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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 51, 2016 - Issue 1
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ARTICLES

Solidified structure and leaching properties of metallurgical wastewater treatment sludge after solidification/stabilization process

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Pages 34-43 | Received 27 May 2015, Published online: 12 Oct 2015

References

  • Korać, M.; Kamberović, Ž. Characterization of wastewater streams from Bor site. Metalurgija-J. Metallurgy 2007, 13(1), 41–51.
  • Ilić, I.Z.; Živković, D.T.; Vušović, N.M.; Bogdanović, D.M. Investigation of the correlation dependence between SO2 emission concentration and meteorological parameters: Case study—Bor (Serbia). J. Environ. Sci. Health, Part A, 2010, 45(7), 901–907.
  • Orescanin, V.; Kollar, R. A combined CaO/electrochemical treatment of the acid mine drainage from the “Robule” Lake. J. Environ. Sci. Health, Part A, 2012, 47(8), 1186–1191.
  • Giannopoulou, I.; Panias, D. Copper and nickel recovery from acidic polymetallic aqueous solutions. Miner. Eng. 2007, 20(8), 753–760.
  • Waste catalogue. Rulebook on categories, testing and classification of waste, 56/10; Official Gazette of the Republic of Serbia: Belgrade, 2010; (in Serbian)
  • Conner, J.R.; Hoeffner, S.L. The history of stabilization/solidification technology. Crit. Rev. Environ. Sci. Technol. 1998, 28(4), 325–396.
  • Dermatas, D.; Meng, X. Utilization of fly ash for stabilization/solidification of heavy metal contaminated soils. Eng. Geol. 2003, 70(3-4), 377–394.
  • Camacho, L.M.; Munson-McGee, S.H. Anomalous transient leaching behavior of metals solidified/stabilized by pozzolanic fly ash. J. Hazard. Mater. 2006, 137(1), 144–151.
  • Singh, T.S.; Pant, K.K. Solidification/stabilization of arsenic containing solid wastes using portland cement, fly ash and polymeric materials. J. Hazard. Mater. 2006, 131(1–3), 29–36.
  • Chen, Q.; Zhang, L.; Ke, Y.; Hills, C.; Kang, Y. Influence of carbonation on the acid neutralization capacity of cements and cement-solidified/stabilized electroplating sludge. Chemosphere 2009, 74(6), 758–764.
  • Gineys, N.; Aouad, G.; Damidot, D. Managing trace elements in Portland cement – Part I: Interactions between cement paste and heavy metals added during mixing as soluble salts. Cement Concrete Comp. 2010, 32(8), 563–570.
  • Minocha, A.K.; Jain, N.; Verma, C.L. Effect of inorganic materials on the solidification of heavy metal sludge. Cement Concrete Res. 2003, 33(10), 1695–1701.
  • Diet, J.N.; Moszkowicz, P.; Sorrentino, D. Behaviour of ordinary Portland cement during the stabilization/ solidification of synthetic heavy metal sludge: macroscopic and microscopic aspects. Waste Manage. 1998, 18(1), 17–24.
  • Malviya, R.; Chaudhary, R. Factors affecting hazardous waste solidification /stabilization: A review. J. Hazard. Mater. 2006, 137(1), 267–276.
  • EN 12457-4:2002: Characterization of waste - Leaching - Compliance test for leaching of granular waste materials and sludges - Part 4: One stage batch test at a liquid to solid ratio of 10 l/kg for materials with particle size below 10 mm (without or with size reduction). CEN/TC 292 - Characterization of waste, 99/31/EC; European Committee of Standardization: Brussels, 2002.
  • Method 1311: Toxicity Characteristic Leaching Procedure (TCLP). Test Methods for Evaluating Solid Waste, Physical/Chemical Methods, EPA Publication SW-846; U.S. Environmental Protection Agency: Washington, DC, 1992.
  • Van der Sloot, H.A.; Heasman, L.; Quevauviller, Ph. Harmonization of Leaching/ Extraction Tests. Studies in environmental science; Elsevier Science: Amsterdam, 1997; 70, 292.
  • Mantis, I.; Voutsa, D.; Samara, C. Assessment of the environmental hazard from municipal and industrial wastewater treatment sludge by employing chemical and biological methods. Ecotox. Environ. Safe. 2005, 62(3), 397–407.
  • Koukouzas, N.; Ketikidis, C.; Itskos, G. Heavy metal characterization of CFB-derived coal fly ash. Fuel Process Technol. 2011, 92(3), 441–446.
  • Li, L.; Yu, C.; Bai, J.; Wang, Q.; Luo, Z. Heavy metal characterization of circulating fluidized bed derived biomass ash. J. Hazard. Mater. 2012, 233–234, 41–47.
  • Stegemann, J.A.; Zhou, Q. Screening tests for assessing treatability of inorganic industrial wastes by stabilisation/solidification with cement. J. Hazard. Mater. 2009, 161(1), 300–306.
  • Stegemann, J.A.; Cote, P.L. Summary of an investigation of test methods for solidified waste evaluation. Waste Manage. 1990, 10(1), 41–52.
  • Glass, G.K.; Buenfeld, N.R. Differential acid neutralisation analysis. Cement Concrete Res. 1999, 29(10), 1681–1684.
  • Glass, G.K.; Reddy, B.; Buenfeld, N.R. Corrosion inhibition in concrete arising from its acid neutralisation capacity. Corros. Sci. 2000, 42(9), 1587–1598.
  • Peyronnard, O.; Benzaazoua, M.; Blanc, D.; Moszkowicz, P. Study of mineralogy and leaching behavior of stabilized/solidified sludge using differential acid neutralization analysis: Part I: Experimental study. Cement Concrete Res. 2009, 39(7), 600–609.
  • Giampaolo, C.; Mastro, S.L.; Polettini, A.; Pomi, R.; Sirini, P. Acid neutralisation capacity and hydration behaviour of incineration bottom ash–Portland cement mixtures. Cement Concrete Res. 2002, 32(5), 769–775.
  • Coussy, S.; Benzaazoua, M.; Blanc, D.; Moszkowicz, P.; Bussière, B. Arsenic stability in arsenopyrite-rich cemented paste backfills: A leaching test-based assessment. J. Hazard. Mater. 2011, 185(2-3), 1467–1476.
  • Coussy, S.; Benzaazoua, M.; Blanc, D.; Moszkowicz, P.; Bussière, B. Assessment of arsenic immobilization in synthetically prepared cemented paste backfill specimens. J. Environ. Manage. 2012, 93(1), 10–21.
  • Chatain, V.; Benzaazoua, M.; Loustau Cazalet, M.; Bouzahzah, H.; Delolme, C.; Gautier, M.; Blanc, D.; de Brauer, C. Mineralogical study and leaching behavior of a stabilized harbor sediment with hydraulic binder. Environ Sci. Pollut. Res. 2013, 20(1), 51–59.
  • Polettini, A.; Pomi, R.; Sirini, P. Fractional factorial design to investigate the influence of heavy metals and anions on acid neutralization behavior of Cement-based products. Environ. Sci. Technol. 2002, 36(7), 1584–1591.
  • ASTM C109: Standard test method for compressive strength of hydraulic cement mortars (using 2-in. or [50-mm] cube specimens). Annual Book of ASTM Standards, Test Method ASTM C109 / C109M; American Society for Testing and Materials: West Conshohocken, Pennsylvania, 2001; 83–88.
  • Ivšić-Bajčeta, D.; Kamberović, Ž.; Korać, M.; Gavrilovski, M. Solidification/ stabilization process of wastewater treatment sludge from primary copper smelter. J. Serb. Chem. Soc. 2013, 78(5), 725–739.
  • Konsta-Gdoutos, M.S.; Shah, S.P. Hydration and properties of novel blended cements based on cement kiln dust and blast furnace slag. Cement Concrete Res. 2003, 33(8), 1269–1276.
  • Antiohos, S.; Tsimas, S. Activation of fly ash cementitious systems in the presence of quicklime: Part I. Compressive strength and pozzolanic reaction rate. Cement Concrete Res. 2004, 34(5), 769–779.
  • Antiohos, S.K.; Papadakis, V.G.; Chaniotakis, E.; Tsimas, S. Improving the performance of ternary blended cements by mixing different types of fly ashes. Cement Concrete Res. 2007, 37(6), 877–885.
  • Macías, F.; Caraballo, M.A.; Nieto, J.M. Environmental assessment and management of metal-rich wastes generated in acid mine drainage passive remediation systems. J. Hazard. Mater. 2012, 229–230, 107–114.
  • Voglar, G.E.; Leštan, D. Solidification/stabilisation of metals contaminated industrial soil from former Zn smelter in Celje, Slovenia, using cement as a hydraulic binder. J. Hazard. Mater. 2010, 178(1-3), 926–933.
  • Jing, C.; Meng, X.; Korfiatis, G.P. Lead leachability in stabilized/solidified soil samples evaluated with different leaching tests. J. Hazard. Mater. 2004, 114(1–3), 101–110.
  • Kim, A.G. The effect of alkalinity of Class F PC fly ash on metal release. Fuel 2006, 85(10-11), 1403–1410.
  • Poon, C.S.; Lio, K.W. The limitation of the toxicity characteristic leaching procedure for evaluating cement-based stabilised/solidified waste forms. Waste Manage. 1997, 17(1), 15–23.
  • Lampris, C.; Stegemann, J.A.; Cheeseman, C.R. Solidification/stabilisation of air pollution control residues using Portland cement: Physical properties and chloride leaching. Waste Manage. 2009, 29(3), 1067–1075.
  • Coz, A.; Andrés, A.; Soriano, S.; Viguri, J.R.; Ruiz, M.C.; Irabien, J.A. Influence of commercial and residual sorbents and silicates as additives on the stabilisation/solidification of organic and inorganic industrial waste. J. Hazard. Mater. 2009, 164(2–3), 755–761.
  • Chen, J.J.; Thomas, J.J.; Taylor, H.F.W.; Jennings, H.M. Solubility and structure of calcium silicate hydrate. Cement Concrete Res. 2004, 34(9), 1499–1519.
  • Antiohos, S.; Papageorgiou, A.; Tsimas, S. Activation of fly ash cementitious systems in the presence of quicklime. Part II: Nature of hydration products, porosity and microstructure development. Cement Concrete Res. 2006, 36(12), 2123–2131.

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