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Distribution of P2O5 between Solid Solution of 2CaO·SiO2–3CaO·P2O5 and Liquid Phase

机译:P 2 O 5 在2CaO·SiO 2 –3CaO·P 2 O 固溶体之间的分布> 5 和液相

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It is desirable to decrease the phosphorous content of steel and the amount of slag in steel refining. For satisfying this requirement recently, the importance of multiphase slag in steel refining has been given considerable attention. Normally, hot metal dephosphorization slag consists of the CaO–SiO_(2)–FeO–P_(2)O_(5) system, and the industrial operation is mainly carried out in the dicalcium silicate (C_(2)S) saturated region. It is well known that C_(2)S forms a solid solution with the main product of dephosphorization—tricalcium phosphate (C_(3)P)—at the treatment temperature over a wide composition range, and a high distribution ratio of P_(2)O_(5) between the solid solution and the liquid phase has been reported. In order to determine the ruling factors on the distribution ratio, the influences of MgO, MnO, and Al_(2)O_(3) were investigated for various slag compositions in the case of FeO or Fe_(2)O_(3) as the iron oxide. First, a mixture of a standard regent was heated to the melting temperature in order to produce homogenous liquid slag. Next, it was cooled down to a semisolid state: during cooling, the solid solution of C_(3)P–C_(2)S was precipitated under the equilibrium condition. For clarifying the influence of slag composition on the distribution ratio, the ruling factors on the activity coefficient of P_(2)O_(5) in the solid solution and liquid slag phase were evaluated. It is the contention of this research that the activity coefficient of P_(2)O_(5) in the solid solution was largely influenced by P_(2)O_(5) and the total solved oxide content of the solid solution. (log γ_(P_(2)O_(5SS )))_(cal) was obtained empirically in order to represent the activity coefficient in the solid solution. On the other hand, the activity coefficient of P_(2)O_(5) in the liquid phase was strongly influenced by the CaO content of the liquid phase. On the basic of these correlations, it was shown that the CaO content of the liquid phase and (log γ_(P_(2)O_(5SS )))_(cal) are the ruling factors on distribution ratio.
机译:希望减少钢中的磷含量和精炼中的炉渣量。为了满足这一要求,近来多相炉渣在炼钢中的重要性已得到相当大的关注。通常,铁水脱磷渣由CaO–SiO_(2)–FeO–P_(2)O_(5)系统组成,工业操作主要在硅酸二钙(C_(2)S)饱和区域进行。众所周知,C_(2)S与脱磷的主要产物磷酸三钙(C_(3)P)在较宽的成分范围内的处理温度下形成了固溶体,并且P_(2已经报道了固溶体和液相之间的O_(5)。为了确定影响分配比的决定因素,研究了以FeO或Fe_(2)O_(3)为熔渣的各种渣组成对MgO,MnO和Al_(2)O_(3)的影响。氧化铁。首先,将标准试剂的混合物加热至熔融温度,以产生均质的液态炉渣。接下来,将其冷却至半固态:在冷却过程中,C_(3)P–C_(2)S的固溶体在平衡条件下沉淀。为了弄清炉渣成分对分配比的​​影响,评估了影响固溶态和液态炉渣相中P_(2)O_(5)活度系数的决定因素。这项研究的论点是,固溶体中P_(2)O_(5)的活度系数受P_(2)O_(5)和固溶体中总溶解氧化物含量的影响很大。为了表示固溶体的活度系数,根据经验求出(logγ_(P_(2)O_(5 SS)))_(cal)。另一方面,液相中的CaO含量强烈影响P_(2)O_(5)在液相中的活度系数。基于这些相关性,表明液相的CaO含量和(logγ_(P_(2_O_(5 SS)))_(cal)是分配比的决定因素。

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