The Effect of B_2O_3 on Dephosphorization of Molten Steel by FeO_x-CaO-MgO_<satd.>-SiO_2 Slags at 1873K
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概要
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Reducing the exhaust amount of steelmaking slag is strongly required because of the view point of environmental conscious. CaO is often used for steelmaking slag but its high melting point prevents from reuse of slag as resources because free-CaO exists in the melt. Therefore highly dissolution of CaO is the key for reducing steelmaking slag. It was reported that B2O3 accelerates CaO dissolution into slag, however, few study about B2O3 containing slag has been conducted. The present work measured phosphorus partition ratio between liquid iron and MgO saturated FeOx-CaO-MgOsatd.-SiO2-B2O3 melts or MgO and CaO doubly saturated FeOx-CaOsatd.-MgOsatd.-SiO2-B2O3 melts at 1873 K. If SiO2 was replaced by B2O3, phosphorus partition ratio does not change. The maximum phosphate capacity is 1019.06 for MgO and CaO doubly saturated FeOx-CaOsatd.-MgOsatd.-B2O3 system. The activity coefficient of PO2.5 is calculated as a function of CaO content and following equation is derived for present experimental conditions.logγPO2.5=-6.2-0.046×(mass%CaO)
- 社団法人 日本鉄鋼協会の論文
- 2005-02-15
著者
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Tsukihashi Fumitaka
Department Of Advanced Materials Graduate School Of Frontier Science The University Of Tokyo
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Hamano Tasuku
Department Of Advanced Materials Science Graduate School Of Frontier Sciences The University Of Toky
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Hamano Tasuku
Department Of Advanced Materials Science Graduate School Of Frontier Sciences The University Of Toky
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Tsukihashi Fumitaka
Department Of Advanced Materials Science Graduate School Of Frontier Sciences The University Of Toky
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Tsukihashi Fumitaka
Department Of Advanced Material Science The University Of Tokyo
関連論文
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