English

dc.contributor.authorCengizler, H
dc.contributor.authorEric, RH
dc.date.accessioned2024-07-18T11:57:22Z
dc.date.available2024-07-18T11:57:22Z
dc.description.abstractWILEY-V C H VERLAG GMBH
dc.identifier.issn1869-344X
dc.identifier.urihttp://akademikarsiv.cbu.edu.tr:4000/handle/123456789/7048
dc.language.isoArticle
dc.publisher1611-3683
dc.subjectA thermodynamic study was made on the MnO-CaO-MgO-SiO2-Al2O3 slags that are typical of the production of ferromanganese in submerged arc furnaces. The Al2O3 content of the slags was kept constant at 5 per cent by mass. The activity-composition relationship in Pt-Mn binary alloys were re-determined for calibration purposes at 1300, 1400 and 1500 degrees C and po(2) values between 5.40 x 10(-6) and 4.54 x 10(-13) atm. A linear regression equation was derived to predict the activity coefficients of manganese, in Pt-Mn alloys at 1500 degrees C. The effect of concentration, basicity ratio and CaO-to-MgO ratio on MnO activities in above mentioned complex slags was investigated at 1500 degrees C and at two different po2 values of 4.76 x 10(-7) and 5.80 x 10(-8) atm. It was found that a(MnO) values increase with increasing MnO, and tend to increase with an increasing CaO-to-MgO ratio. The amnovalues also increase with increasing basicity ratio. The activity coefficient of MnO increases with an increase in its mole fraction in the slag. Quadratic multivariable regression model equations which represent the activity data successfully and which can be used to predict the MnO activities in the compositional range of this study were developed. The MnO activity data was interpreted in terms of a slag model which describes the thermodynamic properties of the slag successfully.
dc.titleEnglish
dc.typeTHERMODYNAMIC PROPERTIES
dc.typeFERROMANGANESE SLAGS
dc.typeMANGANESE OXIDE
dc.typeLIQUID-IRON
dc.typePT-MN
dc.typeTEMPERATURE
dc.typePHOSPHORUS
dc.typeALLOYS
dc.typeSYSTEM
dc.typeMETAL

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