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Wpływ fermentacji osadów ściekowych na mobilność metali ciężkich w oczyszczalni ścieków w miejscowości Sitkówka-Nowiny
Języki publikacji
Abstrakty
In sewage sludge, heavy metals can be dissolved, precipitated, co-precipitated with metal oxides, adsorbed or associated on particles of biological residue. Heavy metals come as oxides, hydroxides, sulphides, sulphates, phosphates, silicates, organic connections in the form of humic complexes, and compounds with complex sugars. Sequential extraction procedures based on Tessier et al. are widely used for examining sewage sludge. The method makes it possible to extract the following fractions that are operationally defined: exchangeable, bound to carbonates, reducible, oxidisable (bound to organic matter) and residual. For the investigations, communal sewage sludge was collected from mechanical-biological sewage treatment plant located in Sitkówka-Nowiny; the Świętokrzyskie Province, Poland. Heavy metal content [ppm] in the sewage sludge was collected before and after digestion process. After the digestion process, for a majority of metals, the content of reducible form is clearly decreased and the concentration of organic and residual fractions is increased. As a result of redistribution, copper, zinc and nickel mobility in the sludge decreased, and the strength of bond, measured with index IR increased for all metals.
Czasopismo
Rocznik
Tom
Strony
189--196
Opis fizyczny
Bibliogr. 12 poz., tab., wykr.
Twórcy
autor
- Kielce University of Technology
autor
- Kielce University of Technology
autor
- Kielce University of Technology
autor
- Kielce University of Technology
Bibliografia
- [1] Alvarez E.A., Mochón M.C., Jiménze Sánchez J.C., Rodríguez M.T.: Heavy metal extractable forms in sludge form wastewater treatment plants, Chemosphere 47 (2002), p. 765-775.
- [2] Weiner R.F., Matthews R.A.: Environmental Engineering, Elsevier Science, Burlington 2003.
- [3] Xiang L., Chan L.C., Wong J.W.C.: Removal of heavy metals from anaerobically digested sewage sludge by isolated indigenous iron-oxidizing bacteria, Chemosphere 41 (2000), p. 283-287.
- [4] Wilk M., Gworek B.: Heavy metals in sewage sludge, Ochrona Środowiska i Zasobów Naturalnych 39 (2009), p. 40-59 (in Polish).
- [5] Ming C., Xiao-Ming L., QI Y., Guang-Ming Z., Ying Z., De-Xiang L., Jing-Jin L., Jing-Mei H., Liang G.: Total concentration and speciation of heavy metals in sewage sludge from Changasha, Zhuzhou and Xiangtan in middle-south region of China, Journal of Hazardous Materials (160)2008, p. 324-329.
- [6] Joksič A.S., Katz S.A., Horvat M., Milačič R.: Comparison of single and sequential extraction procedures for assessing metal leaching from dredged coastal sediments, Water, Air, and Soil Pollution 162 (2005), p. 265-283.
- [7] Lopez-Sanchez J.F., Rubio R., Rauret G.: Comparison of two sequential extraction procedures for trace metal partitioning in sediments, International Journal of Environmental Analytical Chemistry 51 (1993), p. 113-121.
- [8] Filgueiras A.V., Lavilla I., Bendicho C.: Chemical sequential extraction for metal partitioning in environmental solid samples, Journal of Environmental Monitoring 4 (2002), p. 823-857.
- [9] Tessier A., Campbell P.G.C., Bisson M.: Sequential extraction procedure for the speciation of particulate trace metals, Analytical Chemistry, 51 (1979), p. 844-851.
- [10] Latosińska J., Gawdzik J.: Effect of incineration temperature on the mobility of heavy metals in sewage sludge ash, Environment Protection Engineering, 38(3) (2012), p. 31-44.
- [11] The Ordinance of the Minister of Environment of 06.02.2015 on the sewage sludge, Journal of Laws No. 257 (in Polish).
- [12] Han F.X., Banin A., Kingery W.L., Triplett G.B., Zhou L.X., Zheng S.J.: New approach to studies of heavy metal redistribution in soil, Advances in Environmental Research 8 (2003), p. 113-120.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6bd287ab-1b1d-4a08-895a-a1b1f791075c