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RESEARCH PAPER

Processing of porous glass ceramics from highly crystallisable industrial wastes

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Pages S11-S16 | Received 23 Feb 2015, Accepted 28 Jun 2015, Published online: 28 Jul 2015

References

  • European Waste Catalogue 19-04-07, http://www.environment-agency.gov.uk/static/documents/GEHO1105BJVS-e-e.pdf.
  • J. Tim, http://www.environmental-expert.com/articles/the-use-of-thermal-plasma-technology-for-treating-air-pollution-control-residues-283230/view-comments, 2012, Waste Advantage Magazine. Date: 07.05.2015.
  • http://epp.eurostat.ec.europa.eu: ‘Municipal waste generation and treatment, by type of treatment method’, tsdpc240. Date: 15.11.2012.
  • H. K. Lam, A. W. M. Ip, J. P. Barford and G. McKay: ‘Use of incineration MSW ash: a review’, Sustainability, 2010, 2, 1943–1968.
  • E. Gomez, D. Amutha Rani, C. R. Cheeseman, D. E. Deegan, M. L. H. Wise and A. R. Boccaccini: ‘Thermal plasma technology for the treatment of wastes: a critical review’, J. Hazard. Mater., 2009, 161, 614–626.
  • R. D. Rawlings, J. P. Wu and A. R. Boccaccini: ‘Glass-ceramics: their production from wastes—a review’, J. Mater. Sci., 2006, 41, 733–761.
  • W. E. Lee, M. I. Ojovan, M. C. Stennett and N. C. Hyatt: ‘Immobilisation of radioactive waste in glasses, glass composite materials and ceramics’, Adv. Appl. Ceram., 2013, 105, 3–12.
  • R. K. Chinnam, A. A. Francis, J. Will, E. Bernardo and A. R. Boccaccini: ‘Review. Functional glasses and glass-ceramics derived from iron rich waste and combination of industrial residues’, J. Non-Cryst. Solids, 2013, 365, 63–74.
  • V. M. Garcia, G. Avila, S. Martinez, R. Terradas and J. M. Nogues: ‘Acoustic barriers obtained from industrial wastes’, Chemosphere, 2008, 72, 1098–1102.
  • A. V. P. Albertini, A. L. S. Reis, F. R. R. Telesh, J. C. Souza, J. L. RolimFilho and V. N. Freire: ‘The new flow system approach in packed bed reactor applicable for immobilized enzyme’, J. Mol. Catal. B, 2012, 79B, 1–7.
  • J. A. Roether, D. J. Daniel, D. A. Rani, D. E. Deegan, C. R. Cheeseman and A. R. Boccaccini: ‘Properties of sintered glass-ceramics prepared from plasma vitrified air pollution control residues’, J. Hazard. Mater., 2010, 173, 1177–1183.
  • R. K. Chinnam: ‘Functional glasses and glass-ceramics derived from industrial wastes’, 2014, Doctoral dissertation, University of Erlangen-Nuremberg, Erlangen, Germany.
  • G. W. Scherer: ‘Sintering of low-density glasses: I’, Theory, J. Am. Ceram. Soc., 1977, 60, 236–239.
  • M. J. Pascual, A. Duran and L. Pascual: ‘Sintering process of glasses in the system Na2O-B2O3-SiO2’, J. Non-Cryst. Solids., 2002, 306, 58–69.
  • C. R. Cheeseman, A. Makinde and S. Bethanis: ‘Properties of lightweight aggregate produced by rapid sintering of incinerator bottom ash’, Resour. Conserv. Recycl., 2005, 43, 147–162.
  • E. Bernardo: ‘Fast sinter-crystallization of a glass from waste materials’, J. Non-Cryst. Solids, 2008, 354, 3486–3490.
  • A. Karamanov and M. Pelino: ‘Induced crystallization porosity and properties of sintered diopside and wollastonite glass-ceramics’, J. Eur. Ceram. Soc., 2008, 28, 555–562.
  • E. Bernardo, R. Castellan and S. Hreglich: ‘Sintered glass-ceramics from mixtures of wastes’, Ceram. Int., 2007, 33, 27–33.
  • I. Ponsot and E. Bernardo: ‘Self glazed glass ceramic foams from metallurgical slag and recycled glass’, J. Clean. Prod., 2013, 59, 245–250.
  • R. K. Chinnam, A. R. Boccaccini, E. Bernardo and H. Epstein: ‘Glass-ceramic composites from borosilicate glass and alumina-rich residues’, Int. J. Appl. Ceram. Technol., 2015, 12, 19–27.
  • S. H. Hong and G. L. Messing: ‘Anisotropic grain growth in diphasic-gel-derived titania-doped mullite’, J. Am. Ceram. Soc., 1998, 81, 1269–1277.