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Gaseous Reduction of Mn Ores in CO-CO_2 Atmosphere

机译:Co-Co_2大气中的Mn矿石的气味还原

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The efficiency in production of manganese ferroalloys is dependent on the gaseous reduction of the higher manganese oxides in the ores used as raw materials. The materials, descending in the furnace, will meet the furnace gas that contains significant amounts of CO(g) and reduce in subsequent steps, the last step being reduction of Mn_3O_4 to MnO. This step may to varying extent occur at temperatures exceeding 800 °C, i.e. in the active region of the Boudouard reaction. The gas reduction of Assmang and Comilog manganese ores were investigated in CO-CO_2-atmosphere at temperatures up to 1000 °C. It was seen that decreasing ore size correlates to a lower reduction temperature and increasing reduction rate. Similar effect was observed with increasing CO-content in the gas atmosphere. Further, it was found that Comilog ore obtained a complete prereduction at 600 °C, whereas reduction of Assmang ore was not complete at 800 °C for the majority of the experiments.
机译:生产锰铁合金的效率取决于用作原料的矿石中高级氧化锰的气体降低。炉中下降的材料将满足含有大量CO(g)的炉气,并减少随后的步骤,最后一步减少Mn_3O_4至MnO。该步骤可在超过800℃的温度下发生变化程度,即在Boudouard反应的有源区。在高达1000℃的温度下,在Co-Co_2-气氛中研究了Assmang和Comilog锰矿的气体减少。可以看出,降低矿石尺寸与较低的还原温度和增加的减少率相关。随着气体气氛中的共含量增加了类似的效果。此外,发现Comilog Ore在600℃下获得完全的预序,而Assmang矿石的减少在800℃下未完成大部分实验。

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