"Recycling Practices of Spent MgO-C Refractories"
written by Kyei-Sing Kwong, James P. Bennett,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.1 No.2, 2002
has been cited by the following article(s):
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[1] MgO-ZrO2 refractory ceramics based on recycled magnesia-carbon bricks
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[2] Recycling of refractory bricks used in basic steelmaking: A review
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[3] SPECIFICATION OF MgO− CONCENTRATE OBTAINED FROM POST MORTEM MgO–C REFRACTORY MATERIALS
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[4] Evaluation of recycled MgO-C bricks and dead-burned dolomite fines in setting slag foaming in the electric arc furnace
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[5] Characterisation of Refractory Ceramic Pressed Body Containing Industrial Waste
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[6] Spent Magnesia-Carbon Refractory Bricks from Steel Production: Potentiality of MgO-Clinker Recovery.
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[7] The effect of sintering time on recycled magnesia brick from kiln of the cement plant
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[8] Slag foaming practice in the steelmaking process
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[9] Catalytic graphitization behavior of phenolic resins by addition of in situ formed nano-Fe particles
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[10] Phase and microstructural evolution of low carbon MgO-C refractories with addition of Fe-catalyzed phenolic resin
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[11] Leaching behaviour of co-disposed steel making wastes: Effects of aeration on leachate chemistry and vanadium mobilisation
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[12] Evaluation of Secondary Steelmaking Slags and Their Relation with Steel Cleanliness
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[13] Castable systems designed with powders reclaimed from dismantled steel induction furnace refractory linings
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[14] Avaliação do potencial de reciclo do resíduo refratário MgO-C no processo de refino primário de uma aciaria elétrica
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[15] Recycling of steelworks refractories: processing and properties
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[16] Avaliação da camada protetora de silicato dicálcico em refratários doloma-C empregados na produção de aço
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[17] اثر استفاده از هگزامتافسفات سدیم بر خواص فیزیکی و مکانیکی دیرگدازهای یکپارچه تهیه شده ازضایعات آجرهای منیزیا-کربنی‎
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[18] Influence of phosphate binders on the physical and mechanical properties of magnesia carbon monolithics composed of recycled refractory aggregates
Ironmaking and Steelmaking, 2015
[19] GERAÇÃO E CLASSIFICAÇÃO DE RESÍDUOS REFRATÁRIOS EM USINA SIDERÚRGICA INTEGRADA
Revista de Gestão & Tecnologia, 2015
[20] Environmental analysis for identifying challenges to recover used reinforced refractories in industrial furnaces
Journal of Cleaner Production , 2015
[21] Recycling MgO–C refractories and dolomite fines as slag foaming conditioners: experimental and thermodynamic evaluations
Ceramics International , 2013
[22] Slag conditioning effects on MgO–C refractory corrosion performance
Ceramics International, 2013
[23] Recycling practices of crushed MgO–C bricks and dolomite sinter fines used as a slag conditioning additive in the EAF
WIT Transactions on Ecology and the Environment , 2012
[24] Chemical Interactions in Al 2 O 3–C/Fe System at 1823 K: Implications for Refractory Recycling
ISIJ international , 2012
[25] AVALIAÇÃO DE REUTILIZAÇÃO DE RESÍDUOS DE TIJOLOS REFRATÁRIOS MGO-C EM MASSAS REFRATÁRIAS SECAS
2012
[26] Chemical Interactions in Al2O3–C/Fe System at 1823 K: Implications for Refractory Recycling
ISIJ International, 2012
[27] Slag conditioner composition, process for manufacture and method of use in steel production
US Patent 7,914,599, 2011
[28] Thermodynamic simulations and isothermal solubility diagrams as tools for slag foaming control
Ceramics International, 2011
[29] Avaliação do potencial de reutilização de resíduos refratários em massas refratárias
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[30] Recovery of materials from recycling of spent furnace linings
2008
[31] Business Strategy of Climate Change: Empirical Study of the Steel Industry Sector
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[32] Recycling of spent refractories from metallurgical processing management and technological approach
2007
[33] Recycling MgO-C refractory in electric arc furnaces
Resources, conservation and recycling , 2006
[34] Expanding Supply for Fly Ash Derived Carbons
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