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首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Reduction behavior of Tin-containing phase in Tin-bearing iron concentrates under CO-CO2 mixed gases
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Reduction behavior of Tin-containing phase in Tin-bearing iron concentrates under CO-CO2 mixed gases

机译:CO-CO2混合气体下含锡铁精矿中含锡相的还原行为

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The main purpose of this study was to ascertain the reduction behavior of tin phase (SnO2) in tin-bearing iron concentrates at the respective temperature of 1273 and 1373 K in diverse CO-CO2 mixed gases using chemical analysis, XRD, and SEMEDS analysis. The results show that the reduction behavior of SnO2 depends on the roasting temperature and CO content. At 1273 K, the SnO2 will be reduced to Sn (l) with the CO content being higher than 17.26 vol%, and there is no formation of SnO(s). With the temperature increased to 1373 K, the SnO2 is reduced stepwise in the order to form SnO2 → SnO (l) → Sn(l) with CO content over 15.75 vol%. The kinetic study shows that activation energy of the reaction SnO2(s)+CO(g)=Sn(l)+ CO2(g) is 144.75 kJ/mol at 1073-1223 K, being far lower than the one in the reduction of SnO2(s) into SnO(g) at 1273-1323 K, which leads to a conclusion that the tin in tin-bearing iron concentrates could be removed effectively after the Sn(l) sulfurated into SnS at relatively lower temperatures (1073-1223 K) using the sulfidation roasting method.
机译:这项研究的主要目的是通过化学分析,XRD和SEMEDS分析来确定含锡铁精矿中锡相(SnO2)在不同CO-CO2混合气体中的温度分别为1273和1373 K时的还原行为。结果表明,SnO2的还原行为取决于焙烧温度和CO含量。在1273 K时,SnO2将还原为Sn(l),且CO含量高于17.26 vol%,并且不会形成SnO。随着温度升高至1373 K,SnO2逐步还原,以形成CO含量超过15.75 vol%的SnO2→SnO(l)→Sn(l)。动力学研究表明,SnO2 + CO(g)= Sn(l)+ CO2(g)在1073-1223 K时的活化能为144.75 kJ / mol,远低于还原反应中的活化能。 SnO2在1273-1323 K时转变为SnO(g),这得出结论:在相对较低的温度下将Sn(l)硫化成SnS后,可以有效地除去含锡铁精矿中的锡(1073-1223) K)采用硫化焙烧法。

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