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ECO-EFFICIENT RECOVERING OF VALUABLE IRON UNITS FROM METALLURGICAL WASTES
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References22
D.A. Humelnicu, M. Puţanu. Arcelor Mittal's Industrial Waste Management, Lucrările seminarului geografic “Dimitrie Cantemir” Nr. 32, 2011, pp.109-115;
T. Dinu . Impactul de mediu al depozitului - halda de zgură şi posibilitatea de ecologizare a acestuia, Lucrare de disertație, Universitatea „Dunărea de Jos” din Galați, 2013;
R.T. Jones, Economic and Environmentally Beneficial Treatment of Slags in DC Arc Furnaces , VII International Conference on Molten Slags, Fluxes and Salts, The South African Institute of Mining and Metallurgy, 2004, pp.363-376; Section Recycling
*** Research about Life in Heavy Metal Polluted Hazardous Industrial Dumps for the Preservation Of The Environment , ANCS Project, Romania -Austria bilateral cooperation 2009-2010, http://www.imnr.ro/Documente/DumpLife_EN.pdf;
M. Reuter, Y. Xiao, U. Boin. Recycling and Environmental Issues of Metallurgical Slags and Salt Fluxes , VII International Conference on Molten Slags Fluxes and Salts, The South African Institute of Mining and Metallurgy, 2004, pp.349-356;
I.Z. Yildirim, M. Prezzi. Chemical, Mineralogical, and Morphological Properties of Steel Slag, Advances in Civil Engineering, Volume 2011 (2011), http://www.hindawi.com/journals/;
*** Integrated pollution prevention and control. Draft refe rence document on best available techniques for the production of iron and steel, draft February 2008, http://eicppb.jrs.es;
R. Rainer, M.A. Aguado -Monsonet, S. Roudier, L. Delgado Sanch. Best Available Techniques (BAT) Reference Document for Iron and Steel Production. Industrial Emissions Directive 2010/75/EU (Integrated Pollution Prevention and Control), 2013, http://eippcb.jrc.ec.europa.eu/reference/BREF/IS_Adopted_03_2012.pdf;
Y. Sueoka, M. Sakakibara . Primary Phases and Natural Weathering of Sm elting Slag at anAbandoned Mine Site in Southwest Japan, Minerals 2013, 3, pp. 412 -426, www.mdpi.com/journal/minerals;
*** Verification of Steelmaking Slag Iron Content , Final Technical Progress Report, Institute of Materials Processing Michigan Tech nological University, September 30, 2006, http://www.ntis.gov/products/stoncd/docs/DE2006892748.pdf;
Vlcek, V. Tomkova, H. Ovcacikova, F. Ovcacik, M. Topinkova, V. Matejka . Slags from Steel Production: Properties and their Utilization, Metalurgija 52 (2013) 3, 329 - 333.
D.A. Humelnicu, M. Puţanu. Arcelor Mittal's Industrial Waste Management, Lucrările seminarului geografic “Dimitrie Cantemir” Nr. 32, 2011, pp.109-115;
T. Dinu . Impactul de mediu al depozitului - halda de zgură şi posibilitatea de ecologizare a acestuia, Lucrare de disertație, Universitatea „Dunărea de Jos” din Galați, 2013;
R.T. Jones, Economic and Environmentally Beneficial Treatment of Slags in DC Arc Furnaces , VII International Conference on Molten Slags, Fluxes and Salts, The South African Institute of Mining and Metallurgy, 2004, pp.363-376; Section Recycling
*** Research about Life in Heavy Metal Polluted Hazardous Industrial Dumps for the Preservation Of The Environment , ANCS Project, Romania -Austria bilateral cooperation 2009-2010, http://www.imnr.ro/Documente/DumpLife_EN.pdf;
M. Reuter, Y. Xiao, U. Boin. Recycling and Environmental Issues of Metallurgical Slags and Salt Fluxes , VII International Conference on Molten Slags Fluxes and Salts, The South African Institute of Mining and Metallurgy, 2004, pp.349-356;
I.Z. Yildirim, M. Prezzi. Chemical, Mineralogical, and Morphological Properties of Steel Slag, Advances in Civil Engineering, Volume 2011 (2011), http://www.hindawi.com/journals/;
*** Integrated pollution prevention and control. Draft refe rence document on best available techniques for the production of iron and steel, draft February 2008, http://eicppb.jrs.es;
R. Rainer, M.A. Aguado -Monsonet, S. Roudier, L. Delgado Sanch. Best Available Techniques (BAT) Reference Document for Iron and Steel Production. Industrial Emissions Directive 2010/75/EU (Integrated Pollution Prevention and Control), 2013, http://eippcb.jrc.ec.europa.eu/reference/BREF/IS_Adopted_03_2012.pdf;
Y. Sueoka, M. Sakakibara . Primary Phases and Natural Weathering of Sm elting Slag at anAbandoned Mine Site in Southwest Japan, Minerals 2013, 3, pp. 412 -426, www.mdpi.com/journal/minerals;
*** Verification of Steelmaking Slag Iron Content , Final Technical Progress Report, Institute of Materials Processing Michigan Tech nological University, September 30, 2006, http://www.ntis.gov/products/stoncd/docs/DE2006892748.pdf;
Vlcek, V. Tomkova, H. Ovcacikova, F. Ovcacik, M. Topinkova, V. Matejka . Slags from Steel Production: Properties and their Utilization, Metalurgija 52 (2013) 3, 329 - 333.
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