首页> 外文会议>Sohn International Symposium on Advanced Processing of Metals and Materials vol.1; 20060827-31; San Diego,CA(US) >THERMODYNAMICS ANALYSIS ON REDUCTIVE-MATTE SMELTING OF SULFIDE ORE OF LEAD, ANTIMONY AND BISMUTH WHICH USING FERRIC OXIDE AS SULFUR FIXED AGENT
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THERMODYNAMICS ANALYSIS ON REDUCTIVE-MATTE SMELTING OF SULFIDE ORE OF LEAD, ANTIMONY AND BISMUTH WHICH USING FERRIC OXIDE AS SULFUR FIXED AGENT

机译:氧化铁作为固硫剂对铅,锑和铋的硫化物还原熔体的热力学分析

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摘要

The thermodynamics analysis on reducing-matting smelting of sulfide ore of lead, antimony and bismuth which use ferric oxide as sulfur fixed agent is first analyzed. Due to the analysis of reaction mechanism, ferric oxide is first reduced to ferrous oxide, then ferrous oxide produce reducing-matting reaction with sulfide ore and reducing agent as reaction equation: MeS+FeO+CO=Me+FeS+CO_2. The reaction thermodynamic calculation shows that the reducing-matting reactions of lead sulfide, antimony sulfide, Jamesonite, and bismuth sulfide are feasible, but is infeasible for zinc sulfide. These conclusion provide a feasible method for solve the pollution which produced in the smelting of sulfide ore of lead, antimony and bismuth.
机译:首先分析了以三氧化二铁为硫固定剂的铅,锑,铋等硫化物还原消光冶炼的热力学分析。通过对反应机理的分析,首先将三氧化二铁还原为氧化亚铁,然后将其与硫化矿和还原剂按反应方程式MeS + FeO + CO = Me + FeS + CO_2进行还原消光反应。反应热力学计算表明,硫化铅,硫化锑,詹姆石和硫化铋的还原消光反应是可行的,但硫化锌是不可行的。这些结论为解决铅,锑,铋等硫化矿冶炼过程中产生的污染提供了一种可行的方法。

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