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Original Articles

Alkali-Activated Steel Slag-Based Mesoporous Material as a New Photocatalyst for Degradation of Dye from Wastewater

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Pages 8-17 | Received 05 Aug 2014, Accepted 31 Dec 2014, Published online: 17 Aug 2015

References

  • L. Andreas, S. Diener, A. Lagerkvist, et al. Steel slags in a landfill top cover - Experiences from a full-scale experiment. Waste Manage. 34, 692–701 (2014).
  • A. Altun and I. Yılmaz, Study on steel furnace slags with high MgO as additive in Portland cement. Cem. Concr. Res. 32, 1247–1249 (2002).
  • P.Y. Mahieux, J.E. Aubert, G. Escadeillas, et al. Utilization of weathered basic oxygen furnace slag in the production of hydraulic road binders. Constr. Build. Mater. 23, 742–747 (2009).
  • Z.Y. Wang, J.Y. Qi, Y. Feng, K. Li, X. Li, et al. Preparation of catalytic particle electrodes from steel slag and its performance in a three-dimensional electrochemical oxidation system. J. Ind. Eng. Chem. 20, 3672–3677 (2014).
  • Y.J. Zhang, L.C. Liu, Y. Xu, Y.C. Wang, D.L. Xu, et al. A new alkali-activated steel slag-based cementitious material for photocatalytic degradation of organic pollutant from waste water. J. Hazard. Mater. 209–201, 146–150 (2012).
  • H. Beshr, A.A. Almusallam, M. Maslehuddin, et al. Effect of coarse aggregate quality on the mechanical properties of high strength concrete. Constr. Build. Mater. 17, 97–103 (2003).
  • W.G. Shen, M.K. Zhou, W. Ma, J.Q. Hu, Z. Cai, et al. Investigation on the application of steel slag - fly ash - phosphogypsum solidified material as road base material. J. Hazard. Mater. 164, 99–104 (2009).
  • R.M. Santos, J.V. Bouwel, E. Vandevelde, G. Mertens, J. Elsen, T.V. Gerven, et al. Accelerated mineral carbonation of stainless steel slags for CO2 storage and waste valorization: Effect of process parameters on geochemical properties. Int. J. Greenh. Gas Con. 17, 32–45 (2013).
  • Q. Wang, P.Y. Yan, J.W. Yang, B. Zhang, et al.Influence of steel slag on mechanical properties and durability of concrete. Constr. Build. Mater. 47, 1414–1420 (2013).
  • V. Ducman, A. Mladenovic, et al. The potential use of steel slag in refractory concrete. Mater. Charact. 62, 716–723 (2011).
  • C.S. Gahan, M.L. Cunha, A. Sandstrom, et al. Comparative study on different steel slags as neutralising agent in bioleaching. Hydrometallurgy. 95, 190–197 (2009).
  • Z.J. Wu, H.F. Yue, L.S. Li, B.F. Jiang, X.R. Wu, P. Wang, et al. Synthesis and electrochemical properties of multi-doped LiFePO4/C prepared from the steel slag. J. Power Sources. 195, 2888–2893 (2010).
  • V.K. Jha, Y. Kameshima, A. Nakajima, K. Okada, et al. Utilization of steel-making slag for the uptake of ammonium and phosphate ions from aqueous solution. J. Hazard. Mater. 156, 156–162 (2008).
  • P.Y. Mahieux, J.E. Aubert, G. Escadeillas, et al. Utilization of weathered basic oxygen furnace slag in the production of hydraulic road binders. Constr. Build. Mater, 23, 742–747 (2009).
  • K.V. Kumar, S. Sivanesan, V. Ramamurthi, et al. Adsorption of malachite green onto Pithophora sp. a fresh water algae: Equilibrium and kinetic modelling. Process Biochem. 40, 2865–2872 (2005).
  • R. Ahmad and R. Kumar, Adsorption studies of hazardous malachite green onto treat ginger waste. J. Environ. Manage. 91, 1032–1038 (2010).
  • S. Arellano-Cardenas, S. Lopez-Cortez, M. Cornejo-Mazon, J.C. Mares-Gutierrez, et al. Study of malachite green adsorption by organically modified clay using a batch method. Appl. Surf. Sci. 280, 74–78 (2013).
  • S. Srivastava, R. Sinha, D. Roy, et al. Toxicological effects of malachite green. Aquat. Toxicol. 66, 319–329 (2004).
  • A.K. Sarkara, A. Pala, S. Ghoraia, N.R. Mandreb, S. Pala, et al. Efficient removal of malachite green dye using biodegradable graft copolymer derived from amylopectin and poly (acrylic acid). Carbohyd. Polym. 111, 108–115 (2014).
  • K. Sagoe-Crentsil and L. Weng, Dissolution processes, hydrolysis and condensation reactions during geopolymer synthesis. Part. High Si/Al ratio systems. J. Mater. Sci. 42, 3007–3014 (2007).

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