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电弧炉粉尘直接还原炉渣氧化和脱硫能力计算热力学
引用本文:彭兵,彭及,PENG Bing,ZHANG Chuan-fu,Peng Ji. 电弧炉粉尘直接还原炉渣氧化和脱硫能力计算热力学[J]. 中南大学学报(自然科学版), 2000, 31(6): 497-501
作者姓名:彭兵  彭及  PENG Bing  ZHANG Chuan-fu  Peng Ji
作者单位:1. 中南大学冶金科学与工程系,湖南长沙410083
2. Department of Metallurgical Science and Engineering, Central South University, Changsha 410083, China
摘    要:电孤炉炼钢粉尘中含有多种重金属,若填埋弃置会对环境造成污染.将粉尘与还原剂碳粉混合制粒后返回电弧炉,并补充硅铁还原粉尘中难还原的金属,有价金属还原后回收于钢液中,不仅能生产不锈钢或特种钢,而且能保护环境.制粒时使用木质磺酸钙作为粘结剂,而木质磺酸钙中含有硫,可能影响钢材质量,影响程度取决于冶炼过程中炉渣的条件.经改变初始熔铁、球团、硅铁和石灰加入的量比关系进行实验,采用X射线荧光分析仪检测炉渣成分进行计算热力学研究,确定了1550℃时CaO-MgO-FeO-Fe

关 键 词:计算热力学;电孤炉粉尘;炉渣
文章编号:1005-9792(2000)06-0497-05
修稿时间:2000-05-08

Calculation thermodynamics for slag abilities of oxidationand sulfur-removing in electirc arc furnace dust reduction process
LobeI j,Kozinski J,PENG Bing,ZHANG Chuan-fu,Peng Ji. Calculation thermodynamics for slag abilities of oxidationand sulfur-removing in electirc arc furnace dust reduction process[J]. Journal of Central South University:Science and Technology, 2000, 31(6): 497-501
Authors:LobeI j  Kozinski J  PENG Bing  ZHANG Chuan-fu  Peng Ji
Abstract:There are some heavy metals in the electric arc furnace (EAF) steelmaking dust. It has been listed as ahazardous material because it is harmful to the environment to landfill the EAF dust. The valuable metals in the dust canbe recycled by mixing it with reducing agent carbon to make pellets and then returing the pellets to the FAF and addingferro-silicon. Part of valuable metals in the dust is reduced by carbon and part of them reduced by ferro-silicon for theeconomical consideration. The reduced metals get into the steel in the stainless steel or special steel production, which isnot only to protect environment but also to recover metals in the way of the direct reduction. But the lignosulfonate wasused as the binder in the pelletization and the sulfur in it maybe affects the quality of produced steel, which is dependenton the status of the smelting slag. The experiments were conducted in the way of changing the ratio of start iron, pellets,ferro-silicon and lime. The content of the slag was checked by XRF for the calculation thermodynamics study. The activeconcentrations of materials in the slag, the slag abilities of oxidation and sulfur removing in FAF dust reduction processwere determined by thermodynamics calculation study on CaO-MgO-FeO-Fe2O3-SiO2-S slag at 1 550 ℃. The oxidationability of slag can be expressed as n(FetO) = n(FeO) + 6n(Fe2O3) + 8n(Fe304). The relationship between the sulfurremoving ability and the oxidizing ability, the ratio of ferro-silicon, lime as well as the basicity of the slag was determinedon the study. The calculation thermodynamics model was set up and it could be useful in production
Keywords:calculation thermodynamics  electric arc furnace dust  slag
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