- 3. Grosser A., Jelonek P., Neczaj E. 2015. Trendy w oczyszczaniu odcieków składowiskowych. W: Interdyscyplinarne zagadnienia w inżynierii i ochronie środowiska 5 (red.) Wiśniewski J., Kutyłowska M., Trusz-Zdybek A., Oficyna Wydawnicza Politechniki Wrocławskiej.
- 4. Helms J.R., Stubbins A., Ritchie J.D., Minor E.C., Kieber D.J., Mopper K., 2008. Absorption spectra slopes and slope ratios as indicators of molecular weight, source, and photobleaching of chromophoric dissolved organic matter. Limnol.Oceanogr., 53, 955-969.
- 5. Koc-Jurczyk J. 2014. Removal of refractory pollutants from landfill leachate using two-phase system. Water Environtal Research, 86, 74-80.
- 6. Koc-Jurczyk J., Jurczyk Ł. 2017. Biological treatment of landfill leachate at elevated temperature in the presence of polyurethane foam of various porosity. Clean – Soil, Air, Water, 45, 1-8.
- 7. Krupińska I. 2012. Problemy związane z występowaniem substancji humusowych w wodach podziemnych. Inżynieria Środowiska, 28, 55-72.
- 8. Labanowski J., Pallier V., Feuillade-Cathalifaud G. 2010. Study of organic matter during coagulation and electrocoagulation processes: Application to a stabilized landfill leachate. Journal of Hazardous Materials, 179, 166-172.
- 9. Leszczyński J. 2014. Zastosowanie siarczanu żelaza(II) i nadtlenku wodoru do podczyszczania odcieków składowiskowych. Inżynieria Ekologiczna, 43, 75-79.
- 10. Li F., Wichmann K., Heine W. 2009. Treatment of the methanogenic landfill leachate with thin open channel reverse osmosis membrane modules. Waste Management, 29, 960-964.
- 11. Lim J.W., Seng C.E., Lim P.E., Ng S.L., Sujari A.N.A. 2011. Nitrogen removal in moving bed sequencing batch reactor using polyurethane foam cubes of various sizes as carrier materials. Bioresource Technology, 102, 9876-9883.
- 12. Masłoń A., Tomaszek J. A. 2015 A study on the use of the BioBall® as a biofilm carrier in a sequencing batch reactor, Bioresource Technology, 196, 577-585.
- 13. Oloibiri V., Ufomba I., Chys M., Audenaert W.T.M., Demeestere K., van Hulle S.W.H. 2015. A comparative study on the efficiency of ozonation and coagulation–flocculation as pretreatment to activated carbon adsorption of biologically stabilized landfill leachate. Waste Management, 43, 335-342.
- 14. Pi K.W., Gao L.X., Fan M.X., Gong W.Q., Wan D.J. 2009. Two-stage biodegradation coupled with ultrafiltration for treatment of municipal landfill leachate. Process Safiety and Environmental Protection, 87, 336-342.
- 15. PN-ISO 6060:2006 Jakość wody – Oznaczanie chemicznego zapotrzebowania tlenu/ Water quality – Determination of chemical oxygen demand.
- 16. Qi G., Yue D., Nie Y. 2012. Characterization of humic substances in bio-treated municipal solid waste landfill leachate. Frontiers of Environmental Science & Engineering, 6, 711-716.
- 17. Renou S., Poulain S., Givaudan J.G., Moulin P. 2009. Amelioration of ultrafiltration process by lime treatment: Case of landfill leachate. Desalination, 249, 72-82.
- 18. Yan M., Wang D., Korshin G.V., Benedetti M.F. 2013. Quantifying metal ions binding onto dissolved organic matter using log-transformed absorbance spectra. Water Research, 47, 2603-2611.
- 19. Zhou M., Meng F. 2015. Using UV-vis absorbance spectral parameters to characterize the fouling propensity of humic substances during ultrafiltration. Water Research, 87, 311-319.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9bff2b2a-b70f-4b79-bf8a-b1cadd33fd9e