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Competitive Dissolution of MgO from Flux and Refractory

机译:熔剂和耐火材料中MgO的竞争性溶解

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During the operation of a basic oxygen furnace (BOF), slag that contains a high (%MgO) is formed by the addition of dolomite to decrease the dissolution rate of the refractory. Nevertheless, the refractory has a limited lifespan because the dissolution of MgO from the dolomite and refractory occurs competitively. For the efficient protection of the refractory, MgO has to be supplied from the flux at a rate higher than the dissolution rate of the refractory. To clarify the factors that affect the dissolution rate of MgO, various MgO-containing solid oxides were melted in liquid slag. The dissolution rates of the oxides were evaluated by calculating the change in the MgO content of the liquid slag, and the following results were obtained: (1) The dissolution rate of sintered MgO in MgO-SiO_2-B_2O_3 slag was much higher than that in FeO-CaO-SiO-2 slag. A solid solution of MgO and FeO was formed at the interface of the FeO-CaO-SiO_2 slag and sintered MgO. (2) The dissolution rate of an MgO-C brick was higher than those of the burnt dolomite and sintered MgO; moreover, the dissolution rate of decarburization slag was much higher than those of them. These results indicate that the addition of burnt dolomite to the slag is not effective in protecting the MgO-C refractory and the coating layer of the decarburization slag on the refractory easily melts; however, the addition of the decarburization slag is effective in increasing the MgO content of the slag.
机译:在碱性氧气炉(BOF)的运行过程中,通过添加白云石来形成高含量(%MgO)的炉渣,从而降低了耐火材料的溶解速度。然而,耐火材料的使用寿命有限,因为MgO从白云石和耐火材料中的溶解竞争地发生。为了有效地保护耐火材料,必须以高于耐火材料的溶解速率的速率从助熔剂中供应MgO。为了阐明影响MgO溶解速率的因素,将各种含MgO的固体氧化物熔化在液态炉渣中。通过计算液态渣中MgO含量的变化来评估氧化物的溶解速率,得到以下结果:(1)MgO-SiO_2-B_2O_3渣中烧结的MgO的溶解速率远高于在MgO-SiO_2-B_2O_3渣中的。 FeO-CaO-SiO-2渣。 MgO和FeO的固溶体在FeO-CaO-SiO_2炉渣和烧结的MgO的界面处形成。 (2)MgO-C砖的溶解速率高于烧过的白云石和烧结的MgO。此外,脱碳渣的溶解速率远高于其。这些结果表明,在炉渣中添加烧成的白云石不能有效地保护MgO-C耐火材料,并且耐火材料上的脱碳炉渣的涂层容易熔化。但是,添加脱碳炉渣可有效提高炉渣的MgO含量。

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