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Download SLAG-FS 1.1 - A free music-playing sidebar gadget. The name SLAG-FS stands Simple Little Audio Gadget Full Screen. SLAG-FS is a modified version of SLAG, a
Slag/What is Slag/uses of Slag - YouTube
Worldsteel Association (2019) Steel statistical yearbook. Accessed 9 Mar 2021Worldsteel Association (2018) Steel industry co-products. Accessed 23 May 2020Worldsteel Association (2011) Steel statistical yearbook. Accessed 23 May 2020Makhija D, Rath RK, Chakravarty K, Patra AS, Mukherjee AK, Dubey AK (2016) Phosphorus partitioning and recovery of low-phosphorus iron-rich compounds through physical separation of Linz–Donawitz slag. Int J Miner Metall Mater 23(7):751–759. CAS Google Scholar Guo J, Bao Y, Wang M (2018) Steel slag in China: treatment, recycling, and management. Waste Manag 78:318–330. Google Scholar Kambole C, Paige-Green P, Kupolati WK, Ndambuki JM, Adeboje AO (2017) Basic oxygen furnace slag for road pavements: a review of material characteristics and performance for effective utilisation in southern Africa. Constr Build Mater 148:618–631. CAS Google Scholar Kanda K, Morisita S, Hamasaki T (2013) Pressurized steam aging process for steel slag. In: SEAISI conference, 2013.Meshram RB, Kumar S, Nath SK, Alex TC, Sahoo DP, Venugopalan T (2017) Pressurised vessel design for hydration of free calcium oxide bearing slag.Han F, Zhang Z, Wang D, Yan P (2015) Hydration heat evolution and kinetics of blended cement containing steel slag at different temperatures. Thermochim Acta 605:43–51. CAS Google Scholar Kriskova L, Eroli M, Iacobescu RI, Onisei S, Vecchiocattivi F, Pontikes Y (2018) Transformation of stainless steel slag toward a reactive cementitious binder. J Am Ceram Soc 101:1727–1736. CAS Google Scholar Wang Q, Yan P, Feng J (2011) A discussion on improving hydration activity of steel slag by altering its mineral compositions. J Hazard Mater 186:1070–1075. CAS Google Scholar Qiang W, Mengxiao S, Jun Y (2016) Influence of classified steel slag with particle sizes smaller than 20 μm on the properties of cement and concrete. Constr Build Mater 123:601–610. CAS Google Scholar Alanyali H, Çol M, Yilmaz M, Karagöz Ş (2009) Concrete produced by steelmaking slag (basic oxygen furnace) addition in portland cement. Int J Appl Ceram Technol 6:736–748. CAS Google Scholar Zhang T, Yu Q, Wei J, Li J, Zhang P (2011) Preparation of high performance blended cements and reclamation of iron concentrate from basic oxygen furnace steel slag. Resour Conserv Recycl 56:48–55. Google Scholar Menad N, Kanari N, Save M (2014) Recovery of high grade iron compounds from LD slag by enhanced magnetic separation techniques. Int J Miner Process 126:1–9. CAS Google Scholar Fang H, Hwang J, Xue G, Lu L, Liu Y (2014) Concrete of steel slag composite for paved road and its hydration microstructure. In: Carpenter JS, Bai C, Hwang JY, Ikhmayies S, Li B, Monteiro SN, Peng Z, Zhang M (eds) Characterization of Minerals, Metals, and Materials 2014, TMS. pp 121–130Zhao J, Wang D, Yan P, Zhang D, Wang H (2016) Self-cementitious property of steel slag powder blended with gypsum. Constr Build Mater 113:835–842. CAS Download SLAG-FS 1.1 - A free music-playing sidebar gadget. The name SLAG-FS stands Simple Little Audio Gadget Full Screen. SLAG-FS is a modified version of SLAG, a slag download for Windows. This is the Windows app named slag whose latest release can be downloaded as slag-1.5.0.zip. It can be run online in the free hosting provider OnWorks for workstations. Download and run online this app named slag with OnWorks for free. Google Scholar Wang Q, Yan P (2010) Hydration properties of basic oxygen furnace steel slag. Constr Build Mater 24:1134–1140. Google Scholar Duda A (1989) Hydraulic reactions of LD steelwork slags. Cem Concr Res 19:793–801Article CAS Google Scholar Kriskova L, Pontikes Y, Cizer Ö, Mertens G, Veulemans W, Geysen D, Jones PT, Vandewalle L, Van Balen K, Blanpain B (2012) Effect of mechanical activation on the hydraulic properties of stainless steel slags. Cem Concr Res 42:778–788. CAS Google Scholar Gupta A (2019) Use of LD slag in blended cement by altering the reactivity and its influence on hydraulic and mechanical behaviour. (M Tech Thesis). National Institute of Technology, Jamshedpur, IndiaWang Q, Yang J, Yan P (2013) Cementitious properties of super-fine steel slag. Powder Technol 245:35–39. CAS Google Scholar Engström F, Adolfsson D, Yang Q, Samuelsson C, Björkman B (2010) Crystallization behaviour of some steelmaking slags. Steel Res Int 81:362–371. CAS Google Scholar Reddy AS, Pradhan RK, Chandra S (2006) Utilization of basic oxygen furnace (BOF) slag in the production of a hydraulic cement binder. Int J Miner Process 79:98–105Article CAS Google Scholar Kriskova L, Pontikes Y, Pandelaers L, Cizer Ö, Jones PT, Van Balen K, Blanpain B (2013) Effect of high cooling rates on the mineralogy and hydraulic properties of stainless steel slags. Metall Mater Trans B 44:1173–1184. CAS Google Scholar Li J, Yu Q, Wei J, Zhang T (2011) Structural characteristics and hydration kinetics of modified steel slag. Cem Concr Res 41:324–329. CAS Google Scholar Ferreira Neto JB, Faria JOG, Fredericci C, Chotoli FF, Silva ANL, Ferraro BB, Ribeiro TR, Malynowskyj A, Quarcioni VA, Lotto AA (2016) Modification of molten steelmaking slag for cement application. J Sustain Metall 2:13–27. Google Scholar Murphy JN, Meadowcroft TR, Barr PV (1997) Enhancement of the cementitious properties of steelmaking slag. Can Metall Q 36:315–331. CAS Google Scholar Su TH, Yang HJ, Lee YC, Shau YH, Takazawa E, Lin MF, Mou JL, Jiang WT (2016) Reductive heating experiments on BOF-Slag: simultaneous phosphorus re-distribution and volume stabilization for recycling. Steel Res Int 87:1511–1526. CAS Google Scholar Chaudhary PN, Kumar P, Kumar S, Mishra IB (2016) Scaling up of process developed for utilization of LD slag as flux. CSIR-National Metallurgical Laboratory, Jamshedpur (Report CLP-139).Chaudhary PN, Pal J, Singh D, Prasad S, Singh M (2014) Utilization of LD slag as flux. CSIR-National Metallurgical Laboratory, Jamshedpur (Investigation Report No. CLP-126).Kumar P, Singh SD, Chaudhary PN, Mishra IB, Mehta KD (2017) Production of DELF in bulk for recycling. Internal Report. CLP-164, CSIR-National Metallurgical Laboratory, Jamshedpur, IndiaHou J, Liu Q, Liu J, Wu Q (2018) Material properties of steel slag-cement binding materials prepared by precarbonated steel slag. J Mater Civ Eng 30:1–10. Google Scholar Kumar S, Sahoo DP, Nath SK, AlexComments
Worldsteel Association (2019) Steel statistical yearbook. Accessed 9 Mar 2021Worldsteel Association (2018) Steel industry co-products. Accessed 23 May 2020Worldsteel Association (2011) Steel statistical yearbook. Accessed 23 May 2020Makhija D, Rath RK, Chakravarty K, Patra AS, Mukherjee AK, Dubey AK (2016) Phosphorus partitioning and recovery of low-phosphorus iron-rich compounds through physical separation of Linz–Donawitz slag. Int J Miner Metall Mater 23(7):751–759. CAS Google Scholar Guo J, Bao Y, Wang M (2018) Steel slag in China: treatment, recycling, and management. Waste Manag 78:318–330. Google Scholar Kambole C, Paige-Green P, Kupolati WK, Ndambuki JM, Adeboje AO (2017) Basic oxygen furnace slag for road pavements: a review of material characteristics and performance for effective utilisation in southern Africa. Constr Build Mater 148:618–631. CAS Google Scholar Kanda K, Morisita S, Hamasaki T (2013) Pressurized steam aging process for steel slag. In: SEAISI conference, 2013.Meshram RB, Kumar S, Nath SK, Alex TC, Sahoo DP, Venugopalan T (2017) Pressurised vessel design for hydration of free calcium oxide bearing slag.Han F, Zhang Z, Wang D, Yan P (2015) Hydration heat evolution and kinetics of blended cement containing steel slag at different temperatures. Thermochim Acta 605:43–51. CAS Google Scholar Kriskova L, Eroli M, Iacobescu RI, Onisei S, Vecchiocattivi F, Pontikes Y (2018) Transformation of stainless steel slag toward a reactive cementitious binder. J Am Ceram Soc 101:1727–1736. CAS Google Scholar Wang Q, Yan P, Feng J (2011) A discussion on improving hydration activity of steel slag by altering its mineral compositions. J Hazard Mater 186:1070–1075. CAS Google Scholar Qiang W, Mengxiao S, Jun Y (2016) Influence of classified steel slag with particle sizes smaller than 20 μm on the properties of cement and concrete. Constr Build Mater 123:601–610. CAS Google Scholar Alanyali H, Çol M, Yilmaz M, Karagöz Ş (2009) Concrete produced by steelmaking slag (basic oxygen furnace) addition in portland cement. Int J Appl Ceram Technol 6:736–748. CAS Google Scholar Zhang T, Yu Q, Wei J, Li J, Zhang P (2011) Preparation of high performance blended cements and reclamation of iron concentrate from basic oxygen furnace steel slag. Resour Conserv Recycl 56:48–55. Google Scholar Menad N, Kanari N, Save M (2014) Recovery of high grade iron compounds from LD slag by enhanced magnetic separation techniques. Int J Miner Process 126:1–9. CAS Google Scholar Fang H, Hwang J, Xue G, Lu L, Liu Y (2014) Concrete of steel slag composite for paved road and its hydration microstructure. In: Carpenter JS, Bai C, Hwang JY, Ikhmayies S, Li B, Monteiro SN, Peng Z, Zhang M (eds) Characterization of Minerals, Metals, and Materials 2014, TMS. pp 121–130Zhao J, Wang D, Yan P, Zhang D, Wang H (2016) Self-cementitious property of steel slag powder blended with gypsum. Constr Build Mater 113:835–842. CAS
2025-04-15Google Scholar Wang Q, Yan P (2010) Hydration properties of basic oxygen furnace steel slag. Constr Build Mater 24:1134–1140. Google Scholar Duda A (1989) Hydraulic reactions of LD steelwork slags. Cem Concr Res 19:793–801Article CAS Google Scholar Kriskova L, Pontikes Y, Cizer Ö, Mertens G, Veulemans W, Geysen D, Jones PT, Vandewalle L, Van Balen K, Blanpain B (2012) Effect of mechanical activation on the hydraulic properties of stainless steel slags. Cem Concr Res 42:778–788. CAS Google Scholar Gupta A (2019) Use of LD slag in blended cement by altering the reactivity and its influence on hydraulic and mechanical behaviour. (M Tech Thesis). National Institute of Technology, Jamshedpur, IndiaWang Q, Yang J, Yan P (2013) Cementitious properties of super-fine steel slag. Powder Technol 245:35–39. CAS Google Scholar Engström F, Adolfsson D, Yang Q, Samuelsson C, Björkman B (2010) Crystallization behaviour of some steelmaking slags. Steel Res Int 81:362–371. CAS Google Scholar Reddy AS, Pradhan RK, Chandra S (2006) Utilization of basic oxygen furnace (BOF) slag in the production of a hydraulic cement binder. Int J Miner Process 79:98–105Article CAS Google Scholar Kriskova L, Pontikes Y, Pandelaers L, Cizer Ö, Jones PT, Van Balen K, Blanpain B (2013) Effect of high cooling rates on the mineralogy and hydraulic properties of stainless steel slags. Metall Mater Trans B 44:1173–1184. CAS Google Scholar Li J, Yu Q, Wei J, Zhang T (2011) Structural characteristics and hydration kinetics of modified steel slag. Cem Concr Res 41:324–329. CAS Google Scholar Ferreira Neto JB, Faria JOG, Fredericci C, Chotoli FF, Silva ANL, Ferraro BB, Ribeiro TR, Malynowskyj A, Quarcioni VA, Lotto AA (2016) Modification of molten steelmaking slag for cement application. J Sustain Metall 2:13–27. Google Scholar Murphy JN, Meadowcroft TR, Barr PV (1997) Enhancement of the cementitious properties of steelmaking slag. Can Metall Q 36:315–331. CAS Google Scholar Su TH, Yang HJ, Lee YC, Shau YH, Takazawa E, Lin MF, Mou JL, Jiang WT (2016) Reductive heating experiments on BOF-Slag: simultaneous phosphorus re-distribution and volume stabilization for recycling. Steel Res Int 87:1511–1526. CAS Google Scholar Chaudhary PN, Kumar P, Kumar S, Mishra IB (2016) Scaling up of process developed for utilization of LD slag as flux. CSIR-National Metallurgical Laboratory, Jamshedpur (Report CLP-139).Chaudhary PN, Pal J, Singh D, Prasad S, Singh M (2014) Utilization of LD slag as flux. CSIR-National Metallurgical Laboratory, Jamshedpur (Investigation Report No. CLP-126).Kumar P, Singh SD, Chaudhary PN, Mishra IB, Mehta KD (2017) Production of DELF in bulk for recycling. Internal Report. CLP-164, CSIR-National Metallurgical Laboratory, Jamshedpur, IndiaHou J, Liu Q, Liu J, Wu Q (2018) Material properties of steel slag-cement binding materials prepared by precarbonated steel slag. J Mater Civ Eng 30:1–10. Google Scholar Kumar S, Sahoo DP, Nath SK, Alex
2025-03-25TC, Kumar R (2012) From grey waste to green geopolymer. Sci Cult 78:511–516 Google Scholar Kumar A, Kumar S (2013) Development of paving blocks from synergistic use of red mud and fly ash using geopolymerization. Constr Build Mater 38:865–871. CAS Google Scholar Kumar S (2011) Development of paving blocks from steel slag. CSIR-National Metallurgical Laboratory, Jamshedpur (Project Report CLP-059).Kumar, S., Alex, T.C., 2013. Pilot scale development of paving blocks from steel slag. CSIR-National Metallurgical Laboratory, Jamshedpur (Internal Report CLP-084).Bai T, Song ZG, Wu YG, Hu X, Di BH (2018) Influence of steel slag on the mechanical properties and curing time of metakaolin geopolymer. Ceram Int 44:15706–15713. CAS Google Scholar Chen YL, Chang JE, Lai YC, Ko MS, Chen YH (2018) Recycling of steel slag fines for the production of autoclaved aerated concrete (AAC). Ce/Papers 2:445–449. Google Scholar Wang D, Jiang M, Liu C, Min Y, Cui Y, Liu J, Zhang Y (2012) Enrichment of Fe-containing phases and recovery of iron and its oxides by magnetic separation from BOF slags. Steel Res Int 83:189–196. CAS Google Scholar Harada T, Hirata H, Arai T, Toh T, Yamada T (2018) Development of the molten slag reduction process -1 characteristics of closed type DC arc furnace for molten slag reduction. ISIJ Int 58:1934–1942. CAS Google Scholar Guo H, Yin S, Yu Q, Yang X, Huang H, Yang Y, Gao F (2018) Iron recovery and active residue production from basic oxygen furnace (BOF) slag for supplementary cementitious materials. Resour Conserv Recycl 129:209–218. Google Scholar Sun Y, Sridhar S, Liu L, Wang X, Zhang Z (2015) Integration of coal gasification and waste heat recovery from high temperature steel slags: an emerging strategy to emission reduction. Sci Rep 5:1–11. CAS Google Scholar Sun Y, Sridhar S, Seetharaman S, Wang H, Liu L, Wang X, Zhang Z (2016) A Fe-C-Ca big cycle in modern carbon-intensive industries: toward emission reduction and resource utilization. Sci Rep 6:22323. CAS Google Scholar Fernández-González D, Prazuch J, Ruiz-Bustinza I, González-Gasca C, Piñuela-Noval J, Verdeja LF (2019) The treatment of basic oxygen furnace (BOF) slag with concentrated solar energy. Sol Energy 180:372–382. CAS Google Scholar Li HJ, Suito H, Tokuda M (1995) Thermodynamic of slag recycling using a slag regenerator. ISIJ Int 35:1079–1088. CAS Google Scholar Ökvist LS (2004) High temperature properties of BOF slag and its behaviour in the blast furnace. Steel Res Int 75:792–799. Google Scholar Kuroki T, Kabeya K, Makino K, Kajihara T, Kaibe H, Hachiuma H, Matsuno H, Fujibayashi A (2014) Thermoelectric generation using waste heat in steel works. J Electron Mater 43:2405–2410. CAS Google Scholar Quader MA, Shamsuddin A, Ghazilla RAR, Shameem A, Dahari M (2015) A comprehensive review on energy efficient CO2 breakthrough technologies for sustainable green iron
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