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Effectiveness of Removal of Humic Substances and Heavy Metals from Landfill Leachates During their Pretreatment Process in the SBR Reactor


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Zadroga B, Olańczuk-Neyman K. Ochrona i rekultywacja podłoża gruntowego. Gdańsk: Wyd Politechniki Gdańskiej; 2001.Search in Google Scholar

Szyc J. Odcieki ze składowisk odpadów komunalnych. Warszawa: Instytut Ochrony Środowiska; 2003.Search in Google Scholar

Surmacz-Górska J. Degradacja związków organicznych zawartych w odciekach z wysypisk. Monografie Komitetu Inżynierii Środowiska PAN; Lublin: 2001.Search in Google Scholar

Rosik-Dulewska C. Podstawy gospodarki odpadami. Warszawa: Wyd Nauk PWN; 2006.Search in Google Scholar

Wenzel A, Gahr A, Niessner R. TOC-removal and degradation of pollutants in the leachate using a thin-film photoreactor. Water Res. 1999;33:937-946.10.1016/S0043-1354(98)00302-9Search in Google Scholar

Monje-Ramirez I, Orta de Velasquez MT. Removal and transformation of recalcitrant organic matter from stabilized saline landfill leachates by coagulation-ozonation coupling processes. Water Res. 2004;38:2358-2366.10.1016/j.watres.2004.02.011Search in Google Scholar

Ketchum LH. Design and physical features of sequencing bath reactors. Water Sci Techn. 1997;35:11-18.10.1016/S0273-1223(96)00873-6Search in Google Scholar

Grabińska-Łoniewska A, Korniłłowicz-Kowalska T, Wardzyńska G, Boryń K. Occurrence of fungi in water distribution system. Polish J Environ Stud. 2007;16:539-547.Search in Google Scholar

Klimiuk E, Wojnowska-Baryła I. The influence of hydraulic retention time on the effectiveness of phosphate compound removal in the Phoredox System. Zeszyty Naukowe Akademii Rolniczo-Technicznej w Olsztynie (Acta Academiae Agriculturae ac technical olstensis). 1996;21:21-40.Search in Google Scholar

BN-90-9567-18/08 Determination of humic acids by colorimetry method.Search in Google Scholar

PN-ISO-8288 2002. Jakość wody. Oznaczanie kobaltu, niklu, miedzi, cynku, kadmu i ołowiu. Metody atomowej spektrometrii absorpcyjnej z atomizacją w płomieniu.Search in Google Scholar

Sletten RS, Benjamin MM, Horng JJ, Ferguson JF. Physical-chemical treatment of landfill leachate for metals removal. Water Res. 1995;29:2376-2386.10.1016/0043-1354(95)00030-OSearch in Google Scholar

Urase T, Salequzzaman M, Kobayashi S, Matsuo T, Yamamoto T, Yamamoto K, Suzuki N. Effect of high concentration of organic and inorganic matters it landfill leachate on the treatment of heavy metals in very low concentration level. Water Sci Techn. 1997;36:349-356.10.2166/wst.1997.0464Search in Google Scholar

White C, Gadd GM. An internal sedimentation bioreactor for laboratory-scale removal of toxic metals from soil leachates using biogenic sulphide precipitation. J Industrial Microbiol Biotechnol. 1997;18:414-421.10.1038/sj.jim.2900406Search in Google Scholar

Jensen D, Christensen TH. Colloidal and dissolved metals in leachates from four Danish landfills. Water Res. 1999;33:2139-2147.10.1016/S0043-1354(98)00414-XSearch in Google Scholar

Calace N, Liberatori A, Petronio BM, Pietroletti M. Characteristics of different molecular weight fractions of organic matter in landfill leachate and their role in soil sorption of heavy metals. Environ Pollution. 2001;113:331-339.10.1016/S0269-7491(00)00186-XSearch in Google Scholar

Kalyuzhnyi S, Gladchenko M, Epov A, Appanna V. Removal of chemical oxygen demand, nitrogen, and heavy metals using a sequenced anaerobic-aerobic treatment of landfill leachates at 10-30°C. App. Biochem Biotechnol. 2003;109:181-196.10.1385/ABAB:109:1-3:181Search in Google Scholar

Ettler V, Matura M, Mihaljevič M, Bezdička P. Metal speciation and attenuation in stream waters and sediments contaminated by landfill leachate. Environl Geology. 2005;49:610-619.10.1007/s00254-005-0110-3Search in Google Scholar

Oygard JK, Gjengedal E, Royset O. Size charge fractionation of metals in municipal solid waste landfill leachate. Water Res. 2007;41(1):47-54.10.1016/j.watres.2006.09.02717101168Search in Google Scholar

Karwowska E. Usuwanie wybranych metali ciężkich ze ścieków przy zastosowaniu osadu czynnego. Warszawa: WN PW; 2000.Search in Google Scholar

ISSN:
1898-6196
Language:
English