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电化学法测定Fe-Nb熔体中Nb的活度

A STUDY OF THE ACTIVITY OF NIOBIUM IN MOLTEN IRON WITH THE ELECTROCHEMICAL METHOD

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【作者】 魏寿昆; 张圣弼; 佟亭; 谭赞麟;

【Author】 Wei Shoukun Zhang Shengbi Tung Ting Tan Zanlin(Beijing University of Iron & Steel Technology)

【机构】 北京钢铁学院; 北京钢铁学院;

【摘要】 利用电化学法对Fe-Nb熔体中Nb的活度在三个温度下进行研究,采用下列的固体电解质电池:Mo|Mo,MoO2||ZrO2(MgO)||[Nb],NbO2|Mo+ZrO2金属陶瓷,Mo对测定的αo数据进行加工处理,求出下列结果: 1.脱氧反应的自由能 [Nb]+2[O]=NbO2(s);△G°=-375350+118.28T,J 2.Nb在铁液中的溶解自由能 Nbs=[Nb]%;△G°=-134260+33.05T,J;γ°1873=1.60 Nb1=[Nb]%;△G°=-161160+42.84T,J;γ°1873=0.92 3.Nb本身的活度相互作用系数当[Nb]含量大约低于0.2%时,脱氧产物和其它合金元素如Al、Cr、V等相似,形成了复合氧化物如FeO·NbO2。后者的生成自由能估计为:随着熔体中[Nb]含量的继续下降,对生成其它脱氧产物的可能性,本文也进行了讨论。

【Abstract】 The activity of Nb in molten iron was studied at three temperatures,1823,1853 and 1873 K.With the electrochemical method,the following solid electrolyte cell assembly being adopted:Mo Mo,MoO2‖| ZrO,(MgO) || [Nb],NbO,| Mo,Mo+ZrO,cermet.To equilibrate the [O] content of the Nb-containing iron,pure solid NbO,was scattered over the surface of the melt under highly purified argon atmosphere,and in some cases; the surface of the melt was left bare,the oxide as the deoxidation product,which was thermodynamically ascertainedas NbO2,being formed by itself.By elaboration of the experimental data of αo determined,thefollowing results were obtained: 1. The free energy of the reaction of deoxidation: [Nb] + 2[O] =NbO2(s);△G0=-375350 +118.28T.J 2. The free energy of solution of Nb in liquid iron: Nb(s)=[Nb]%; AG°=-134260+33.05T J; Vi°,7!=1.60 Nb(l)=[Nb]%; AG°=-161160+42.84r J; Y’,7,=0.92 3. The self activity interaction coefficient of Nb in liquid iron: When the [Nb] content in the molten iron was less than 0.2%,similar to the behavoir of otheralloying elements such as Al,Cr,V etc.,a compound oxide,probably FeO-NbO2 was formed.Itsfree energy of formation from its elements was estimated to be: Fe(1)+3/2O2+Nb(s)=FeO.NbO2(s);AG°=-1605800+510.24T,J As the [Nb] content in the molten iron was decreased still further,the possibility of the pre-sence of other deoxidation products,such as Nb2O5,FeO’Nb2O5,was also briefly discussed.

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