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Tytuł artykułu

Agricultural use of wastewater sludge from various sources with special emphasis on total and DTPA-extractable heavy metal content

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study was conducted to evaluate wastewater sludge from various sources for agricultural utilization. The results showed that sludge from municipal and food industrial wastewater treatment plants (WWTPs) have high fertilizing value with respect to nutrients and organic matter levels. When the sludge samples were evaluated for their total heavy metal contents, the Pb, Cd and Cu concentrations in all of the sludge samples were found to be below the limit specified by Turkish regulations. However, the Cr, Ni and Zn contents of domestic type, organized industrial zone, food industry sludge samples exceeded these thresholds. Other sludges were found to be suitable for agricultural usage in terms of plant nutrient and heavy metal content. The analysis of the sludge samples from twelve different WWTP’s showed that the agricultural properties and the total and bioavailable (DTPA-extractable) heavy metal fraction varies depending on the sludge samples. Therefore discussed sludges should be evaluated separately for the agricultural utilization potential in terms of soil pollution.
Rocznik
Strony
45--58
Opis fizyczny
Bibliogr. 25 poz., tab.
Twórcy
autor
  • Uludag University, Faculty of Agriculture, Department of Soil Science and Plant Nutrition, Bursa, Turkey
autor
  • Uludag University, Faculty of Agriculture, Department of Soil Science and Plant Nutrition, Bursa, Turkey
  • Uludag University, Faculty of Engineering and Architecture, Department of Environmental Engineering, Bursa, Turkey
autor
  • Uludag University, Faculty of Agriculture, Department of Soil Science and Plant Nutrition, Bursa, Turkey
Bibliografia
  • [1] LU Q., HE L.Z., STOFFELLA P.J., Land application of biosolid in the USA. A Review, Appl. Environ. Soil Sci., 2012, Paper ID 201462
  • [2] EPSTEIN E., Land Application of Sewage Sludge and Biosolids, CRC Press, Boca Raton, Florida, 2003.
  • [3] KELLEY W.D., MARTENS D.C., RENEAU R.B., SIMPSON T.W., Agricultural Use of Sewage Sludge. A Lit-erature Review, Bull. 143, Polytechnic Institute and State University Blacksburg, Water Resources Re-search Center Publishing House, Virginia 1984.
  • [4] ALONSO E., VILLAR P., SANTOS A., APARICIA I., Fractionation of heavy metals in sludge from anaerobic wastewater stabilization ponds in southern Spain, Waste Manage., 2006, 26, 1270.
  • [5] GARCÍA-DELGADO M., RODRÍGUEZ-CRUZ M.S., LORENZO L.F., ARIENZO M., SÁNCHEZ-MARTÍN M.J., Seasonal and time variability of heavy metal content and of its chemical forms in sewage sludges from different wastewater treatment plants, Sci. Total Environ., 2007, 382, 82.
  • [6] WONG J.W.C., LI K., FANG M., SU D.C., Toxicity evaluation of sewage sludges in Hong Kong, Environ. Int., 2001, 27, 373.
  • [7] SMITH S.R., Agricultural Recycling of Sewage Sludge and the Environment, Oxford University Press, USA, 1996.
  • [8] PARKPAIN P., LEONG S.T., LAORTANAKUL P., TOROTORO J.L., Influence of salinity and acidity on bio-availability of sludge-borne heavy metals. A case study of Bangkok municipal sludge, Water Air Soil Poll., 2002, 139, 43.
  • [9] OTTAVIANI M., DE FULVIO S., Availability of heavy metals from sewage sludge and its possible impact on regulatory activity in Italy, Ann. Dell. Super. Sanita, 1991, 27 (4), 665.
  • [10] JACOBS L.W., MCGREARY D.S., Utilizing biosolids on agricultural land, Department of Crop and Soil Science, Michigan State University, Extension Bulletin, 2001.
  • [11] TANJI K.K., Salinity in the soil environment, [in:] A. Läuchli, U. Lüttge (Eds.), Salinity. Environment – Plants – Molecules, Kluwer Academic Publishers, 2002, 21–51.
  • [12] SINGH R.P., AGRAWAL M., Potential benefits and risks of land application of sewage sludge, Waste Manage., 2008, 28, 347.
  • [13] GARAU M.A., FELIPO M.T., RUIZ DE VILLA M.C., Nitrogen mineralization of sewage sludges in soils, J. Environ. Qual., 1986, 15 (3), 225.
  • [14] MARY B., RECOUS S., DARWIS D., ROBIN D., Interactions between decomposition of plant residues and nitrogen cycling in soil, Plant Soil, 1996, 181, 71.
  • [15] FACELLI J.M., PICKETT S.T.A., Plant Litter. Its Dynamics and Effects on Plant Community Structure, Bot. Rev., 1991, 57, 1.
  • [16] HERMS D.A., LLOYD J.E., STINNER B.R., Effects of organic mulches and fertilization on microbial activity, nutrient availability and growth of river birch, [in:] F.C. Michel, R. Rynk, H.A.J. Hoitink (Eds.), Proc. International Symposium Composting and Compost Utilization, Ohio State University, US 2002, 787.
  • [17] HENRY C., SULLIVAN D., RYNK R., DORSEY K., COGGER C., Managing nitrogen from biosolids, Washington State Department of Ecology and Northwest Biosolids Management Association, Ecology Publication, 1999.
  • [18] CRIPPS R.W., WINFREE S.K., REAGAN J.L., Effects of sewage sludge application method on corn production, Commun. Soil Sci. Plant, 1992, 23 (15–16), 1705.
  • [19] Regulation on the use of domestic and urban wastewater sludge in soil, Official Newspaper, 27 661, 2010, Turkey (in Turkish).
  • [20] NAIR A., JUWARKAR A.A., DEVOTTA S., Study of speciation of metals in an industrial sludge and evaluation of metal chelators for their removal, J. Hazard. Mater., 2008, 152, 545.
  • [21] ALONSO E., APARICIO I., SANTOS J.L., VILLAR P., SANTOS A., Sequential extraction of metals from mixed and digested sludge from aerobic WWTPs situated in the south of Spain, Waste Manage., 2009, 29, 418.
  • [20] ALVAREZ E.A., MOCHÓN M.C., JIMÉNEZ SÁNCHEZ J.C., RODRÍGUEZ M.T., Heavy metal extractable forms in sludge from wastewater treatment plants, Chemosphere, 2002, 47 (7), 765.
  • [23] LEGRET M., Speciation of heavy metals in sewage sludge and sludge-amended soil, Int. J. Environ. Anal. Chem., 1993, 51 (1–4), 161.
  • [24] PEREZ-CID B., LAVILLA I., BENDICHO C., Comparison between conventional and ultrasound accelerated Tessier sequential extraction schemes for metal fractionation in sewage sludge, Fresenius J. Anal. Chem., 1996, 363, 667.
  • [25] FERNANDEZ-ALBORES A., PEREZ-CID B., FERNANDEZ-GOMES E., FALQUE-LOPEZ E., Comparison be-tween sequential extraction procedures and single extractions for metal partitioning in sewage sludge samples, Analyst, 2000, 125, 1353.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-94d9dc40-47ce-48e4-9222-5eaa1ffd0449
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